Name |
Component |
Units |
Dim |
Long name
|
A1X1 |
Moist |
km-2 s-1 |
xy |
LFR Term number 1
|
A2X2 |
Moist |
km-2 s-1 |
xy |
LFR Term number 2
|
A3X3 |
Moist |
km-2 s-1 |
xy |
LFR Term number 3
|
A4X4 |
Moist |
km-2 s-1 |
xy |
LFR Term number 4
|
A5X5 |
Moist |
km-2 s-1 |
xy |
LFR Term number 5
|
ACCCMASS |
MAMchem |
kg m-2 |
xy |
Column Mass Density Accumulation mode
|
ACCEXTTAU |
MAMchem |
1 |
xy |
Aerosol Optical Thickness Accumulation mode
|
ACCSCATAU |
MAMchem |
1 |
xy |
Aerosol Scattering Optical Thickness Accumulation mode
|
ACCUM |
Surface |
kg m-2 s-1 |
xy |
net ice accumulation rate
|
ACCUM |
Landice |
kg m-2 s-1 |
tile |
net ice accumulation rate
|
ACCUM |
Land |
|
|
|
ACCUM |
Catch |
kg m-2 s-1 |
tile |
net ice accumulation rate
|
ACCUM |
CatchCN |
kg m-2 s-1 |
tile |
net ice accumulation rate
|
ACHEMDMS |
AChem |
mol mol-1 |
xyz |
DMS exported at end of the run method
|
ACHEMH2SO4 |
AChem |
mol mol-1 |
xyz |
H2SO4 exported at end of the run method
|
ACHEMMSA |
AChem |
mol mol-1 |
xyz |
MSA exported at end of the run method
|
ACHEMNH3 |
AChem |
mol mol-1 |
xyz |
NH3 exported at end of the run method
|
ACHEMNO3 |
AChem |
mol mol-1 |
xyz |
NO3 with imposed diurnal cycle
|
ACHEMOCS |
AChem |
mol mol-1 |
xyz |
Carbonyl Sulfide (OCS or COS gas)
|
ACHEMOH |
AChem |
mol mol-1 |
xyz |
OH with imposed diurnal cycle
|
ACHEMSO2 |
AChem |
mol mol-1 |
xyz |
SO2 exported at end of the run method
|
ACHEMSOAG |
AChem |
mol mol-1 |
xyz |
SOA(gas) exported at end of the run method
|
ACRIL_AN |
Moist |
kg kg-1 s-1 |
xyz |
ice liq accretion of anvil precipitation
|
ACRIL_CN |
Moist |
kg kg-1 s-1 |
xyz |
ice liq accretion of convective precipitation
|
ACRIL_LS |
Moist |
kg kg-1 s-1 |
xyz |
ice liq accretion of nonanvil large scale precipitation
|
ACRLL_AN |
Moist |
kg kg-1 s-1 |
xyz |
liq liq accretion of anvil precipitation
|
ACRLL_CN |
Moist |
kg kg-1 s-1 |
xyz |
liq liq accretion of convective precipitation
|
ACRLL_LS |
Moist |
kg kg-1 s-1 |
xyz |
liq liq accretion of nonanvil large scale precipitation
|
ACR_TOT |
Moist |
kg kg-1 s-1 |
xyz |
total accretion of precipitation
|
AERO |
Chem |
kg kg-1 |
xyz |
aerosol mass mixing ratios
|
AERO |
GOCART |
kg kg-1 |
xyz |
aerosol mass mixing ratios
|
AERO |
CARMAchem |
kg kg-1 |
xyz |
aerosol mass mixing ratios
|
AERO |
MAMchem |
kg kg-1 |
xyz |
aerosol mixing ratios
|
AERO |
GMIchem |
kg kg-1 |
xyz |
aerosol mass mixing ratios
|
AERO |
StratChem |
kg kg-1 |
xyz |
aerosol mass mixing ratios
|
AERO |
DNA |
kg kg-1 |
xyz |
aerosol mixing ratios
|
AERO_ACI |
MAMchem |
kg kg-1 |
xyz |
aerosol cloud interaction
|
AERO_ACI |
MAMchem |
# m-2 s-1 |
xy |
UNKNOWN
|
AERO_ACI |
MAMchem |
kg m-2 s-1 |
xy |
UNKNOWN
|
AERO_ACI |
MAMchem |
# m-2 s-1 |
xy |
UNKNOWN
|
AERO_ACI |
MAMchem |
kg m-2 s-1 |
xy |
UNKNOWN
|
AERO_ACI |
MAMchem |
kg m-2 s-1 |
xy |
aerosol deposition
|
AERO_DP |
Chem |
kg m-2 s-1 |
xy |
aerosol deposition
|
AERO_DP |
Chem |
kg m-2 s-1 |
xy |
aerosol deposition
|
AERO_DP |
Chem |
kg m-2 s-1 |
xy |
aerosol deposition
|
AERO_DP |
GOCART |
kg m-2 s-1 |
xy |
aerosol deposition
|
AERO_DP |
CARMAchem |
kg m-2 s-1 |
xy |
aerosol deposition
|
AERO_DP |
GMIchem |
kg m-2 s-1 |
xy |
aerosol deposition
|
AERO_DP |
StratChem |
kg m-2 s-1 |
xy |
aerosol deposition
|
AERO_DP |
DNA |
kg m-2 s-1 |
xy |
aerosol deposition
|
AGCMTROPP |
GMICHEM |
Pa |
xy |
tropopause pressure imported into GMICHEM
|
AGCMTROPP |
StratChem |
Pa |
xy |
tropopause pressure imported into StratChem
|
AHTFLX |
Saltwater |
W m-2 |
tile |
atmospheric heat flux into skin
|
AICE |
Gcm |
|
|
|
AICE |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
AIRDENS |
ChemEnv |
kg m-3 |
xyz |
moist air density
|
AIRDENS_DRY |
ChemEnv |
kg m-3 |
xyz |
dry air density
|
AITCMASS |
MAMchem |
kg m-2 |
xy |
Column Mass Density Aitken mode
|
AITEXTTAU |
MAMchem |
1 |
xy |
Aerosol Optical Thickness Aitken mode
|
AITSCATAU |
MAMchem |
1 |
xy |
Scattering Optical Thickness Aitken mode
|
AK |
Gcm |
|
|
|
AK |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
AK |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
AK |
FVdycore |
1 |
z |
hybrid sigma pressure a
|
AK |
DynCore |
1 |
z |
hybrid sigma pressure a
|
AK |
ARIESg3 |
1 |
z |
hybrid sigma pressure a
|
AK |
DatmoDyn |
1 |
z |
hybrid sigma pressure a
|
AK |
DynVec |
Pa |
z |
hybrid sigma pressure a
|
AKQODT |
Turbulence |
1 |
xyz |
matrix diagonal ak for moisture over dt
|
AKSODT |
Turbulence |
1 |
xyz |
matrix diagonal ak for scalars over dt
|
AKVODT |
Turbulence |
1 |
xyz |
matrix diagonal ak for winds over dt
|
ALBEDO |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
ALBEDO |
Solar |
1 |
xy |
surface albedo
|
ALBISCCP |
Satsim |
1 |
xy |
isccp cloud albedo
|
ALBNF |
Surface |
1 |
xy |
surface albedo for nearinfraed diffuse
|
ALBNF |
Lake |
1 |
tile |
surface albedo for near infrared diffuse
|
ALBNF |
Landice |
1 |
tile |
surface albedo for near infrared diffuse
|
ALBNF |
Land |
|
|
|
ALBNF |
Catch |
1 |
tile |
surface albedo near infrared diffuse
|
ALBNF |
CatchCN |
1 |
tile |
surface albedo near infrared diffuse
|
ALBNF |
Saltwater |
1 |
tile |
surface albedo for near infrared diffuse
|
ALBNF |
Solar |
1 |
xy |
surface albedo for near infrared diffuse
|
ALBNR |
Surface |
1 |
xy |
surface albedo for nearinfrared beam
|
ALBNR |
Lake |
1 |
tile |
surface albedo for near infrared beam
|
ALBNR |
Landice |
1 |
tile |
surface albedo for near infrared beam
|
ALBNR |
Land |
|
|
|
ALBNR |
Catch |
1 |
tile |
surface albedo near infrared beam
|
ALBNR |
CatchCN |
1 |
tile |
surface albedo near infrared beam
|
ALBNR |
Saltwater |
1 |
tile |
surface albedo for near infrared beam
|
ALBNR |
Solar |
1 |
xy |
surface albedo for near infrared beam
|
ALBVF |
Surface |
1 |
xy |
surface albedo for visible diffuse
|
ALBVF |
Lake |
1 |
tile |
surface albedo for visible diffuse
|
ALBVF |
Landice |
1 |
tile |
surface albedo for visible diffuse
|
ALBVF |
Land |
|
|
|
ALBVF |
Catch |
1 |
tile |
surface albedo visible diffuse
|
ALBVF |
CatchCN |
1 |
tile |
surface albedo visible diffuse
|
ALBVF |
Saltwater |
1 |
tile |
surface albedo for visible diffuse
|
ALBVF |
Solar |
1 |
xy |
surface albedo for visible diffuse
|
ALBVR |
Surface |
1 |
xy |
surface albedo for visible beam
|
ALBVR |
Lake |
1 |
tile |
surface albedo for visible beam
|
ALBVR |
Landice |
1 |
tile |
surface albedo for visible beam
|
ALBVR |
Land |
|
|
|
ALBVR |
Catch |
1 |
tile |
surface albedo visible beam
|
ALBVR |
CatchCN |
1 |
tile |
surface albedo visible beam
|
ALBVR |
Saltwater |
1 |
tile |
surface albedo for visible beam
|
ALBVR |
Solar |
1 |
xy |
surface albedo for visible beam
|
ALH |
Turbulence |
m |
xyz |
Blackadar length scale for scalars
|
ALPH1 |
Moist |
1 |
xyz |
pdf spread for condensation over qsat term1
|
ALPH2 |
Moist |
1 |
xyz |
pdf spread for condensation over qsat term2
|
ALPHT |
Moist |
1 |
xyz |
pdf spread for condensation over qsat total
|
ALW |
Radiation |
W m-2 |
xy |
linearization of surface upwelling longwave flux
|
AN_ARF |
Moist |
1 |
xy |
areal fraction of anvil showers
|
AN_PRCP |
Moist |
kg m-2 s-1 |
xy |
anvil precipitation
|
AOADAYS_SCTEND |
StratChem |
days s-1 |
xyz |
chemical rate of change AOADAYS
|
AODANA |
GAAS |
1 |
xy |
Aerosol Optical Depth Analysis
|
AODINC |
GAAS |
1 |
xy |
Aerosol Optical Depth Analysis Increment
|
AR1 |
Catch |
1 |
tile |
areal fraction saturated zone
|
AR1 |
CatchCN |
1 |
tile |
areal fraction saturated zone
|
AR2 |
Catch |
1 |
tile |
areal fraction transpiration zone
|
AR2 |
CatchCN |
1 |
tile |
areal fraction transpiration zone
|
AREA |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
AREA |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
AREA |
FVdycore |
m+2 |
xy |
agrid cell area
|
AREA |
AdvCore |
m+2 |
xy |
agrid cell area
|
AREA |
DynCore |
m+2 |
xy |
agrid cell area
|
AREA |
ARIESg3 |
m+2 |
xy |
agrid cell area
|
AREA |
DatmoDyn |
m+2 |
xy |
agrid cell area
|
ASNOW |
Surface |
1 |
xy |
fractional area of land snowcover
|
ASNOW |
Land |
|
|
|
ASNOW |
Catch |
1 |
tile |
fractional area of land snowcover
|
ASNOW |
CatchCN |
1 |
tile |
fractional area of land snowcover
|
ASNOW_GL |
Landice |
1 |
tile |
fractional area of glaciated surface snowcover
|
AUT |
Moist |
kg kg-1 s-1 |
xyz |
autoconv sink of cloud liq
|
AUTICE |
Moist |
kg kg-1 s-1 |
xyz |
autoconv sink of cloud ice
|
AUTZ |
Moist |
kg m-2 s-1 |
xy |
autoconversion loss of cloud water
|
AVETSNOW |
Surface |
K |
xy |
averaged snow temperature
|
AVETSNOW |
Land |
|
|
|
AVETSNOW |
Catch |
K |
tile |
averaged snow temperature
|
AVETSNOW |
CatchCN |
K |
tile |
averaged snow temperature
|
BASEFLOW |
Surface |
kg m-2 s-1 |
xy |
baseflow flux
|
BASEFLOW |
Land |
|
|
|
BASEFLOW |
Catch |
kg m-2 s-1 |
tile |
baseflow flux
|
BASEFLOW |
CatchCN |
kg m-2 s-1 |
tile |
baseflow flux
|
BCANA |
GAAS |
kgkg |
xyz |
Black Carbon Mixing Ratio Analysis
|
BCANGSTR |
BC |
1 |
xy |
Black Carbon Angstrom parameter [470-870 nm] ENSEMBLE
|
BCANGSTRanth |
BC |
1 |
xy |
Black Carbon Angstrom parameter [470-870 nm] anth
|
BCANGSTRbiob |
BC |
1 |
xy |
Black Carbon Angstrom parameter [470-870 nm] biob
|
BCARBON |
Moist |
m-3 |
xyz |
Black carbon number conc. (hydrophilic)
|
BCCMASS |
BC |
kg m-2 |
xy |
Black Carbon Column Mass Density ENSEMBLE
|
BCCMASSanth |
BC |
kg m-2 |
xy |
Black Carbon Column Mass Density anth
|
BCCMASSbiob |
BC |
kg m-2 |
xy |
Black Carbon Column Mass Density biob
|
BCCONC |
BC |
kg m-3 |
xyz |
Black Carbon Mass Concentration ENSEMBLE
|
BCCONCanth |
BC |
kg m-3 |
xyz |
Black Carbon Mass Concentration anth
|
BCCONCbiob |
BC |
kg m-3 |
xyz |
Black Carbon Mass Concentration biob
|
BCDP |
Saltwater |
kg m-2 s-1 |
tile |
Black Carbon Dry Deposition
|
BCDP001 |
BC |
kg m-2 s-1 |
xy |
Black Carbon Dry Deposition Bin 001 ENSEMBLE
|
BCDP001anth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Dry Deposition Bin 001 anth
|
BCDP001biob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Dry Deposition Bin 001 biob
|
BCDP002 |
BC |
kg m-2 s-1 |
xy |
Black Carbon Dry Deposition Bin 002 ENSEMBLE
|
BCDP002anth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Dry Deposition Bin 002 anth
|
BCDP002biob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Dry Deposition Bin 002 biob
|
BCEM001 |
BC |
kg m-2 s-1 |
xy |
Black Carbon Emission Bin 001 ENSEMBLE
|
BCEM001anth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Emission Bin 001 anth
|
BCEM001biob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Emission Bin 001 biob
|
BCEM002 |
BC |
kg m-2 s-1 |
xy |
Black Carbon Emission Bin 002 ENSEMBLE
|
BCEM002anth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Emission Bin 002 anth
|
BCEM002biob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Emission Bin 002 biob
|
BCEMAN |
BC |
kg m-2 s-1 |
xy |
Black Carbon Anthropogenic Emissions ENSEMBLE
|
BCEMANanth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Anthropogenic Emissions anth
|
BCEMANbiob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Anthropogenic Emissions biob
|
BCEMBB |
BC |
kg m-2 s-1 |
xy |
Black Carbon Biomass Burning Emissions ENSEMBLE
|
BCEMBBanth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Biomass Burning Emissions anth
|
BCEMBBbiob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Biomass Burning Emissions biob
|
BCEMBF |
BC |
kg m-2 s-1 |
xy |
Black Carbon Biofuel Emissions ENSEMBLE
|
BCEMBFanth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Biofuel Emissions anth
|
BCEMBFbiob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Biofuel Emissions biob
|
BCEMPCM |
MAMchem |
kg m-2 s-1 |
xy |
Black Carbon Emission Primary Carbon mode
|
BCEXTCOEF |
BC |
m-1 |
xyz |
Black Carbon Extinction Coefficient [550 nm] ENSEMBLE
|
BCEXTCOEFanth |
BC |
m-1 |
xyz |
Black Carbon Extinction Coefficient [550 nm] anth
|
BCEXTCOEFbiob |
BC |
m-1 |
xyz |
Black Carbon Extinction Coefficient [550 nm] biob
|
BCEXTTAU |
BC |
1 |
xy |
Black Carbon Extinction AOT [550 nm] ENSEMBLE
|
BCEXTTAUanth |
BC |
1 |
xy |
Black Carbon Extinction AOT [550 nm] anth
|
BCEXTTAUbiob |
BC |
1 |
xy |
Black Carbon Extinction AOT [550 nm] biob
|
BCFLUXU |
BC |
kg m-1 s-1 |
xy |
Black Carbon column u-wind mass flux ENSEMBLE
|
BCFLUXUanth |
BC |
kg m-1 s-1 |
xy |
Black Carbon column u-wind mass flux anth
|
BCFLUXUbiob |
BC |
kg m-1 s-1 |
xy |
Black Carbon column u-wind mass flux biob
|
BCFLUXV |
BC |
kg m-1 s-1 |
xy |
Black Carbon column v-wind mass flux ENSEMBLE
|
BCFLUXVanth |
BC |
kg m-1 s-1 |
xy |
Black Carbon column v-wind mass flux anth
|
BCFLUXVbiob |
BC |
kg m-1 s-1 |
xy |
Black Carbon column v-wind mass flux biob
|
BCHYGRO |
GMICHEM |
1 |
xyz |
hygroscopic growth of black carbon
|
BCHYPHIL |
BC |
kg m-2 s-1 |
xy |
Black Carbon Hydrophobic to Hydrophilic ENSEMBLE
|
BCHYPHILanth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Hydrophobic to Hydrophilic anth
|
BCHYPHILbiob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Hydrophobic to Hydrophilic biob
|
BCINC |
GAAS |
kgkg |
xyz |
Black Carbon Mixing Ratio Analysis Increments
|
BCMASS |
BC |
kgkg |
xyz |
Black Carbon Mass Mixing Ratio ENSEMBLE
|
BCMASSanth |
BC |
kgkg |
xyz |
Black Carbon Mass Mixing Ratio anth
|
BCMASSbiob |
BC |
kgkg |
xyz |
Black Carbon Mass Mixing Ratio biob
|
BCOD |
GMICHEM |
1 |
xyz |
black carbon optical depth (400 nm)
|
BCOOL |
Surface |
m+2 s-3 |
xy |
buoyancy generation in cool layer
|
BCOOL |
Saltwater |
m+2 s-3 |
tile |
bouyancy generation in cool layer
|
BCSA |
GMICHEM |
cm+2 cm-3 |
xyz |
black carbon surface area
|
BCSCACOEF |
BC |
m-1 |
xyz |
Black Carbon Scattering Coefficient [550 nm] ENSEMBLE
|
BCSCACOEFanth |
BC |
m-1 |
xyz |
Black Carbon Scattering Coefficient [550 nm] anth
|
BCSCACOEFbiob |
BC |
m-1 |
xyz |
Black Carbon Scattering Coefficient [550 nm] biob
|
BCSCATAU |
BC |
1 |
xy |
Black Carbon Scattering AOT [550 nm] ENSEMBLE
|
BCSCATAUanth |
BC |
1 |
xy |
Black Carbon Scattering AOT [550 nm] anth
|
BCSCATAUbiob |
BC |
1 |
xy |
Black Carbon Scattering AOT [550 nm] biob
|
BCSD001 |
BC |
kg m-2 s-1 |
xy |
Black Carbon Sedimentation Bin 001 ENSEMBLE
|
BCSD001anth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Sedimentation Bin 001 anth
|
BCSD001biob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Sedimentation Bin 001 biob
|
BCSD002 |
BC |
kg m-2 s-1 |
xy |
Black Carbon Sedimentation Bin 002 ENSEMBLE
|
BCSD002anth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Sedimentation Bin 002 anth
|
BCSD002biob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Sedimentation Bin 002 biob
|
BCSMASS |
BC |
kg m-3 |
xy |
Black Carbon Surface Mass Concentration ENSEMBLE
|
BCSMASSanth |
BC |
kg m-3 |
xy |
Black Carbon Surface Mass Concentration anth
|
BCSMASSbiob |
BC |
kg m-3 |
xy |
Black Carbon Surface Mass Concentration biob
|
BCSV001 |
BC |
kg m-2 s-1 |
xy |
Black Carbon Convective Scavenging Bin 001 ENSEMBLE
|
BCSV001anth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Convective Scavenging Bin 001 anth
|
BCSV001biob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Convective Scavenging Bin 001 biob
|
BCSV002 |
BC |
kg m-2 s-1 |
xy |
Black Carbon Convective Scavenging Bin 002 ENSEMBLE
|
BCSV002anth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Convective Scavenging Bin 002 anth
|
BCSV002biob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Convective Scavenging Bin 002 biob
|
BCWT |
Saltwater |
kg m-2 s-1 |
tile |
Black Carbon Wet Deposition
|
BCWT001 |
BC |
kg m-2 s-1 |
xy |
Black Carbon Wet Deposition Bin 001 ENSEMBLE
|
BCWT001anth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Wet Deposition Bin 001 anth
|
BCWT001biob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Wet Deposition Bin 001 biob
|
BCWT002 |
BC |
kg m-2 s-1 |
xy |
Black Carbon Wet Deposition Bin 002 ENSEMBLE
|
BCWT002anth |
BC |
kg m-2 s-1 |
xy |
Black Carbon Wet Deposition Bin 002 anth
|
BCWT002biob |
BC |
kg m-2 s-1 |
xy |
Black Carbon Wet Deposition Bin 002 biob
|
BERG |
Moist |
Kg Kg-1 s-1 |
xyz |
ice mixing ration tendency due to Bergeron process
|
BERGS |
Moist |
Kg Kg-1 s-1 |
xyz |
Snow mixing ration tendency due to Bergeron process
|
BK |
Gcm |
|
|
|
BK |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
BK |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
BK |
FVdycore |
1 |
z |
hybrid sigma pressure b
|
BK |
DynCore |
1 |
z |
hybrid sigma pressure b
|
BK |
ARIESg3 |
1 |
z |
hybrid sigma pressure b
|
BK |
DatmoDyn |
1 |
z |
hybrid sigma pressure b
|
BK |
DynVec |
1 |
z |
hybrid sigma pressure b
|
BKGERR |
Gwd |
W m-2 |
xy |
vertically integrated kinetic energy residual for BKG energy conservation
|
BLW |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
BRCL_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change BRCL
|
BRONO2_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change BRONO2
|
BRX_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change BRX
|
BSTAR |
Surface |
m s-2 |
xy |
surface buoyancy scale
|
BTRANT |
Surface |
1 |
xy |
transpiration coefficient
|
BTRANT |
CatchCN |
1 |
tile |
transpiration coefficient
|
BYNCY |
Moist |
m s-2 |
xyz |
buoyancy of surface parcel
|
CAPAC |
Surface |
kg m-2 |
xy |
interception reservoir capac
|
CAPAC& |
Land |
|
|
|
CAPE |
Moist |
J m-2 |
xy |
cape for surface parcel
|
CARMA_ASHANGSTR |
CARMA |
1 |
xy |
Ash 470-870 nm Angstrom parameter
|
CARMA_ASHCMASS |
CARMA |
kg m-2 |
xy |
Ash column burden
|
CARMA_ASHCONC |
CARMA |
kg m-3 |
xyz |
Ash Mass Concentration
|
CARMA_ASHDP |
CARMA |
kg m-2 s-1 |
xy |
Ash deposition flux
|
CARMA_ASHEM |
CARMA |
kg m-2 s-1 |
xy |
Ash emission flux
|
CARMA_ASHEXTCOEF |
CARMA |
m-1 |
xyz |
Ash 550 nm extinction coefficient
|
CARMA_ASHEXTTAU |
CARMA |
1 |
xy |
Ash 550-nm extinction AOT
|
CARMA_ASHFLUXU |
CARMA |
kg m-1 s-1 |
xy |
Ash column u-wind mass flux
|
CARMA_ASHFLUXV |
CARMA |
kg m-1 s-1 |
xy |
Ash column v-wind mass flux
|
CARMA_ASHMASS |
CARMA |
kg kg-1 |
xyz |
Ash Mass Mixing Ratio
|
CARMA_ASHSCACOEF |
CARMA |
m-1 |
xyz |
Ash 550 nm scattering coefficient
|
CARMA_ASHSCATAU |
CARMA |
1 |
xy |
Ash 550-nm scattering AOT
|
CARMA_ASHSD |
CARMA |
kg m-2 s-1 |
xy |
Ash sedimentation flux
|
CARMA_ASHSMASS |
CARMA |
kg m-3 |
xy |
Ash surface mass concentration
|
CARMA_ASHSV |
CARMA |
kg m-2 s-1 |
xy |
Ash convective scavenging flux
|
CARMA_ASHWT |
CARMA |
kg m-2 s-1 |
xy |
Ash wet-deposition flux
|
CARMA_BCANGSTR |
CARMA |
1 |
xy |
Black Carbon 470-870 nm Angstrom parameter
|
CARMA_BCCMASS |
CARMA |
kg m-2 |
xy |
Black Carbon column burden
|
CARMA_BCCONC |
CARMA |
kg m-3 |
xyz |
Black Carbon Mass Concentration
|
CARMA_BCDP |
CARMA |
kg m-2 s-1 |
xy |
Black Carbon deposition flux
|
CARMA_BCEM |
CARMA |
kg m-2 s-1 |
xy |
Black Carbon emission flux
|
CARMA_BCEXTCOEF |
CARMA |
m-1 |
xyz |
Black Carbon 550 nm extinction coefficient
|
CARMA_BCEXTTAU |
CARMA |
1 |
xy |
Black Carbon 550-nm extinction AOT
|
CARMA_BCFLUXU |
CARMA |
kg m-1 s-1 |
xy |
Black Carbon column u-wind mass flux
|
CARMA_BCFLUXV |
CARMA |
kg m-1 s-1 |
xy |
Black Carbon column v-wind mass flux
|
CARMA_BCMASS |
CARMA |
kg kg-1 |
xyz |
Black Carbon Mass Mixing Ratio
|
CARMA_BCSCACOEF |
CARMA |
m-1 |
xyz |
Black Carbon 550 nm scattering coefficient
|
CARMA_BCSCATAU |
CARMA |
1 |
xy |
Black Carbon 550-nm scattering AOT
|
CARMA_BCSD |
CARMA |
kg m-2 s-1 |
xy |
Black Carbon sedimentation flux
|
CARMA_BCSMASS |
CARMA |
kg m-3 |
xy |
Black Carbon surface mass concentration
|
CARMA_BCSV |
CARMA |
kg m-2 s-1 |
xy |
Black Carbon convective scavenging flux
|
CARMA_BCWT |
CARMA |
kg m-2 s-1 |
xy |
Black Carbon wet-deposition flux
|
CARMA_DUANGSTR |
CARMA |
1 |
xy |
Dust 470-870 nm Angstrom parameter
|
CARMA_DUCM001 |
CARMA |
kg m-2 |
xy |
Dust column burden Bin 001
|
CARMA_DUCM002 |
CARMA |
kg m-2 |
xy |
Dust column burden Bin 002
|
CARMA_DUCM003 |
CARMA |
kg m-2 |
xy |
Dust column burden Bin 003
|
CARMA_DUCM004 |
CARMA |
kg m-2 |
xy |
Dust column burden Bin 004
|
CARMA_DUCM005 |
CARMA |
kg m-2 |
xy |
Dust column burden Bin 005
|
CARMA_DUCM006 |
CARMA |
kg m-2 |
xy |
Dust column burden Bin 006
|
CARMA_DUCM007 |
CARMA |
kg m-2 |
xy |
Dust column burden Bin 007
|
CARMA_DUCM008 |
CARMA |
kg m-2 |
xy |
Dust column burden Bin 008
|
CARMA_DUCMASS |
CARMA |
kg m-2 |
xy |
Dust column burden
|
CARMA_DUCONC |
CARMA |
kg m-3 |
xyz |
Dust Mass Concentration
|
CARMA_DUDP |
CARMA |
kg m-2 s-1 |
xy |
Dust deposition flux
|
CARMA_DUEM |
CARMA |
kg m-2 s-1 |
xy |
Dust emission flux
|
CARMA_DUEXTCOEF |
CARMA |
m-1 |
xyz |
Dust 550 nm extinction coefficient
|
CARMA_DUEXTTAU |
CARMA |
1 |
xy |
Dust 550-nm extinction AOT
|
CARMA_DUFLUXU |
CARMA |
kg m-1 s-1 |
xy |
Dust column u-wind mass flux
|
CARMA_DUFLUXV |
CARMA |
kg m-1 s-1 |
xy |
Dust column v-wind mass flux
|
CARMA_DUMASS |
CARMA |
kg kg-1 |
xyz |
Dust Mass Mixing Ratio
|
CARMA_DUSCACOEF |
CARMA |
m-1 |
xyz |
Dust 550 nm scattering coefficient
|
CARMA_DUSCATAU |
CARMA |
1 |
xy |
Dust 550-nm scattering AOT
|
CARMA_DUSD |
CARMA |
kg m-2 s-1 |
xy |
Dust sedimentation flux
|
CARMA_DUSMASS |
CARMA |
kg m-3 |
xy |
Dust surface mass concentration
|
CARMA_DUSV |
CARMA |
kg m-2 s-1 |
xy |
Dust convective scavenging flux
|
CARMA_DUWT |
CARMA |
kg m-2 s-1 |
xy |
Dust wet-deposition flux
|
CARMA_SMANGSTR |
CARMA |
1 |
xy |
Smoke 470-870 nm Angstrom parameter
|
CARMA_SMCMASS |
CARMA |
kg m-2 |
xy |
Smoke column burden
|
CARMA_SMCONC |
CARMA |
kg m-3 |
xyz |
Smoke Mass Concentration
|
CARMA_SMDP |
CARMA |
kg m-2 s-1 |
xy |
Smoke deposition flux
|
CARMA_SMEM |
CARMA |
kg m-2 s-1 |
xy |
Smoke emission flux
|
CARMA_SMEXTCOEF |
CARMA |
m-1 |
xyz |
Smoke 550 nm extinction coefficient
|
CARMA_SMEXTTAU |
CARMA |
1 |
xy |
Smoke 550-nm extinction AOT
|
CARMA_SMFLUXU |
CARMA |
kg m-1 s-1 |
xy |
Smoke column u-wind mass flux
|
CARMA_SMFLUXV |
CARMA |
kg m-1 s-1 |
xy |
Smoke column v-wind mass flux
|
CARMA_SMMASS |
CARMA |
kg kg-1 |
xyz |
Smoke Mass Mixing Ratio
|
CARMA_SMSCACOEF |
CARMA |
m-1 |
xyz |
Smoke 550 nm scattering coefficient
|
CARMA_SMSCATAU |
CARMA |
1 |
xy |
Smoke 550-nm scattering AOT
|
CARMA_SMSD |
CARMA |
kg m-2 s-1 |
xy |
Smoke sedimentation flux
|
CARMA_SMSMASS |
CARMA |
kg m-3 |
xy |
Smoke surface mass concentration
|
CARMA_SMSV |
CARMA |
kg m-2 s-1 |
xy |
Smoke convective scavenging flux
|
CARMA_SMWT |
CARMA |
kg m-2 s-1 |
xy |
Smoke wet-deposition flux
|
CARMA_SSANGSTR |
CARMA |
1 |
xy |
Seasalt 470-870 nm Angstrom parameter
|
CARMA_SSCMASS |
CARMA |
kg m-2 |
xy |
Seasalt column burden
|
CARMA_SSCONC |
CARMA |
kg m-3 |
xyz |
Seasalt Mass Concentration
|
CARMA_SSDP |
CARMA |
kg m-2 s-1 |
xy |
Seasalt deposition flux
|
CARMA_SSEM |
CARMA |
kg m-2 s-1 |
xy |
Seasalt emission flux
|
CARMA_SSEXTCOEF |
CARMA |
m-1 |
xyz |
Seasalt 550 nm extinction coefficient
|
CARMA_SSEXTTAU |
CARMA |
1 |
xy |
Seasalt 550-nm extinction AOT
|
CARMA_SSFLUXU |
CARMA |
kg m-1 s-1 |
xy |
Seasalt column u-wind mass flux
|
CARMA_SSFLUXV |
CARMA |
kg m-1 s-1 |
xy |
Seasalt column v-wind mass flux
|
CARMA_SSMASS |
CARMA |
kg kg-1 |
xyz |
Seasalt Mass Mixing Ratio
|
CARMA_SSSCACOEF |
CARMA |
m-1 |
xyz |
Seasalt 550 nm scattering coefficient
|
CARMA_SSSCATAU |
CARMA |
1 |
xy |
Seasalt 550-nm scattering AOT
|
CARMA_SSSD |
CARMA |
kg m-2 s-1 |
xy |
Seasalt sedimentation flux
|
CARMA_SSSMASS |
CARMA |
kg m-3 |
xy |
Seasalt surface mass concentration
|
CARMA_SSSV |
CARMA |
kg m-2 s-1 |
xy |
Seasalt convective scavenging flux
|
CARMA_SSWT |
CARMA |
kg m-2 s-1 |
xy |
Seasalt wet-deposition flux
|
CARMA_SUANGSTR |
CARMA |
1 |
xy |
Sulfate 470-870 nm Angstrom parameter
|
CARMA_SUCMASS |
CARMA |
kg m-2 |
xy |
Sulfate column burden
|
CARMA_SUCONC |
CARMA |
kg m-3 |
xyz |
Sulfate Mass Concentration
|
CARMA_SUDP |
CARMA |
kg m-2 s-1 |
xy |
Sulfate deposition flux
|
CARMA_SUEXTCOEF |
CARMA |
m-1 |
xyz |
Sulfate 550 nm extinction coefficient
|
CARMA_SUEXTTAU |
CARMA |
1 |
xy |
Sulfate 550-nm extinction AOT
|
CARMA_SUFLUXU |
CARMA |
kg m-1 s-1 |
xy |
Sulfate column u-wind mass flux
|
CARMA_SUFLUXV |
CARMA |
kg m-1 s-1 |
xy |
Sulfate column v-wind mass flux
|
CARMA_SUMASS |
CARMA |
kg kg-1 |
xyz |
Sulfate Mass Mixing Ratio
|
CARMA_SUNUC |
CARMA |
m-3 s-1 |
xyz |
Sulfate Total Nucleation Rate
|
CARMA_SUSCACOEF |
CARMA |
m-1 |
xyz |
Sulfate 550 nm scattering coefficient
|
CARMA_SUSCATAU |
CARMA |
1 |
xy |
Sulfate 550-nm scattering AOT
|
CARMA_SUSD |
CARMA |
kg m-2 s-1 |
xy |
Sulfate sedimentation flux
|
CARMA_SUSMASS |
CARMA |
kg m-3 |
xy |
Sulfate surface mass concentration
|
CARMA_SUSV |
CARMA |
kg m-2 s-1 |
xy |
Sulfate convective scavenging flux
|
CARMA_SUWT |
CARMA |
kg m-2 s-1 |
xy |
Sulfate wet-deposition flux
|
CARMA_TOTANGSTR |
CARMA |
1 |
xy |
Total 470-870 nm Angstrom parameter
|
CARMA_TOTEXTTAU |
CARMA |
1 |
xy |
Total 550-nm extinction AOT
|
CARMA_TOTSCATAU |
CARMA |
1 |
xy |
Total 550-nm scattering AOT
|
CCL4FLX |
StratChem |
kg s-1 |
xy |
derived CCl4 surface flux
|
CCL4_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change CCL4
|
CCN01 |
Moist |
m-3 |
xyz |
CCN conc at 0.1 % supersaturation (grid avg)
|
CCN04 |
Moist |
m-3 |
xyz |
CCN conc at 0.4 % supersaturation (grid avg)
|
CCN1 |
Moist |
m-3 |
xyz |
CCN conc at 1.0 % supersaturation (grid avg)
|
CCNCOLUMN |
Moist |
m-2 |
xy |
Vertically integrated CCN at 1% ssat
|
CCWP |
Moist |
kg m-2 |
xy |
grid mean conv cond water path diagnostic
|
CDCR2 |
Surface |
kg m-2 |
xy |
max water content
|
CDCR2& |
Land |
|
|
|
CDNC_NUC |
Moist |
m-3 |
xyz |
Nucleated cloud droplet concentration (grid avg)
|
CDUCMASS |
MAMchem |
kg m-2 |
xy |
Column Mass Density Coarse Dust mode
|
CDUEXTTAU |
MAMchem |
1 |
xy |
Aerosol Optical Thickness Coarse Dust mode
|
CDUSCATAU |
MAMchem |
1 |
xy |
Aerosol Scattering Optical Thickness Coarse Dust mode
|
CFADLIDARSR532_01 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 01
|
CFADLIDARSR532_02 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 02
|
CFADLIDARSR532_03 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 03
|
CFADLIDARSR532_04 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 04
|
CFADLIDARSR532_05 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 05
|
CFADLIDARSR532_06 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 06
|
CFADLIDARSR532_07 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 07
|
CFADLIDARSR532_08 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 08
|
CFADLIDARSR532_09 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 09
|
CFADLIDARSR532_10 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 10
|
CFADLIDARSR532_11 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 11
|
CFADLIDARSR532_12 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 12
|
CFADLIDARSR532_13 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 13
|
CFADLIDARSR532_14 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 14
|
CFADLIDARSR532_15 |
Satsim |
1 |
xyz |
calipso scattering ratio cfad 15
|
CFC113_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change CFC113
|
CFC11_LOSS |
PChem |
mol mol-1 s-1 |
xyz |
tendency of CFC11 volume mixing ratio due to loss
|
CFC11_PROD |
PChem |
mol mol-1 s-1 |
xyz |
tendency of CFC11 volume mixing ratio due to production
|
CFC11_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change CFC11
|
CFC12EM |
CFC |
kg m-2 s-1 |
xy |
CFC-12 Emission
|
CFC12PH |
CFC |
s-1 |
xyz |
CFC-12 Photorate
|
CFC12S |
CFC |
mol mol-1 |
xyz |
Stratospheric CFC-12 (CCl2F2)
|
CFC12SCL |
CFC |
kg m-2 |
xy |
Stratospheric CFC-12 Column
|
CFC12SLS |
CFC |
m-3 s-1 |
xyz |
Stratospheric CFC-12 Loss
|
CFC12T |
CFC |
mol mol-1 |
xyz |
Tropospheric CFC-12 (CCl2F2)
|
CFC12TCL |
CFC |
kg m-2 |
xy |
Tropospheric CFC-12 Column
|
CFC12TLS |
CFC |
m-3 s-1 |
xyz |
Tropospheric CFC-12 Loss
|
CFC12_LOSS |
PChem |
mol mol-1 s-1 |
xyz |
tendency of CFC12 volume mixing ratio due to loss
|
CFC12_PROD |
PChem |
mol mol-1 s-1 |
xyz |
tendency of CFC12 volume mixing ratio due to production
|
CFC12_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change CFC12
|
CFICE |
Moist |
1 |
xyz |
ice cloud area fraction (LS)
|
CFLIQ |
Moist |
1 |
xyz |
liquid cloud area fraction (LS)
|
CFPDF |
Moist |
1 |
xyz |
cloud fraction after PDF
|
CFPDFX |
Moist |
1 |
xyz |
cloud fraction internal in PDF scheme
|
CH3BRFLX |
StratChem |
kg s-1 |
xy |
derived CH3Br surface flux
|
CH3BR_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change CH3BR
|
CH3CCL3_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change CH3CCL3
|
CH3CLFLX |
StratChem |
kg s-1 |
xy |
derived CH3Cl surface flux
|
CH3CL_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change CH3CL
|
CH3OOH_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change CH3OOH
|
CH4CL |
CH4 |
kg m-2 |
xy |
CH4 Column Burden ENSEMBLE
|
CH4CLanimls |
CH4 |
kg m-2 |
xy |
CH4 Column Burden animals
|
CH4CLbf |
CH4 |
kg m-2 |
xy |
CH4 Column Burden biofuel
|
CH4CLbogs |
CH4 |
kg m-2 |
xy |
CH4 Column Burden bogs
|
CH4CLburn |
CH4 |
kg m-2 |
xy |
CH4 Column Burden biomass burning
|
CH4CLcoal |
CH4 |
kg m-2 |
xy |
CH4 Column Burden coal
|
CH4CLgasvnt |
CH4 |
kg m-2 |
xy |
CH4 Column Burden gas venting
|
CH4CLhydz |
CH4 |
kg m-2 |
xy |
CH4 Column Burden ocean HYDZ
|
CH4CLleak |
CH4 |
kg m-2 |
xy |
CH4 Column Burden leakage
|
CH4CLmsw |
CH4 |
kg m-2 |
xy |
CH4 Column Burden municipal sewers
|
CH4CLricec |
CH4 |
kg m-2 |
xy |
CH4 Column Burden rice cultivation
|
CH4CLsoilab |
CH4 |
kg m-2 |
xy |
CH4 Column Burden soil absorption
|
CH4CLswamps |
CH4 |
kg m-2 |
xy |
CH4 Column Burden swamps
|
CH4CLtot |
CH4 |
kg m-2 |
xy |
CH4 Column Burden total
|
CH4CLtrmite |
CH4 |
kg m-2 |
xy |
CH4 Column Burden termites
|
CH4CLtundra |
CH4 |
kg m-2 |
xy |
CH4 Column Burden tundra
|
CH4DRY |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction ENSEMBLE
|
CH4DRYanimls |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction animals
|
CH4DRYbf |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction biofuel
|
CH4DRYbogs |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction bogs
|
CH4DRYburn |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction biomass burning
|
CH4DRYcoal |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction coal
|
CH4DRYgasvnt |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction gas venting
|
CH4DRYhydz |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction ocean HYDZ
|
CH4DRYleak |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction leakage
|
CH4DRYmsw |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction municipal sewers
|
CH4DRYricec |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction rice cultivation
|
CH4DRYsoilab |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction soil absorption
|
CH4DRYswamps |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction swamps
|
CH4DRYtot |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction total
|
CH4DRYtrmite |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction termites
|
CH4DRYtundra |
CH4 |
mol mol-1 |
xyz |
CH4 dry air mole fraction tundra
|
CH4EM |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission ENSEMBLE
|
CH4EManimls |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission animals
|
CH4EMbf |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission biofuel
|
CH4EMbogs |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission bogs
|
CH4EMburn |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission biomass burning
|
CH4EMcoal |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission coal
|
CH4EMgasvnt |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission gas venting
|
CH4EMhydz |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission ocean HYDZ
|
CH4EMleak |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission leakage
|
CH4EMmsw |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission municipal sewers
|
CH4EMricec |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission rice cultivation
|
CH4EMsoilab |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission soil absorption
|
CH4EMswamps |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission swamps
|
CH4EMtot |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission total
|
CH4EMtrmite |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission termites
|
CH4EMtundra |
CH4 |
kg m-2 s-1 |
xy |
CH4 Emission tundra
|
CH4FLX |
StratChem |
kg s-1 |
xy |
derived CH4 surface flux
|
CH4JL |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss ENSEMBLE
|
CH4JLanimls |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss animals
|
CH4JLbf |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss biofuel
|
CH4JLbogs |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss bogs
|
CH4JLburn |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss biomass burning
|
CH4JLcoal |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss coal
|
CH4JLgasvnt |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss gas venting
|
CH4JLhydz |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss ocean HYDZ
|
CH4JLleak |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss leakage
|
CH4JLmsw |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss municipal sewers
|
CH4JLricec |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss rice cultivation
|
CH4JLsoilab |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss soil absorption
|
CH4JLswamps |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss swamps
|
CH4JLtot |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss total
|
CH4JLtrmite |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss termites
|
CH4JLtundra |
CH4 |
m-3 s-1 |
xyz |
CH4 Photolytic Loss tundra
|
CH4LS |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss ENSEMBLE
|
CH4LSanimls |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss animals
|
CH4LSbf |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss biofuel
|
CH4LSbogs |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss bogs
|
CH4LSburn |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss biomass burning
|
CH4LScoal |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss coal
|
CH4LSgasvnt |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss gas venting
|
CH4LShydz |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss ocean HYDZ
|
CH4LSleak |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss leakage
|
CH4LSmsw |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss municipal sewers
|
CH4LSricec |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss rice cultivation
|
CH4LSsoilab |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss soil absorption
|
CH4LSswamps |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss swamps
|
CH4LStot |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss total
|
CH4LStrmite |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss termites
|
CH4LStundra |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Loss tundra
|
CH4PD |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production ENSEMBLE
|
CH4PDanimls |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production animals
|
CH4PDbf |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production biofuel
|
CH4PDbogs |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production bogs
|
CH4PDburn |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production biomass burning
|
CH4PDcoal |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production coal
|
CH4PDgasvnt |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production gas venting
|
CH4PDhydz |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production ocean HYDZ
|
CH4PDleak |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production leakage
|
CH4PDmsw |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production municipal sewers
|
CH4PDricec |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production rice cultivation
|
CH4PDsoilab |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production soil absorption
|
CH4PDswamps |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production swamps
|
CH4PDtot |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production total
|
CH4PDtrmite |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production termites
|
CH4PDtundra |
CH4 |
kg m-2 s-1 |
xy |
CH4 Chemical Production tundra
|
CH4QP |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis ENSEMBLE
|
CH4QPanimls |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis animals
|
CH4QPbf |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis biofuel
|
CH4QPbogs |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis bogs
|
CH4QPburn |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis biomass burning
|
CH4QPcoal |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis coal
|
CH4QPgasvnt |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis gas venting
|
CH4QPhydz |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis ocean HYDZ
|
CH4QPleak |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis leakage
|
CH4QPmsw |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis municipal sewers
|
CH4QPricec |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis rice cultivation
|
CH4QPsoilab |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis soil absorption
|
CH4QPswamps |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis swamps
|
CH4QPtot |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis total
|
CH4QPtrmite |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis termites
|
CH4QPtundra |
CH4 |
kg kg-1 s-1 |
xyz |
H2O tendency from CH4 photolysis tundra
|
CH4SC |
CH4 |
ppbv |
xy |
CH4 Surface Concentration ENSEMBLE
|
CH4SCanimls |
CH4 |
ppbv |
xy |
CH4 Surface Concentration animals
|
CH4SCbf |
CH4 |
ppbv |
xy |
CH4 Surface Concentration biofuel
|
CH4SCbogs |
CH4 |
ppbv |
xy |
CH4 Surface Concentration bogs
|
CH4SCburn |
CH4 |
ppbv |
xy |
CH4 Surface Concentration biomass burning
|
CH4SCcoal |
CH4 |
ppbv |
xy |
CH4 Surface Concentration coal
|
CH4SCgasvnt |
CH4 |
ppbv |
xy |
CH4 Surface Concentration gas venting
|
CH4SChydz |
CH4 |
ppbv |
xy |
CH4 Surface Concentration ocean HYDZ
|
CH4SCleak |
CH4 |
ppbv |
xy |
CH4 Surface Concentration leakage
|
CH4SCmsw |
CH4 |
ppbv |
xy |
CH4 Surface Concentration municipal sewers
|
CH4SCricec |
CH4 |
ppbv |
xy |
CH4 Surface Concentration rice cultivation
|
CH4SCsoilab |
CH4 |
ppbv |
xy |
CH4 Surface Concentration soil absorption
|
CH4SCswamps |
CH4 |
ppbv |
xy |
CH4 Surface Concentration swamps
|
CH4SCtot |
CH4 |
ppbv |
xy |
CH4 Surface Concentration total
|
CH4SCtrmite |
CH4 |
ppbv |
xy |
CH4 Surface Concentration termites
|
CH4SCtundra |
CH4 |
ppbv |
xy |
CH4 Surface Concentration tundra
|
CH4_LOSS |
PChem |
mol mol-1 s-1 |
xyz |
tendency of methane volume mixing ratio due to loss
|
CH4_PROD |
PChem |
mol mol-1 s-1 |
xyz |
tendency of methane volume mixing ratio due to production
|
CH4_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change CH4
|
CHEM_TRACERS |
Chem |
X |
|
chemistry friendly tracers
|
CHEM_TRACERS |
Chem |
X |
|
chemistry friendly tracers
|
CHEM_TRACERS |
Chem |
X |
|
chemistry friendly tracers
|
CHIS |
Turbulence |
1 |
xy |
optimal mixture fraction for BRV
|
CHLOROPHYLL |
Gcm |
|
|
|
CHLOROPHYLL |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
CHT |
Lake |
kg m-2 s-1 |
tile |
surface heat exchange coefficient
|
CHT |
Landice |
kg m-2 s-1 |
tile |
surface heat exchange coefficient
|
CHT |
Land |
|
|
|
CHT |
Catch |
kg m-2 s-1 |
tile |
surface heat exchange coefficient
|
CHT |
CatchCN |
kg m-2 s-1 |
tile |
surface heat exchange coefficient
|
CHT |
Saltwater |
kg m-2 s-1 |
tile |
surface heat exchange coefficient
|
CICE_2D_MASK |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
CKQODT |
Turbulence |
1 |
xyz |
matrix diagonal ck for moisture over dt
|
CKSODT |
Turbulence |
1 |
xyz |
matrix diagonal ck for scalars over dt
|
CKVODT |
Turbulence |
1 |
xyz |
matrix diagonal ck for winds over dt
|
CL2_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change CL2
|
CLCALIPSO |
Satsim |
1 |
xyz |
calipso total cloud fraction
|
CLCALIPSO2 |
Satsim |
1 |
xyz |
calipso no cloudsat cloud fraction
|
CLCN |
Moist |
1 |
xyz |
convective cloud volume fraction
|
CLCNX0 |
Moist |
1 |
xyz |
convective cloud area fraction
|
CLDHI |
Solar |
1 |
xy |
cloud area fraction for high clouds
|
CLDHILW |
Irrad |
1 |
xy |
total cloud area fraction lw
|
CLDLO |
Solar |
1 |
xy |
cloud area fraction for low clouds
|
CLDLOLW |
Irrad |
1 |
xy |
total cloud area fraction lw
|
CLDMD |
Solar |
1 |
xy |
cloud area fraction for middle clouds
|
CLDMDLW |
Irrad |
1 |
xy |
total cloud area fraction lw
|
CLDNCCN |
Moist |
m-3 |
xyz |
number concentration of cloud particles
|
CLDPRS |
Solar |
Pa |
xy |
cloud top pressure
|
CLDPRS |
Irrad |
Pa |
xy |
cloud top pressure
|
CLDREFFI_TOP |
Moist |
m |
xy |
ice crystal effective radius at cloud top
|
CLDREFFL_TOP |
Moist |
m |
xy |
Droplet effective radius at cloud top
|
CLDRF |
Turbulence |
W m-2 |
xy |
cloud top radiative forcing
|
CLDSTD |
Gwd |
m |
xy |
gravity wave drag standard deviation due to clouds
|
CLDTMP |
Solar |
K |
xy |
cloud top temperature
|
CLDTMP |
Irrad |
K |
xy |
cloud top temperature
|
CLDTT |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
CLDTT |
Solar |
1 |
xy |
total cloud area fraction
|
CLDTTLW |
Irrad |
1 |
xy |
total cloud area fraction lw
|
CLHCALIPSO |
Satsim |
1 |
xy |
calipso high level cloud fraction
|
CLISCCP1 |
Satsim |
1 |
xy |
isccp cloud area fraction 0 180 hPa
|
CLISCCP2 |
Satsim |
1 |
xy |
isccp cloud area fraction 180 310 hPa
|
CLISCCP3 |
Satsim |
1 |
xy |
isccp cloud area fraction 310 440 hPa
|
CLISCCP4 |
Satsim |
1 |
xy |
isccp cloud area fraction 440 560 hPa
|
CLISCCP5 |
Satsim |
1 |
xy |
isccp cloud area fraction 560 680 hPa
|
CLISCCP6 |
Satsim |
1 |
xy |
isccp cloud area fraction 680 800 hPa
|
CLISCCP7 |
Satsim |
1 |
xy |
isccp cloud area fraction 800 SFC hPa
|
CLLCALIPSO |
Satsim |
1 |
xy |
calipso low level cloud fraction
|
CLLS |
Moist |
1 |
xyz |
large scale cloud volume fraction
|
CLLSX0 |
Moist |
1 |
xyz |
large scale cloud area fraction
|
CLMCALIPSO |
Satsim |
1 |
xy |
calipso mid level cloud fraction
|
CLONO2_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change CLONO2
|
CLOUDSATCFAD01 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD02 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD03 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD04 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD05 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD06 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD07 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD08 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD09 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD10 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD11 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD12 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD13 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD14 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLOUDSATCFAD15 |
Satsim |
1 |
xyz |
cloudsat radar reflectivity cfad
|
CLTCALIPSO |
Satsim |
1 |
xy |
calipso total cloud fraction
|
CLTISCCP |
Satsim |
1 |
xy |
isccp cloud area fraction
|
CLX_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change CLX
|
CMD_DMS |
AChem |
kg m-2 |
xy |
Column mass density of DMS
|
CMD_H2SO4 |
AChem |
kg m-2 |
xy |
Column mass density of H2SO4
|
CMD_MSA |
AChem |
kg m-2 |
xy |
Column mass density of MSA
|
CMD_NH3 |
AChem |
kg m-2 |
xy |
Column mass density of NH3
|
CMD_N_GAS |
AChem |
kg m-2 |
xy |
Column mass density of nitrogen in kg-N m-2
|
CMD_N_NH3 |
AChem |
kg m-2 |
xy |
Column mass density of NH3 in kg-N m-2
|
CMD_SO2 |
AChem |
kg m-2 |
xy |
Column mass density of SO2
|
CMD_SOAG |
AChem |
kg m-2 |
xy |
Column mass density of SOA(gas)
|
CMD_S_DMS |
AChem |
kg m-2 |
xy |
Column mass density of DMS in kg-S m-2
|
CMD_S_GAS |
AChem |
kg m-2 |
xy |
Column mass density of sulfur in gas phase in kg-S m-2
|
CMD_S_H2SO4 |
AChem |
kg m-2 |
xy |
Column mass density of H2SO4 in kg-S m-2
|
CMD_S_MSA |
AChem |
kg m-2 |
xy |
Column mass density of MSA in kg-S m-2
|
CMD_S_SO2 |
AChem |
kg m-2 |
xy |
Column mass density of SO2 in kg-S m-2
|
CMT |
Lake |
kg m-2 s-1 |
tile |
surface momentum exchange coefficient
|
CMT |
Landice |
kg m-2 s-1 |
tile |
surface momentum exchange coefficient
|
CMT |
Land |
|
|
|
CMT |
Catch |
kg m-2 s-1 |
tile |
surface momentum exchange coefficient
|
CMT |
CatchCN |
kg m-2 s-1 |
tile |
surface momentum exchange coefficient
|
CMT |
Saltwater |
kg m-2 s-1 |
tile |
surface momentum exchange coefficient
|
CNADD |
Surface |
kg m-2 s-1 |
xy |
CN added to maintain positive C
|
CNADD |
CatchCN |
kg m-2 s-1 |
tile |
CN added to maintain positive C
|
CNBURN |
Surface |
s-1 |
xy |
CN fractional area burn rate
|
CNBURN |
CatchCN |
s-1 |
tile |
CN fractional area burn rate
|
CNFSEL |
Surface |
days |
xy |
fire season length
|
CNFSEL |
CatchCN |
days |
tile |
fire season length
|
CNGPP |
Surface |
kg m-2 s-1 |
xy |
CN gross primary production
|
CNGPP |
CatchCN |
kg m-2 s-1 |
tile |
CN gross primary production
|
CNLAI |
Surface |
1 |
xy |
CN exposed leaf-area index
|
CNLAI |
CatchCN |
1 |
tile |
CN exposed leaf-area index
|
CNLOSS |
Surface |
kg m-2 s-1 |
xy |
CN carbon loss to fire
|
CNLOSS |
CatchCN |
kg m-2 s-1 |
tile |
CN carbon loss to fire
|
CNNEE |
Surface |
kg m-2 s-1 |
xy |
CN net ecosystem exchange
|
CNNEE |
CatchCN |
kg m-2 s-1 |
tile |
CN net ecosystem exchange
|
CNNPP |
Surface |
kg m-2 s-1 |
xy |
CN net primary production
|
CNNPP |
CatchCN |
kg m-2 s-1 |
tile |
CN net primary production
|
CNROOT |
Surface |
kg m-2 |
xy |
CN total root carbon
|
CNROOT |
CatchCN |
kg m-2 |
tile |
CN total root carbon
|
CNSAI |
Surface |
1 |
xy |
CN exposed stem-area index
|
CNSAI |
CatchCN |
1 |
tile |
CN exposed stem-area index
|
CNSR |
Surface |
kg m-2 s-1 |
xy |
CN total soil respiration
|
CNSR |
CatchCN |
kg m-2 s-1 |
tile |
CN total soil respiration
|
CNT |
Lake |
1 |
tile |
neutral drag coefficient
|
CNT |
Landice |
1 |
tile |
neutral drag coefficient
|
CNT |
Land |
|
|
|
CNT |
Catch |
1 |
tile |
neutral drag coefficient
|
CNT |
CatchCN |
1 |
tile |
neutral drag coefficient
|
CNT |
Saltwater |
1 |
tile |
neutral drag coefficient
|
CNTLAI |
Surface |
1 |
xy |
CN total leaf-area index
|
CNTLAI |
CatchCN |
1 |
tile |
CN total leaf-area index
|
CNTOTC |
Surface |
kg m-2 |
xy |
CN total carbon
|
CNTOTC |
CatchCN |
kg m-2 |
tile |
CN total carbon
|
CNV |
FVdycore |
W m-2 |
xy |
generation of atmosphere kinetic energy content
|
CNV |
DynCore |
W m-2 |
xy |
generation of atmosphere kinetic energy content
|
CNV |
ARIESg3 |
W m-2 |
xy |
generation of atmosphere kinetic energy content
|
CNVEGC |
Surface |
kg m-2 |
xy |
CN total vegetation carbon
|
CNVEGC |
CatchCN |
kg m-2 |
tile |
CN total vegetation carbon
|
CNVIZ |
Moist |
kg m-2 s-1 |
xy |
convective source of cloud ice
|
CNVLZ |
Moist |
kg m-2 s-1 |
xy |
convective source of cloud water
|
CNVRNZ |
Moist |
kg m-2 s-1 |
xy |
convective production of rain water
|
CNV_BASEP |
Moist |
Pa |
xy |
pressure at convective cloud base
|
CNV_CVW |
Moist |
hPa s-1 |
xyz |
updraft vertical velocity
|
CNV_DQLDT |
Moist |
kg m-2 s-1 |
xyz |
convective condensate source
|
CNV_FICE |
Moist |
1 |
xyz |
Ice fraction in convective tower
|
CNV_FRC |
Moist |
|
xy |
convective fraction
|
CNV_FREQ |
Moist |
fraction |
xy |
convective frequency
|
CNV_MF0 |
Moist |
kg m-2 s-1 |
xyz |
cloud base mass flux
|
CNV_MFC |
Moist |
kg m-2 s-1 |
xyz |
cumulative mass flux
|
CNV_MFD |
Moist |
kg m-2 s-1 |
xyz |
detraining mass flux
|
CNV_NDROP |
Moist |
m-3 |
xyz |
Droplet number conc. in conv. detrainment
|
CNV_NICE |
Moist |
m-3 |
xyz |
Ice crystal number conc. in conv. detrainment
|
CNV_PRC3 |
Moist |
kg m-2 s-1 |
xyz |
convective precipitation from RAS
|
CNV_QC |
Moist |
kg kg-1 |
xyz |
grid mean convective condensate
|
CNV_TOPP |
Moist |
Pa |
xy |
pressure at convective cloud top
|
CNV_UPDF |
Moist |
1 |
xyz |
updraft areal fraction
|
CNXSMR |
Surface |
kg m-2 |
xy |
abstract C pool to meet excess MR demand
|
CNXSMR |
CatchCN |
kg m-2 |
tile |
abstract C pool to meet excess MR demand
|
CN_ARF |
Moist |
1 |
xy |
areal fraction of convective showers
|
CN_PRCP |
ChemEnv |
kg m-2 s-1 |
xy |
Convective precipitation
|
CN_PRCP |
Moist |
kg m-2 s-1 |
xy |
convective precipitation
|
CO2 |
CO2 |
molmol |
xyz |
Carbon Dioxide
|
CO2AFRIC |
CO2 |
molmol |
xyz |
African Carbon Dioxide
|
CO2CL001 |
CO2 |
1 |
xy |
CO2 Bulk Mixing Ratio (Column Massps) Bin 001
|
CO2CL002 |
CO2 |
1 |
xy |
CO2 Bulk Mixing Ratio (Column Massps) Bin 002
|
CO2CL003 |
CO2 |
1 |
xy |
CO2 Bulk Mixing Ratio (Column Massps) Bin 003
|
CO2CL004 |
CO2 |
1 |
xy |
CO2 Bulk Mixing Ratio (Column Massps) Bin 004
|
CO2EM001 |
CO2 |
kg m-2 s-1 |
xy |
CO2 Emission Bin 001
|
CO2EM002 |
CO2 |
kg m-2 s-1 |
xy |
CO2 Emission Bin 002
|
CO2EM003 |
CO2 |
kg m-2 s-1 |
xy |
CO2 Emission Bin 003
|
CO2EM004 |
CO2 |
kg m-2 s-1 |
xy |
CO2 Emission Bin 004
|
CO2NAMER |
CO2 |
molmol |
xyz |
North American Carbon Dioxide
|
CO2SAMER |
CO2 |
molmol |
xyz |
South American Carbon Dioxide
|
CO2SC |
Saltwater |
1e-6 |
tile |
CO2 Surface Concentration Bin 001
|
CO2SC001 |
CO2 |
1e-6 |
xy |
CO2 Surface Concentration Bin 001
|
CO2SC002 |
CO2 |
1e-6 |
xy |
CO2 Surface Concentration Bin 002
|
CO2SC003 |
CO2 |
1e-6 |
xy |
CO2 Surface Concentration Bin 003
|
CO2SC004 |
CO2 |
1e-6 |
xy |
CO2 Surface Concentration Bin 004
|
COCL |
CO |
kg m-2 |
xy |
CO Column Burden ENSEMBLE
|
COCLbbae |
CO |
kg m-2 |
xy |
CO Column Burden (Asia and Europe Biomass Burning)
|
COCLbbaf |
CO |
kg m-2 |
xy |
CO Column Burden (Africa Biomass Burning)
|
COCLbbbo |
CO |
kg m-2 |
xy |
CO Column Burden (Boreal Biomass Burning)
|
COCLbbgl |
CO |
kg m-2 |
xy |
CO Column Burden (Global Biomass Burning)
|
COCLbbla |
CO |
kg m-2 |
xy |
CO Column Burden (Central and South America Biomass Burning)
|
COCLbbna |
CO |
kg m-2 |
xy |
CO Column Burden (North America Biomass Burning)
|
COCLbbnb |
CO |
kg m-2 |
xy |
CO Column Burden (Non-Boreal Biomass Burning)
|
COCLffas |
CO |
kg m-2 |
xy |
CO Column Burden (Anthopogenic Emissions Southern Asia)
|
COCLffeu |
CO |
kg m-2 |
xy |
CO Column Burden (Anthopogenic Emissions Europe)
|
COCLffna |
CO |
kg m-2 |
xy |
CO Column Burden (Anthopogenic Emissions North America)
|
COCLffru |
CO |
kg m-2 |
xy |
CO Column Burden (Anthopogenic Emissions Northern Asia)
|
COCLnbas |
CO |
kg m-2 |
xy |
CO Column Burden (Asia Non-Biomass Burning)
|
COCLnbeu |
CO |
kg m-2 |
xy |
CO Column Burden (European Non-Biomass Burning)
|
COCLnbgl |
CO |
kg m-2 |
xy |
CO Column Burden (Global Non-Biomass Burning)
|
COCLnbna |
CO |
kg m-2 |
xy |
CO Column Burden (North American Non-Biomass Burning)
|
COEM |
CO |
kg m-2 s-1 |
xy |
CO Emission ENSEMBLE
|
COEMbbae |
CO |
kg m-2 s-1 |
xy |
CO Emission (Asia and Europe Biomass Burning)
|
COEMbbaf |
CO |
kg m-2 s-1 |
xy |
CO Emission (Africa Biomass Burning)
|
COEMbbbo |
CO |
kg m-2 s-1 |
xy |
CO Emission (Boreal Biomass Burning)
|
COEMbbgl |
CO |
kg m-2 s-1 |
xy |
CO Emission (Global Biomass Burning)
|
COEMbbla |
CO |
kg m-2 s-1 |
xy |
CO Emission (Central and South America Biomass Burning)
|
COEMbbna |
CO |
kg m-2 s-1 |
xy |
CO Emission (North America Biomass Burning)
|
COEMbbnb |
CO |
kg m-2 s-1 |
xy |
CO Emission (Non-Boreal Biomass Burning)
|
COEMffas |
CO |
kg m-2 s-1 |
xy |
CO Emission (Anthopogenic Emissions Southern Asia)
|
COEMffeu |
CO |
kg m-2 s-1 |
xy |
CO Emission (Anthopogenic Emissions Europe)
|
COEMffna |
CO |
kg m-2 s-1 |
xy |
CO Emission (Anthopogenic Emissions North America)
|
COEMffru |
CO |
kg m-2 s-1 |
xy |
CO Emission (Anthopogenic Emissions Northern Asia)
|
COEMnbas |
CO |
kg m-2 s-1 |
xy |
CO Emission (Asia Non-Biomass Burning)
|
COEMnbeu |
CO |
kg m-2 s-1 |
xy |
CO Emission (European Non-Biomass Burning)
|
COEMnbgl |
CO |
kg m-2 s-1 |
xy |
CO Emission (Global Non-Biomass Burning)
|
COEMnbna |
CO |
kg m-2 s-1 |
xy |
CO Emission (North American Non-Biomass Burning)
|
COLLIZ |
Moist |
kg m-2 s-1 |
xy |
accretion loss of cloud water to snow
|
COLLLZ |
Moist |
kg m-2 s-1 |
xy |
accretion loss of cloud water to rain
|
COLS |
CO |
kg m-2 s-1 |
xy |
CO Chemical Loss ENSEMBLE
|
COLSbbae |
CO |
km m-2 s-1 |
xy |
CO Chemical Loss (Asia and Europe Biomass Burning)
|
COLSbbaf |
CO |
km m-2 s-1 |
xy |
CO Chemical Loss (Africa Biomass Burning)
|
COLSbbbo |
CO |
km m-2 s-1 |
xy |
CO Chemical Loss (Boreal Biomass Burning)
|
COLSbbgl |
CO |
km m-2 s-1 |
xy |
CO Chemical Loss (Global Biomass Burning)
|
COLSbbla |
CO |
km m-2 s-1 |
xy |
CO Chemical Loss (Central and South America Biomass Burning)
|
COLSbbna |
CO |
km m-2 s-1 |
xy |
CO Chemical Loss (North America Biomass Burning)
|
COLSbbnb |
CO |
km m-2 s-1 |
xy |
CO Chemical Loss (Non-Boreal Biomass Burning)
|
COLSffas |
CO |
km m-2 s-1 |
xy |
CO Chemical Loss (Anthopogenic Emissions Southern Asia)
|
COLSffeu |
CO |
km m-2 s-1 |
xy |
CO Chemical Loss (Anthopogenic Emissions Europe)
|
COLSffna |
CO |
km m-2 s-1 |
xy |
CO Chemical Loss (Anthopogenic Emissions North America)
|
COLSffru |
CO |
km m-2 s-1 |
xy |
CO Chemical Loss (Anthopogenic Emissions Northern Asia)
|
COLSnbas |
CO |
kg m-2 s-1 |
xy |
CO Chemical Loss (Asia Non-Biomass Burning)
|
COLSnbeu |
CO |
kg m-2 s-1 |
xy |
CO Chemical Loss (European Non-Biomass Burning)
|
COLSnbgl |
CO |
kg m-2 s-1 |
xy |
CO Chemical Loss (Global Non-Biomass Burning)
|
COLSnbna |
CO |
kg m-2 s-1 |
xy |
CO Chemical Loss (North American Non-Biomass Burning)
|
COMMTIMER |
DynCore |
seconds |
xy |
communication timer in the dynamics
|
CONC_DMS |
AChem |
m-3 |
xyz |
Concentration of DMS in molecules-DMS m-3
|
CONC_H2SO4 |
AChem |
m-3 |
xyz |
Concentration of H2SO4 in molecules-H2SO4 m-3
|
CONC_MSA |
AChem |
m-3 |
xyz |
Concentration of MSA in molecules-MSA m-3
|
CONC_NH3 |
AChem |
m-3 |
xyz |
Concentration of NH3 in molecules-NH3 m-3
|
CONC_SO2 |
AChem |
m-3 |
xyz |
Concentration of SO2 in molecules-SO2 m-3
|
CONC_SOAG |
AChem |
m-3 |
xyz |
Concentration of SOA(gas) in molecules-SOA m-3
|
CONGEL |
Surface |
m s-1 |
xy |
congelation ice growth
|
CONGEL |
Saltwater |
m s-1 |
tile |
congelation ice growth
|
CONVCPT |
FVdycore |
W m-2 |
xy |
vertically integrated enthalpy convergence
|
CONVCPT |
DynCore |
W m-2 |
xy |
vertically integrated enthalpy convergence
|
CONVCPT |
ARIESg3 |
W m-2 |
xy |
vertically integrated enthalpy convergence
|
CONVKE |
FVdycore |
W m-2 |
xy |
vertically integrated kinetic energy convergence
|
CONVKE |
DynCore |
W m-2 |
xy |
vertically integrated kinetic energy convergence
|
CONVKE |
ARIESg3 |
W m-2 |
xy |
vertically integrated kinetic energy convergence
|
CONVPHI |
FVdycore |
W m-2 |
xy |
vertically integrated geopotential convergence
|
CONVPHI |
DynCore |
W m-2 |
xy |
vertically integrated geopotential convergence
|
CONVPHI |
ARIESg3 |
W m-2 |
xy |
vertically integrated geopotential convergence
|
CONVTHV |
FVdycore |
W m-2 |
xy |
vertically integrated thetav convergence
|
CONVTHV |
DynCore |
W m-2 |
xy |
vertically integrated thetav convergence
|
CONVTHV |
ARIESg3 |
W m-2 |
xy |
vertically integrated thetav convergence
|
COPD |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production ENSEMBLE
|
COPDbbae |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (Asia and Europe Biomass Burning)
|
COPDbbaf |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (Africa Biomass Burning)
|
COPDbbbo |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (Boreal Biomass Burning)
|
COPDbbgl |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (Global Biomass Burning)
|
COPDbbla |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (Central and South America Biomass Burning)
|
COPDbbna |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (North America Biomass Burning)
|
COPDbbnb |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (Non-Boreal Biomass Burning)
|
COPDffas |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (Anthopogenic Emissions Southern Asia)
|
COPDffeu |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (Anthopogenic Emissions Europe)
|
COPDffna |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (Anthopogenic Emissions North America)
|
COPDffru |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (Anthopogenic Emissions Northern Asia)
|
COPDnbas |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (Asia Non-Biomass Burning)
|
COPDnbeu |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (European Non-Biomass Burning)
|
COPDnbgl |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (Global Non-Biomass Burning)
|
COPDnbna |
CO |
kg m-2 s-1 |
xy |
CO Chemical Production (North American Non-Biomass Burning)
|
COSC |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv ENSEMBLE
|
COSCbbae |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (Asia and Europe Biomass Burning)
|
COSCbbaf |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (Africa Biomass Burning)
|
COSCbbbo |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (Boreal Biomass Burning)
|
COSCbbgl |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (Global Biomass Burning)
|
COSCbbla |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (Central and South America Biomass Burning)
|
COSCbbna |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (North America Biomass Burning)
|
COSCbbnb |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (Non-Boreal Biomass Burning)
|
COSCffas |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (Anthopogenic Emissions Southern Asia)
|
COSCffeu |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (Anthopogenic Emissions Europe)
|
COSCffna |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (Anthopogenic Emissions North America)
|
COSCffru |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (Anthopogenic Emissions Northern Asia)
|
COSCnbas |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (Asia Non-Biomass Burning)
|
COSCnbeu |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (European Non-Biomass Burning)
|
COSCnbgl |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (Global Non-Biomass Burning)
|
COSCnbna |
CO |
1e-9 |
xy |
CO Surface Concentration in ppbv (North American Non-Biomass Burning)
|
COSZ |
Solar |
1 |
xy |
cosine of the solar zenith angle
|
CO_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change CO
|
CPL_DMS_gas |
AChem |
kg m-2 s-1 |
xy |
Column integrated tendency of dimethyl sulfide (DMS) due to gas phase chemistry
|
CPL_H2SO4_gas |
AChem |
kg m-2 s-1 |
xy |
Column integrated tendency of sulfuric acid (H2SO4 gas) due to gas phase chemistry
|
CPL_MSA_gas |
AChem |
kg m-2 s-1 |
xy |
Column integrated tendency of methanesulfonic acid (MSA) due to gas phase chemistry
|
CPL_NH3_gas |
AChem |
kg m-2 s-1 |
xy |
Column integrated tendency of ammonia (NH3) due to gas phase chemistry
|
CPL_N_NH3_gas |
AChem |
kg m-2 s-1 |
xy |
Column integrated tendency of ammonia (NH3) due to gas phase chemistry
|
CPL_N_gas |
AChem |
kg m-2 s-1 |
xy |
Column integrated tendency of total nitrogen due to gas phase chemistry
|
CPL_SO2_gas |
AChem |
kg m-2 s-1 |
xy |
Column integrated tendency of sulfur dioxide (SO2) due to gas phase chemistry
|
CPL_SOAG_gas |
AChem |
kg m-2 s-1 |
xy |
Column integrated tendency of Secondary Organic Aerosols (SOA gas) due to gas phase chemistry
|
CPL_S_DMS_gas |
AChem |
kg m-2 s-1 |
xy |
Column integrated tendency of dimethyl sulfide (DMS) due to gas phase chemistry
|
CPL_S_H2SO4_gas |
AChem |
kg m-2 s-1 |
xy |
Column integrated tendency of sulfuric acid (H2SO4 gas) due to gas phase chemistry
|
CPL_S_MSA_gas |
AChem |
kg m-2 s-1 |
xy |
Column integrated tendency of methanesulfonic acid (MSA) due to gas phase chemistry
|
CPL_S_SO2_gas |
AChem |
kg m-2 s-1 |
xy |
Column integrated tendency of sulfur dioxide (SO2) due to gas phase chemistry
|
CPL_S_gas |
AChem |
kg m-2 s-1 |
xy |
Column integrated tendency of total sulfur due to gas phase chemistry
|
CPT |
Agcm |
J m-2 |
xy |
vertically integrated enthalpy
|
CQT |
Lake |
kg m-2 s-1 |
tile |
surface moisture exchange coefficient
|
CQT |
Landice |
kg m-2 s-1 |
tile |
surface moisture exchange coefficient
|
CQT |
Land |
|
|
|
CQT |
Catch |
kg m-2 s-1 |
tile |
surface moisture exchange coefficient
|
CQT |
CatchCN |
kg m-2 s-1 |
tile |
surface moisture exchange coefficient
|
CQT |
Saltwater |
kg m-2 s-1 |
tile |
surface moisture exchange coefficient
|
CSSCMASS |
MAMchem |
kg m-2 |
xy |
Column Mass Density Coarse Seasalt mode
|
CSSEXTTAU |
MAMchem |
1 |
xy |
Aerosol Optical Thickness Coarse Seasalt mode
|
CSSSCATAU |
MAMchem |
1 |
xy |
Aerosol Scattering Optical Thickness Coarse Seasalt mode
|
CTPISCCP |
Satsim |
Pa |
xy |
isccp air pressure at cloud top
|
CU |
DynCore |
|
xyz |
eastward accumulated courant number
|
CU2DRAINMOVE |
Moist |
kg kg-1 s-1 |
xy |
moved 2d source of cnv rain
|
CU2DSNOWMOVE |
Moist |
kg kg-1 s-1 |
xy |
moved 2d source of cnv snow
|
CURAINMOVE |
Moist |
kg kg-1 s-1 |
xyz |
movels2conv source of cnv rain
|
CUSNOWMOVE |
Moist |
kg kg-1 s-1 |
xyz |
movels2conv source of cnv snow
|
CV |
DynCore |
|
xyz |
northward accumulated courant number
|
CWP |
Moist |
kg m-2 |
xy |
condensed water path
|
CX |
DynCore |
|
xyz |
eastward accumulated courant number
|
CY |
DynCore |
|
xyz |
northward accumulated courant number
|
D0 |
Land |
|
|
|
D0 |
Catch |
m |
tile |
zero plane displacement height
|
D0 |
CatchCN |
m |
tile |
zero plane displacement height
|
DAIDTD |
Surface |
\% day-1 |
xy |
ice area tendency dueto dynamics
|
DAIDTT |
Surface |
\% day-1 |
xy |
ice area tendency dueto thermodynamics
|
DAIDTT |
Saltwater |
% day-1 |
tile |
ice area tendency dueto thermodynamics
|
DANCLD |
Moist |
1 |
xyz |
move2anv change in anvil cloud fraction
|
DBCDT |
Moist |
kg m-2 s-1 |
xy |
black carbon tendency due to conv scav
|
DBUOY |
Turbulence |
m s-2 |
xy |
Buoyancy jump across inversion
|
DCLCNDTDYN |
DatmoDyn |
fraction |
xyz |
tendency of convective cloud fraction due to dynamics
|
DCLLSDTDYN |
DatmoDyn |
fraction |
xyz |
tendency of large scale cloud fraction due to dynamics
|
DCNVI |
Moist |
kg kg-1 s-1 |
xyz |
convective source of cloud ice
|
DCNVL |
Moist |
kg kg-1 s-1 |
xyz |
convective source of cloud liq
|
DCOOL |
Surface |
m |
xy |
depth of cool layer
|
DCOOL |
Saltwater |
m |
tile |
depth of cool layer
|
DCPT |
FVdycore |
W m-2 |
xy |
tendency of atmosphere dry energy content due to dynamics
|
DCPT |
DynCore |
W m-2 |
xy |
tendency of atmosphere dry energy content due to dynamics
|
DCPT |
ARIESg3 |
W m-2 |
xy |
tendency of atmosphere dry energy content due to dynamics
|
DCPTE |
Moist |
J m-2 |
xy |
Total VI DcpT
|
DDELPDTANA |
FVdycore |
K s-1 |
xyz |
tendency of pressure thickness due to analysis
|
DDELPDTANA |
DynCore |
K s-1 |
xyz |
tendency of pressure thickness due to analysis
|
DDELPDTANA |
ARIESg3 |
K s-1 |
xyz |
tendency of pressure thickness due to analysis
|
DDELPDTDYN |
FVdycore |
Pa s-1 |
xyz |
tendency of pressure thickness due to dynamics
|
DDELPDTDYN |
DynCore |
Pa s-1 |
xyz |
tendency of pressure thickness due to dynamics
|
DDELPDTDYN |
ARIESg3 |
Pa s-1 |
xyz |
tendency of pressure thickness due to dynamics
|
DDF_BYNC |
Moist |
m s-2 |
xyz |
Buoyancy of DDF
|
DDF_DQDT |
Moist |
kg kg-1 s-1 |
xyz |
Total Downdraft moistening
|
DDF_DTDT |
Moist |
K s-1 |
xyz |
Total Downdraft heating
|
DDF_MFC |
Moist |
kg m-2 s-1 |
xyz |
Downdraft mass flux
|
DDF_MUPH |
Moist |
kg kg-1 s-1 |
xyz |
Downdraft moistening from evap subl
|
DDF_QVC |
Moist |
kg kg-1 |
xyz |
Spec hum excess in DDF
|
DDF_RH1 |
Moist |
1 |
xyz |
Downdraft in cloud RH before
|
DDF_RH2 |
Moist |
1 |
xyz |
Downdraft in cloud RH after
|
DDF_TC |
Moist |
K |
xyz |
Temperature excess in DDF
|
DDF_ZSCALE |
Moist |
m |
xy |
vertical scale for downdraft
|
DDT_DMS_aq |
AChem |
mol mol-1 s-1 |
xyz |
Dimethyl sulfide (DMS gas) tendency due to aqueous phase chemistry
|
DDT_DMS_gas |
AChem |
mol mol-1 s-1 |
xyz |
Dimethyl sulfide (DMS) tendency due to gas phase chemistry
|
DDT_H2SO4_aq |
AChem |
mol mol-1 s-1 |
xyz |
Sulfuric acid (H2SO4 gas) tendency due to aqueous phase chemistry
|
DDT_H2SO4_gas |
AChem |
mol mol-1 s-1 |
xyz |
Sulfuric acid (H2SO4 gas) tendency due to gas phase chemistry
|
DDT_MSA_aq |
AChem |
mol mol-1 s-1 |
xyz |
Methanesulfonic acid (MSA gas) tendency due to aqueous phase chemistry
|
DDT_MSA_gas |
AChem |
mol mol-1 s-1 |
xyz |
Methanesulfonic acid (MSA) tendency due to gas phase chemistry
|
DDT_NH3_aq |
AChem |
mol mol-1 s-1 |
xyz |
Ammonia (NH3 gas) tendency due to aqueous phase chemistry
|
DDT_NH3_gas |
AChem |
mol mol-1 s-1 |
xyz |
Ammonia (NH3) tendency due to gas phase chemistry
|
DDT_SO2_aq |
AChem |
mol mol-1 s-1 |
xyz |
Sulfur dioxide (SO2 gas) tendency due to aqueous phase chemistry
|
DDT_SO2_gas |
AChem |
mol mol-1 s-1 |
xyz |
Sulfur dioxide (SO2) tendency due to gas phase chemistry
|
DDT_SOAG_aq |
AChem |
mol mol-1 s-1 |
xyz |
Secondary Organic Aerosols (SOA gas) tendency due to aqueous phase chemistry
|
DDT_SOAG_gas |
AChem |
mol mol-1 s-1 |
xyz |
Secondary Organic Aerosols (SOA gas) tendency due to gas phase chemistry
|
DDUDT |
Moist |
kg m-2 s-1 |
xy |
dust tendency due to conv scav
|
DDUDTcarma |
Moist |
kg m-2 s-1 |
xy |
carma dust tendency due to conv scav
|
DELEVAP |
Catch |
kg m-2 s-1 |
tile |
change evaporation
|
DELEVAP |
CatchCN |
kg m-2 s-1 |
tile |
change evaporation
|
DELP |
FVdycore |
Pa |
xyz |
pressure thickness
|
DELP |
DynCore |
Pa |
xyz |
pressure thickness
|
DELP |
ARIESg3 |
Pa |
xyz |
pressure thickness
|
DELP |
ChemEnv |
Pa |
xyz |
pressure thickness
|
DELPTOP |
DynCore |
Pa |
xy |
pressure thickness at model top
|
DELQS |
Surface |
kg kg-1 |
xy |
change of surface specific humidity
|
DELQS |
Lake |
kg kg-1 |
tile |
change of surface specific humidity
|
DELQS |
Landice |
kg kg-1 |
tile |
change of surface specific humidity
|
DELQS |
Land |
|
|
|
DELQS |
Catch |
kg kg-1 |
tile |
change surface specific humidity
|
DELQS |
CatchCN |
kg kg-1 |
tile |
change surface specific humidity
|
DELQS |
Saltwater |
kg kg-1 |
tile |
change of surface specific humidity
|
DELSH |
Catch |
W m-2 |
tile |
change upward sensible energy flux
|
DELSH |
CatchCN |
W m-2 |
tile |
change upward sensible energy flux
|
DELSINV |
Turbulence |
K |
xy |
Scaled Del s at Cloud top
|
DELSS |
Surface |
m+2 s-2 |
xy |
change of surface dry static energy
|
DELTS |
Surface |
K |
xy |
change of surface skin temperature
|
DELTS |
Lake |
K |
tile |
change of surface skin temperature
|
DELTS |
Landice |
K |
tile |
change of surface skin temperature
|
DELTS |
Land |
|
|
|
DELTS |
Catch |
K |
tile |
change surface skin temperature
|
DELTS |
CatchCN |
K |
tile |
change surface skin temperature
|
DELTS |
Saltwater |
K |
tile |
change of surface skin temperature
|
DELUS |
Surface |
m s-1 |
xy |
change of surface eastward velocity
|
DELVS |
Surface |
m s-1 |
xy |
change of surface northward velocity
|
DEL_RHO |
DataSea |
kg m-3 |
xy |
density difference
|
DFNIR |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
DFNIR |
Solar |
W m-2 |
xy |
surface downwelling nearinfrared diffuse flux
|
DFNIRN |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
DFNIRN |
Solar |
1 |
xy |
normalized surface downwelling nearinfrared diffuse flux
|
DFPAR |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
DFPAR |
Solar |
W m-2 |
xy |
surface downwelling par diffuse flux
|
DFPARLAND |
Surface |
W m-2 |
xy |
surface downwelling par diffuse flux
|
DFPARLAND |
Land |
|
|
|
DFPARLAND |
Catch |
W m-2 |
tile |
surface downwelling par diffuse flux
|
DFPARLAND |
CatchCN |
W m-2 |
tile |
surface downwelling par diffuse flux
|
DFPARN |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
DFPARN |
Solar |
1 |
xy |
normalized surface downwelling par diffuse flux
|
DFSTAR |
Turbulence |
kg m-2 s-1 |
xy |
change of surface fluxes for unit change of surface value
|
DFUVR |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
DFUVR |
Solar |
W m-2 |
xy |
surface downwelling ultraviolet diffuse flux
|
DFUVRN |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
DFUVRN |
Solar |
1 |
xy |
normalized surface downwelling ultraviolet diffuse flux
|
DHLAND |
Surface |
W m-2 |
xy |
rate of change of total land energy
|
DHLAND |
Land |
|
|
|
DHLAND |
Catch |
W m-2 |
tile |
rate of change of total land energy
|
DHLAND |
CatchCN |
W m-2 |
tile |
rate of change of total land energy
|
DIFIX |
Moist |
kg kg-1 s-1 |
xyz |
fix source sink of cloud ice
|
DIPDF |
Moist |
kg kg-1 s-1 |
xyz |
pdf source sink of cloud ice
|
DISCHARGE |
Surface |
kg m-2 s-1 |
xy |
river discharge at ocean points
|
DISCHARGE |
Saltwater |
kg m-2 s-1 |
tile |
river discharge at ocean points
|
DISCHARGE_IN |
Surface |
kg m-2 s-1 |
xy |
river discharge at ocean points
|
DISCHARGE_OUT |
Surface |
kg m-2 s-1 |
xy |
river discharge at ocean points
|
DIV |
DatmoDyn |
s-1 |
xyz |
divergence
|
DIVG |
DynCore |
s-1 |
xyz |
divergence at mid layer heights
|
DIVG200 |
DynCore |
s-1 |
xy |
divergence at 200 hPa
|
DIVG700 |
DynCore |
s-1 |
xy |
divergence at 700 hPa
|
DIVG850 |
DynCore |
s-1 |
xy |
divergence at 850 hPa
|
DKE |
FVdycore |
W m-2 |
xy |
tendency of atmosphere kinetic energy content due to dynamics
|
DKE |
DynCore |
W m-2 |
xy |
tendency of atmosphere kinetic energy content due to dynamics
|
DKE |
ARIESg3 |
W m-2 |
xy |
tendency of atmosphere kinetic energy content due to dynamics
|
DKERESIN |
FVdycore |
W m-2 |
xy |
vertically integrated kinetic energy residual from inertial terms
|
DKERESIN |
DynCore |
W m-2 |
xy |
vertically integrated kinetic energy residual from inertial terms
|
DKERESIN |
ARIESg3 |
W m-2 |
xy |
vertically integrated kinetic energy residual from inertial terms
|
DKERESPG |
FVdycore |
W m-2 |
xy |
vertically integrated kinetic energy residual from PG terms
|
DKERESPG |
DynCore |
W m-2 |
xy |
vertically integrated kinetic energy residual from PG terms
|
DKERESPG |
ARIESg3 |
W m-2 |
xy |
vertically integrated kinetic energy residual from PG terms
|
DLFIX |
Moist |
kg kg-1 s-1 |
xyz |
fix source sink of cloud liq
|
DLPDF |
Moist |
kg kg-1 s-1 |
xyz |
pdf source sink of cloud liq
|
DLQIL |
Surface |
kg kg-1 |
xy |
change of surface frozen condensate
|
DLQLL |
Surface |
kg kg-1 |
xy |
change of surface liquid condensate
|
DLSCLD |
Moist |
1 |
xyz |
move2anv change in large scale cloud fraction
|
DMDT |
Physics |
kg m-2 s-1 |
xy |
vertically integrated mass tendency due to physics
|
DMDTANA |
FVdycore |
kg m-2 s-1 |
xy |
vertically integrated mass tendency due to analysis
|
DMDTANA |
DynCore |
kg m-2 s-1 |
xy |
vertically integrated mass tendency due to analysis
|
DMDTANA |
ARIESg3 |
kg m-2 s-1 |
xy |
vertically integrated mass tendency due to analysis
|
DMDTDYN |
FVdycore |
kg m-2 s-1 |
xy |
vertically integrated mass tendency due to dynamics
|
DMDTDYN |
DynCore |
kg m-2 s-1 |
xy |
vertically integrated mass tendency due to dynamics
|
DMDTDYN |
ARIESg3 |
kg m-2 s-1 |
xy |
vertically integrated mass tendency due to dynamics
|
DMSCMASS |
SU |
kg m-2 |
xy |
DMS Column Mass Density ENSEMBLE
|
DMSCMASSanth |
SU |
kg m-2 |
xy |
DMS Column Mass Density (Anthropogenic)
|
DMSCMASSstrat |
SU |
kg m-2 |
xy |
DMS Column Mass Density (Stratospheric)
|
DMSCMASSvolc |
SU |
kg m-2 |
xy |
DMS Column Mass Density (Volcanic)
|
DMSSMASS |
SU |
kg m-3 |
xy |
DMS Surface Mass Concentration ENSEMBLE
|
DMSSMASSanth |
SU |
kg m-3 |
xy |
DMS Surface Mass Concentration (Anthropogenic)
|
DMSSMASSstrat |
SU |
kg m-3 |
xy |
DMS Surface Mass Concentration (Stratospheric)
|
DMSSMASSvolc |
SU |
kg m-3 |
xy |
DMS Surface Mass Concentration (Volcanic)
|
DNCACRIS |
Moist |
m-3 s-1 |
xyz |
Ice number tendency due to accretion by snow
|
DNCAUTICE |
Moist |
m-3 s-1 |
xyz |
Ice number tendency due to autoconversion to snow
|
DNCCNV |
Moist |
m-3 s-1 |
xyz |
Ice crystal number tendency from convective detrainment
|
DNCHMSPLIT |
Moist |
m-3 s-1 |
xyz |
Ice number tendency due to H-M splittering
|
DNCNUC |
Moist |
m-3 s-1 |
xyz |
Ice number tendency due to nucleation on aerosol
|
DNCSUBL |
Moist |
m-3 s-1 |
xyz |
Ice number tendency due to sublimation
|
DNDACRLR |
Moist |
m-3 s-1 |
xyz |
Cloud droplet number tendency due to accretion by rain
|
DNDACRLS |
Moist |
m-3 s-1 |
xyz |
Cloud droplet number tendency due to accretion by snow
|
DNDAUTLIQ |
Moist |
m-3 s-1 |
xyz |
Cloud droplet number tendency due to autoconversion
|
DNDCCN |
Moist |
m-3 s-1 |
xyz |
Cloud droplet number tendency due to activation
|
DNDCNV |
Moist |
m-3 s-1 |
xyz |
Cloud droplet number tendency from convective detrainment
|
DNDEVAPC |
Moist |
m-3 s-1 |
xyz |
Cloud droplet number tendency due to evaporation
|
DNHET_CT |
Moist |
Kg-1 s-1 |
xyz |
Ice number tendency due to contact freezing
|
DNHET_IMM |
Moist |
Kg-1 s-1 |
xyz |
Ice number tendency due to immersion freezing
|
DNICFLX |
Landice |
W m-2 |
tile |
downward heat flux in ice
|
DO3DT |
mkiau |
ppmv |
xyz |
ozone analysis increment
|
DO3DT |
IAU |
ppmv |
xyz |
ozone analysis increment
|
DO3DT |
O3 |
kg kg-1 s-1 |
xyz |
Ozone tendency
|
DO3DT_ANA |
Agcm |
mol mol-1 s-1 |
xyz |
total ozone analysis tendency
|
DOCDT |
Moist |
kg m-2 s-1 |
xy |
organic carbon tendency due to conv scav
|
DOXDTANAINT |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
DOXDTANAINT |
FVdycore |
kg m-2 s-1 |
xy |
vertically integrated ozone tendency due to analysis
|
DOXDTANAINT |
DynCore |
kg m-2 s-1 |
xy |
vertically integrated ozone tendency due to analysis
|
DOXDTANAINT |
ARIESg3 |
kg m-2 s-1 |
xy |
vertically integrated ozone tendency due to analysis
|
DOXDTANAINT |
DatmoDyn |
kg m-2 s-1 |
xy |
vertically integrated ozone tendency due to analysis
|
DOXDTCHMINT |
Physics |
kg m-2 s-1 |
xy |
vertically integrated odd oxygen tendency due to chemistry
|
DOXDTDYN |
FVdycore |
mol mol-1 s-1 |
xyz |
tendency of ozone due to dynamics
|
DOXDTDYN |
DynCore |
mol mol-1 s-1 |
xyz |
tendency of ozone due to dynamics
|
DOXDTDYN |
ARIESg3 |
mol mol-1 s-1 |
xyz |
tendency of ozone due to dynamics
|
DOXDTDYNINT |
FVdycore |
kg m-2 s-1 |
xy |
vertically integrated ozone tendency due to dynamics
|
DOXDTDYNINT |
DynCore |
kg m-2 s-1 |
xy |
vertically integrated ozone tendency due to dynamics
|
DOXDTDYNINT |
ARIESg3 |
kg m-2 s-1 |
xy |
vertically integrated ozone tendency due to dynamics
|
DOXDTPHYINT |
Physics |
kg m-2 s-1 |
xy |
vertically integrated odd oxygen tendency due to physics
|
DPDTMST |
Moist |
Pa s-1 |
xyz |
layer pressure thickness tendency from moist
|
DPDTPHY |
Physics |
Pa s-1 |
xyz |
tendency of pressure at bottom edges levels due to physics
|
DPDTTRB |
Turbulence |
Pa s-1 |
xyz |
layer pressure thickness tendency from turbulence
|
DPEDT |
Physics |
Pa s-1 |
xyz |
tendency of pressure at layer edges due to physics
|
DPEDT |
mkiau |
Pa |
xyz |
edge pressure analysis increment
|
DPEDT |
IAU |
Pa |
xyz |
edge pressure analysis increment
|
DPEDT_ANA |
Agcm |
Pa s-1 |
xyz |
total edge pressure analysis tendency
|
DPET |
FVdycore |
W m-2 |
xy |
tendency of atmosphere topographic potential energy due to dynamics
|
DPET |
DynCore |
W m-2 |
xy |
tendency of atmosphere topographic potential energy due to dynamics
|
DPET |
ARIESg3 |
W m-2 |
xy |
tendency of atmosphere topographic potential energy due to dynamics
|
DP_AMM_ACC |
MAMchem |
kg m-2 s-1 |
xy |
Ammonium Sedimentation Accumulation mode
|
DP_AMM_AIT |
MAMchem |
kg m-2 s-1 |
xy |
Ammonium Sedimentation Aitken mode
|
DP_AMM_CDU |
MAMchem |
kg m-2 s-1 |
xy |
Ammonium Sedimentation Coarse Dust mode
|
DP_AMM_CSS |
MAMchem |
kg m-2 s-1 |
xy |
Ammonium Sedimentation Coarse Seasalt mode
|
DP_AMM_FDU |
MAMchem |
kg m-2 s-1 |
xy |
Ammonium Sedimentation Fine Dust mode
|
DP_AMM_FSS |
MAMchem |
kg m-2 s-1 |
xy |
Ammonium Sedimentation Fine Seasalt mode
|
DP_BC_ACC |
MAMchem |
kg m-2 s-1 |
xy |
Black Carbon Sedimentation Accumulation mode
|
DP_BC_PCM |
MAMchem |
kg m-2 s-1 |
xy |
Black Carbon Sedimentation Primary Carbon mode
|
DP_DU_CDU |
MAMchem |
kg m-2 s-1 |
xy |
Dust Dry Deposition Coarse Seasalt mode
|
DP_DU_FDU |
MAMchem |
kg m-2 s-1 |
xy |
Dust Dry Deposition Fine Seasalt mode
|
DP_POM_ACC |
MAMchem |
kg m-2 s-1 |
xy |
POM Sedimentation Accumulation mode
|
DP_POM_PCM |
MAMchem |
kg m-2 s-1 |
xy |
POM Sedimentation Primary Carbon mode
|
DP_SOA_ACC |
MAMchem |
kg m-2 s-1 |
xy |
SOA Sedimentation Accumulation mode
|
DP_SOA_AIT |
MAMchem |
kg m-2 s-1 |
xy |
SOA Sedimentation Aitken mode
|
DP_SS_ACC |
MAMchem |
kg m-2 s-1 |
xy |
Sea Salt Dry Deposition Accumulation mode
|
DP_SS_AIT |
MAMchem |
kg m-2 s-1 |
xy |
Sea Salt Dry Deposition Aitken mode
|
DP_SS_CSS |
MAMchem |
kg m-2 s-1 |
xy |
Sea Salt Dry Deposition Coarse Seasalt mode
|
DP_SS_FSS |
MAMchem |
kg m-2 s-1 |
xy |
Sea Salt Dry Deposition Fine Seasalt mode
|
DP_SU_ACC |
MAMchem |
kg m-2 s-1 |
xy |
Sulfate Sedimentation Accumulation mode
|
DP_SU_AIT |
MAMchem |
kg m-2 s-1 |
xy |
Sulfate Sedimentation Aitken mode
|
DP_SU_CDU |
MAMchem |
kg m-2 s-1 |
xy |
Sulfate Sedimentation Coarse Dust mode
|
DP_SU_CSS |
MAMchem |
kg m-2 s-1 |
xy |
Sulfate Sedimentation Coarse Seasalt mode
|
DP_SU_FDU |
MAMchem |
kg m-2 s-1 |
xy |
Sulfate Sedimentation Fine Dust mode
|
DP_SU_FSS |
MAMchem |
kg m-2 s-1 |
xy |
Sulfate Sedimentation Fine Seasalt mode
|
DQCDTCN |
Moist |
kg kg-1 s-1 |
xyz |
condensate tendency due to convection
|
DQDT |
Moist |
kg kg-1 s-1 |
xyz |
specific humidity tendency due to moist
|
DQDTCN |
Moist |
kg kg-1 s-1 |
xyz |
specific humidity tendency due to convection
|
DQI |
FVdycore |
kg m-2 s-1 |
xy |
tendency of atmosphere ice content due to dynamics
|
DQI |
DynCore |
kg m-2 s-1 |
xy |
tendency of atmosphere ice content due to dynamics
|
DQI |
ARIESg3 |
kg m-2 s-1 |
xy |
tendency of atmosphere ice content due to dynamics
|
DQICNDTDYN |
DatmoDyn |
kgkgsec |
xyz |
tendency of convective cloud ice due to dynamics
|
DQIDT |
Moist |
kg kg-1 s-1 |
xyz |
total ice water tendency due to moist
|
DQIDTANAINT |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
DQIDTANAINT |
FVdycore |
kg m-2 s-1 |
xy |
vertically integrated ice water tendency due to analysis
|
DQIDTANAINT |
DynCore |
kg m-2 s-1 |
xy |
vertically integrated ice water tendency due to analysis
|
DQIDTANAINT |
ARIESg3 |
kg m-2 s-1 |
xy |
vertically integrated ice water tendency due to analysis
|
DQIDTANAINT |
DatmoDyn |
kg m-2 s-1 |
xy |
vertically integrated ice water tendency due to analysis
|
DQIDTDYN |
FVdycore |
kg kg-1 s-1 |
xyz |
tendency of ice water due to dynamics
|
DQIDTDYN |
DynCore |
kgkgs |
xyz |
tendency of ice water due to dynamics
|
DQIDTDYN |
ARIESg3 |
kg kg-1 s-1 |
xyz |
tendency of ice water due to dynamics
|
DQIDTDYNINT |
FVdycore |
kg m-2 s-1 |
xy |
vertically integrated ice water tendency due to dynamics
|
DQIDTDYNINT |
DynCore |
kg m-2 s-1 |
xy |
vertically integrated ice water tendency due to dynamics
|
DQIDTDYNINT |
ARIESg3 |
kg m-2 s-1 |
xy |
vertically integrated ice water tendency due to dynamics
|
DQIDTMSTINT |
Physics |
kg m-2 s-1 |
xy |
vertically integrated ice tendency due to moist processes
|
DQIDTPHYINT |
Physics |
kg m-2 s-1 |
xy |
vertically integrated ice tendency due to physics
|
DQIDTSCL |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
DQIDT_ANA |
Agcm |
kg kg-1 s-1 |
xyz |
total specific humidity ice analysis tendency
|
DQIDT_micro |
Moist |
kg kg-1 s-1 |
xyz |
QI tendency due to microphysics
|
DQILSDTDYN |
DatmoDyn |
kgkgsec |
xyz |
tendency of large scale cloud ice due to dynamics
|
DQL |
FVdycore |
kg m-2 s-1 |
xy |
tendency of atmosphere liquid water content due to dynamics
|
DQL |
DynCore |
kg m-2 s-1 |
xy |
tendency of atmosphere liquid water content due to dynamics
|
DQL |
ARIESg3 |
kg m-2 s-1 |
xy |
tendency of atmosphere liquid water content due to dynamics
|
DQLCNDTDYN |
DatmoDyn |
kgkgsec |
xyz |
tendency of convective cloud water due to dynamics
|
DQLDT |
Moist |
kg kg-1 s-1 |
xyz |
total liq water tendency due to moist
|
DQLDTANAINT |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
DQLDTANAINT |
FVdycore |
kg m-2 s-1 |
xy |
vertically integrated liquid water tendency due to analysis
|
DQLDTANAINT |
DynCore |
kg m-2 s-1 |
xy |
vertically integrated liquid water tendency due to analysis
|
DQLDTANAINT |
ARIESg3 |
kg m-2 s-1 |
xy |
vertically integrated liquid water tendency due to analysis
|
DQLDTANAINT |
DatmoDyn |
kg m-2 s-1 |
xy |
vertically integrated liquid water tendency due to analysis
|
DQLDTDYN |
FVdycore |
kg kg-1 s-1 |
xyz |
tendency of liquid water due to dynamics
|
DQLDTDYN |
DynCore |
kgkgs |
xyz |
tendency of liquid water due to dynamics
|
DQLDTDYN |
ARIESg3 |
kg kg-1 s-1 |
xyz |
tendency of liquid water due to dynamics
|
DQLDTDYNINT |
FVdycore |
kg m-2 s-1 |
xy |
vertically integrated liquid water tendency due to dynamics
|
DQLDTDYNINT |
DynCore |
kg m-2 s-1 |
xy |
vertically integrated liquid water tendency due to dynamics
|
DQLDTDYNINT |
ARIESg3 |
kg m-2 s-1 |
xy |
vertically integrated liquid water tendency due to dynamics
|
DQLDTMSTINT |
Physics |
kg m-2 s-1 |
xy |
vertically integrated liquid water tendency due to moist processes
|
DQLDTPHYINT |
Physics |
kg m-2 s-1 |
xy |
vertically integrated liquid water tendency due to physics
|
DQLDTSCL |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud water due to mass scaling
|
DQLDT_ANA |
Agcm |
kg kg-1 s-1 |
xyz |
total specific humidity liquid analysis tendency
|
DQLDT_micro |
Moist |
kg kg-1 s-1 |
xyz |
QL tendency due to microphysics
|
DQLLSDTDYN |
DatmoDyn |
kgkgsec |
xyz |
tendency of large scale cloud water due to dynamics
|
DQRC |
Moist |
kg kg-1 s-1 |
xyz |
convective rainwater source
|
DQRL |
Moist |
kg kg-1 s-1 |
xyz |
large scale rainwater source
|
DQSI |
Moist |
kg kg-1 K-1 |
xyz |
deriv sat specific humidity wrt t before ras
|
DQV |
FVdycore |
kg m-2 s-1 |
xy |
tendency of atmosphere water vapor content due to dynamics
|
DQV |
DynCore |
kg m-2 s-1 |
xy |
tendency of atmosphere water vapor content due to dynamics
|
DQV |
ARIESg3 |
kg m-2 s-1 |
xy |
tendency of atmosphere water vapor content due to dynamics
|
DQVDT |
mkiau |
kg kg-1 |
xyz |
specific humidity analysis increment
|
DQVDT |
IAU |
kg kg-1 |
xyz |
specific humidity analysis increment
|
DQVDTANAINT |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
DQVDTANAINT |
FVdycore |
kg m-2 s-1 |
xy |
vertically integrated water vapor tendency due to analysis
|
DQVDTANAINT |
DynCore |
kg m-2 s-1 |
xy |
vertically integrated water vapor tendency due to analysis
|
DQVDTANAINT |
ARIESg3 |
kg m-2 s-1 |
xy |
vertically integrated water vapor tendency due to analysis
|
DQVDTANAINT |
DatmoDyn |
kg m-2 s-1 |
xy |
vertically integrated water vapor tendency due to analysis
|
DQVDTCHMINT |
Physics |
kg m-2 s-1 |
xy |
vertically integrated water vapor tendency due to chemistry
|
DQVDTDYN |
FVdycore |
kg kg-1 s-1 |
xyz |
tendency of specific humidity due to dynamics
|
DQVDTDYN |
DynCore |
kgkgs |
xyz |
tendency of specific humidity due to dynamics
|
DQVDTDYN |
ARIESg3 |
kg kg-1 s-1 |
xyz |
tendency of specific humidity due to dynamics
|
DQVDTDYN |
DatmoDyn |
kgkgsec |
xyz |
tendency of specific humidity due to dynamics
|
DQVDTDYNINT |
FVdycore |
kg m-2 s-1 |
xy |
vertically integrated water vapor tendency due to dynamics
|
DQVDTDYNINT |
DynCore |
kg m-2 s-1 |
xy |
vertically integrated water vapor tendency due to dynamics
|
DQVDTDYNINT |
ARIESg3 |
kg m-2 s-1 |
xy |
vertically integrated water vapor tendency due to dynamics
|
DQVDTDYNINT |
DatmoDyn |
kg m-2 s-1 |
xy |
vertically integrated water vapor tendency due to dynamics
|
DQVDTMSTINT |
Physics |
kg m-2 s-1 |
xy |
vertically integrated water vapor tendency due to moist processes
|
DQVDTPHYINT |
Physics |
kg m-2 s-1 |
xy |
vertically integrated water vapor tendency due to physics
|
DQVDTSCL |
Physics |
kg m-2 s-1 |
xyz |
tendency of water vapor due to mass scaling
|
DQVDTTRBINT |
Physics |
kg m-2 s-1 |
xy |
vertically integrated water vapor tendency due to turbulence
|
DQVDT_ANA |
Agcm |
kg kg-1 s-1 |
xyz |
total specific humidity vapor analysis tendency
|
DQVDT_micro |
Moist |
kg kg-1 s-1 |
xyz |
Q tendency due to microphysics
|
DRAINAGE |
Surface |
kg m-2 s-1 |
xy |
river drainage at ocean points
|
DRHOS0 |
Landice |
kg m-3 |
tile |
snow layer density change due to densification
|
DRNIR |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
DRNIR |
Solar |
W m-2 |
xy |
surface downwelling nearinfrared beam flux
|
DRNIRN |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
DRNIRN |
Solar |
1 |
xy |
normalized surface downwelling nearinfrared beam flux
|
DRNNIR |
Solar |
W m-2 |
xy |
surface downwelling nearinfrared beam normal flux
|
DRNPAR |
Solar |
W m-2 |
xy |
surface downwelling par beam normal flux
|
DRNUVR |
Solar |
W m-2 |
xy |
surface downwelling ultraviolet beam normal flux
|
DRPAR |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
DRPAR |
Solar |
W m-2 |
xy |
surface downwelling par beam flux
|
DRPARLAND |
Surface |
W m-2 |
xy |
surface downwelling par beam flux
|
DRPARLAND |
Land |
|
|
|
DRPARLAND |
Catch |
W m-2 |
tile |
surface downwelling par beam flux
|
DRPARLAND |
CatchCN |
W m-2 |
tile |
surface downwelling par beam flux
|
DRPARN |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
DRPARN |
Solar |
1 |
xy |
normalized surface downwelling par beam flux
|
DRUVR |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
DRUVR |
Solar |
W m-2 |
xy |
surface downwelling ultraviolet beam flux
|
DRUVRN |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
DRUVRN |
Solar |
1 |
xy |
normalized surface downwelling ultraviolet beam flux
|
DRY_DEP_DMS |
AChem |
kg m-2 s-1 |
xy |
Dry deposition flux of DMS
|
DRY_DEP_H2SO4 |
AChem |
kg m-2 s-1 |
xy |
Dry deposition flux of sulfuric acid (H2SO4 gas)
|
DRY_DEP_MSA |
AChem |
kg m-2 s-1 |
xy |
Dry deposition flux of MSA
|
DRY_DEP_NH3 |
AChem |
kg m-2 s-1 |
xy |
Dry deposition flux of NH3
|
DRY_DEP_SO2 |
AChem |
kg m-2 s-1 |
xy |
Dry deposition flux of sulfur dioxide (SO2)
|
DRY_DEP_SOAG |
AChem |
kg m-2 s-1 |
xy |
Dry deposition flux of SOA(gas)
|
DSFDTS |
Irrad |
W m-2 K-1 |
xy |
sensitivity of longwave flux emitted from surface to surface temperature
|
DSFDTS0 |
Irrad |
W m-2 K-1 |
xy |
sensitivity of longwave flux emitted from surface to surface temperature at reference time
|
DSIEMS |
Turbulence |
1 |
xy |
Siems buoy rev parameter
|
DSSDT |
Moist |
kg m-2 s-1 |
xy |
sea salt tendency due to conv scav
|
DSSDTcarma |
Moist |
kg m-2 s-1 |
xy |
carma seasalt tendency due to conv scav
|
DSUDT |
Moist |
kg m-2 s-1 |
xy |
sulfate tendency due to conv scav
|
DTDT |
Physics |
Pa K s-1 |
xyz |
pressure weighted tendency of air temperature due to physics
|
DTDT |
Radiation |
Pa K s-1 |
xyz |
pressure weighted air temperature tendency due to radiation
|
DTDT |
Gwd |
Pa K s-1 |
xyz |
mass weighted air temperature tendency due to GWD
|
DTDT |
mkiau |
K |
xyz |
temperature analysis increment
|
DTDT |
IAU |
K |
xyz |
temperature analysis increment
|
DTDTANA |
FVdycore |
K s-1 |
xyz |
tendency of air temperature due to analysis
|
DTDTANA |
DynCore |
K s-1 |
xyz |
tendency of air temperature due to analysis
|
DTDTANA |
ARIESg3 |
K s-1 |
xyz |
tendency of air temperature due to analysis
|
DTDTCN |
Moist |
K s-1 |
xyz |
T tendency due to convection
|
DTDTDYN |
FVdycore |
K s-1 |
xyz |
tendency of air temperature due to dynamics
|
DTDTDYN |
DynCore |
K s-1 |
xyz |
tendency of air temperature due to dynamics
|
DTDTDYN |
ARIESg3 |
K s-1 |
xyz |
tendency of air temperature due to dynamics
|
DTDTDYN |
DatmoDyn |
K sec-1 |
xyz |
tendency of air temperature due to dynamics
|
DTDTFRIC |
Moist |
Pa K s-1 |
xyz |
pressure weighted temperature tendency due to moist friction
|
DTDTRAD |
Physics |
K s-1 |
xyz |
tendency of air temperature due to radiation
|
DTDTTOT |
Physics |
K s-1 |
xyz |
tendency of air temperature due to physics
|
DTDT_ANA |
Agcm |
K s-1 |
xyz |
total temperature analysis tendency
|
DTDT_BKG |
Gwd |
K s-1 |
xyz |
air temperature tendency due to background GWD
|
DTDT_ORO |
Gwd |
K s-1 |
xyz |
air temperature tendency due to orographic GWD
|
DTDT_RAY |
Gwd |
K s-1 |
xyz |
air temperature tendency due to Rayleigh friction
|
DTDT_macro |
Moist |
K s-1 |
xyz |
T tendency due to macrophysics
|
DTDT_micro |
Moist |
K s-1 |
xyz |
T tendency due to microphysics
|
DTDT_moist |
Moist |
K s-1 |
xyz |
T tendency due to moist
|
DTHDT |
Moist |
Pa K s-1 |
xyz |
pressure weighted potential temperature tendency due to moist
|
DTHDTCN |
Moist |
K s-1 |
xyz |
potential temperature tendency due to convection
|
DTHVDTANAINT |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
DTHVDTANAINT |
FVdycore |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to analysis
|
DTHVDTANAINT |
DynCore |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to analysis
|
DTHVDTANAINT |
ARIESg3 |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to analysis
|
DTHVDTANAINT |
DatmoDyn |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to analysis
|
DTHVDTCONSV |
FVdycore |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to TE conservation
|
DTHVDTCONSV |
DynCore |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to TE conservation
|
DTHVDTCONSV |
ARIESg3 |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to TE conservation
|
DTHVDTDYNINT |
FVdycore |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to dynamics
|
DTHVDTDYNINT |
DynCore |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to dynamics
|
DTHVDTDYNINT |
ARIESg3 |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to dynamics
|
DTHVDTFILINT |
Agcm |
K kg m-2 s-1 |
xy |
vertically integrated thv adjustment from filling
|
DTHVDTPHYINT |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
DTHVDTPHYINT |
FVdycore |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to physics
|
DTHVDTPHYINT |
DynCore |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to physics
|
DTHVDTPHYINT |
ARIESg3 |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to physics
|
DTHVDTPHYINT |
DatmoDyn |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to physics
|
DTHVDTREMAP |
FVdycore |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to vertical remapping
|
DTHVDTREMAP |
DynCore |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to vertical remapping
|
DTHVDTREMAP |
ARIESg3 |
K kg m-2 s-1 |
xy |
vertically integrated THV tendency due to vertical remapping
|
DTSDT |
mkiau |
K |
xy |
skin temparature increment
|
DTSDT |
IAU |
K |
xy |
skin temparature increment
|
DTSDT_ANA |
Agcm |
K s-1 |
xy |
total skin temperature tendency
|
DT_RASP |
Moist |
K s-1 |
xyz |
T tendency from ras precip
|
DU |
Turbulence |
s-1 |
xyz |
bulk shear from Louis
|
DUAERIDX |
DU |
1 |
xy |
Dust TOMS UV Aerosol Index
|
DUANA |
GAAS |
kgkg |
xyz |
Dust Mixing Ratio Analysis
|
DUANGSTR |
DU |
1 |
xy |
Dust Angstrom parameter [470-870 nm]
|
DUCMASS |
DU |
kg m-2 |
xy |
Dust Column Mass Density
|
DUCMASS |
MAMchem |
kg m-2 |
xy |
Dust Column Mass Density
|
DUCMASS25 |
DU |
kg m-2 |
xy |
Dust Column Mass Density - PM 2.5
|
DUCMASS25 |
MAMchem |
kg m-2 |
xy |
Dust Column Mass Density - PM 2.5
|
DUCONC |
DU |
kg m-3 |
xyz |
Dust Mass Concentration
|
DUCONC |
MAMchem |
kg m-3 |
xyz |
Dust Mass Concentration
|
DUDP |
Saltwater |
kg m-2 s-1 |
tile |
Dust Dry Deposition
|
DUDP001 |
DU |
kg m-2 s-1 |
xy |
Dust Dry Deposition Bin 001
|
DUDP002 |
DU |
kg m-2 s-1 |
xy |
Dust Dry Deposition Bin 002
|
DUDP003 |
DU |
kg m-2 s-1 |
xy |
Dust Dry Deposition Bin 003
|
DUDP004 |
DU |
kg m-2 s-1 |
xy |
Dust Dry Deposition Bin 004
|
DUDP005 |
DU |
kg m-2 s-1 |
xy |
Dust Dry Deposition Bin 005
|
DUDT |
Physics |
m s-2 |
xyz |
tendency of eastward wind due to physics
|
DUDT |
Moist |
m s-2 |
xyz |
zonal wind tendency due to moist
|
DUDT |
Gwd |
m s-2 |
xyz |
tendency of eastward wind due to GWD
|
DUDT |
mkiau |
m s-1 |
xyz |
eastward wind analysis increment
|
DUDT |
IAU |
m s-1 |
xyz |
eastward wind analysis increment
|
DUDTANA |
FVdycore |
m s-2 |
xyz |
tendency of eastward wind due to analysis
|
DUDTANA |
DynCore |
mss |
xyz |
tendency of eastward wind due to analysis
|
DUDTANA |
ARIESg3 |
m s-2 |
xyz |
tendency of eastward wind due to analysis
|
DUDTDYN |
FVdycore |
m s-2 |
xyz |
tendency of eastward wind due to dynamics
|
DUDTDYN |
DynCore |
mss |
xyz |
tendency of eastward wind due to dynamics
|
DUDTDYN |
ARIESg3 |
m s-2 |
xyz |
tendency of eastward wind due to dynamics
|
DUDT_ANA |
Agcm |
m s-2 |
xyz |
total eastward wind analysis tendency
|
DUDT_BKG |
Gwd |
m s-2 |
xyz |
tendency of eastward wind due to background GWD
|
DUDT_ORO |
Gwd |
m s-2 |
xyz |
tendency of eastward wind due to orographic GWD
|
DUDT_RAY |
Gwd |
m s-2 |
xyz |
tendency of eastward wind due to Rayleigh friction
|
DUEM001 |
DU |
kg m-2 s-1 |
xy |
Dust Emission Bin 001
|
DUEM002 |
DU |
kg m-2 s-1 |
xy |
Dust Emission Bin 002
|
DUEM003 |
DU |
kg m-2 s-1 |
xy |
Dust Emission Bin 003
|
DUEM004 |
DU |
kg m-2 s-1 |
xy |
Dust Emission Bin 004
|
DUEM005 |
DU |
kg m-2 s-1 |
xy |
Dust Emission Bin 005
|
DUEMCDU |
MAMchem |
kg m-2 s-1 |
xy |
Dust Emission Coarse Dust mode
|
DUEMFDU |
MAMchem |
kg m-2 s-1 |
xy |
Dust Emission Fine Dust mode
|
DUEXTCOEF |
DU |
m-1 |
xyz |
Dust Extinction Coefficient [550 nm]
|
DUEXTT25 |
DU |
1 |
xy |
Dust Extinction AOT [550 nm] - PM 2.5
|
DUEXTTAU |
DU |
1 |
xy |
Dust Extinction AOT [550 nm]
|
DUEXTTFM |
DU |
1 |
xy |
Dust Extinction AOT [550 nm] - PM 1.0 um
|
DUFLUXU |
DU |
kg m-1 s-1 |
xy |
Dust column u-wind mass flux
|
DUFLUXU |
MAMchem |
kg m-1 s-1 |
xy |
Dust column u-wind mass flux
|
DUFLUXV |
DU |
kg m-1 s-1 |
xy |
Dust column v-wind mass flux
|
DUFLUXV |
MAMchem |
kg m-1 s-1 |
xy |
Dust column v-wind mass flux
|
DUINC |
GAAS |
kgkg |
xyz |
Dust Mixing Ratio Analysis Increments
|
DUMASS |
DU |
kg kg-1 |
xyz |
Dust Mass Mixing Ratio
|
DUMASS |
MAMchem |
kg kg-1 |
xyz |
Dust Mass Mixing Ratio
|
DUMASS25 |
DU |
kg kg-1 |
xyz |
Dust Mass Mixing Ratio - PM 2.5
|
DUMASS25 |
MAMchem |
kg kg-1 |
xyz |
Dust Mass Mixing Ratio - PM 2.5
|
DUSCACOEF |
DU |
m-1 |
xyz |
Dust Scattering Coefficient [550 nm]
|
DUSCAT25 |
DU |
1 |
xy |
Dust Scattering AOT [550 nm] - PM 2.5
|
DUSCATAU |
DU |
1 |
xy |
Dust Scattering AOT [550 nm]
|
DUSCATFM |
DU |
1 |
xy |
Dust Scattering AOT [550 nm] - PM 1.0 um
|
DUSD |
Saltwater |
kg m-2 s-1 |
tile |
Dust Sedimentation
|
DUSD001 |
DU |
kg m-2 s-1 |
xy |
Dust Sedimentation Bin 001
|
DUSD002 |
DU |
kg m-2 s-1 |
xy |
Dust Sedimentation Bin 002
|
DUSD003 |
DU |
kg m-2 s-1 |
xy |
Dust Sedimentation Bin 003
|
DUSD004 |
DU |
kg m-2 s-1 |
xy |
Dust Sedimentation Bin 004
|
DUSD005 |
DU |
kg m-2 s-1 |
xy |
Dust Sedimentation Bin 005
|
DUSMASS |
DU |
kg m-3 |
xy |
Dust Surface Mass Concentration
|
DUSMASS |
MAMchem |
kg m-3 |
xy |
Dust Surface Mass Concentration
|
DUSMASS25 |
DU |
kg m-3 |
xy |
Dust Surface Mass Concentration - PM 2.5
|
DUSMASS25 |
MAMchem |
kg m-3 |
xy |
Dust Surface Mass Concentration - PM 2.5
|
DUST |
Moist |
m-3 |
xyz |
Total dust number conc
|
DUSTOD |
GMICHEM |
1 |
xyz |
dust optical depth (400 nm)
|
DUSTSA |
GMICHEM |
cm+2 cm-3 |
xyz |
dust surface area
|
DUST_DEP |
Moist |
m-3 |
xyz |
deposition IN from dust
|
DUST_DHF |
Moist |
m-3 |
xyz |
DHF IN from dust
|
DUST_IMM |
Moist |
m-3 |
xyz |
Immersion IN from dust
|
DUSV001 |
DU |
kg m-2 s-1 |
xy |
Dust Convective Scavenging Bin 001
|
DUSV002 |
DU |
kg m-2 s-1 |
xy |
Dust Convective Scavenging Bin 002
|
DUSV003 |
DU |
kg m-2 s-1 |
xy |
Dust Convective Scavenging Bin 003
|
DUSV004 |
DU |
kg m-2 s-1 |
xy |
Dust Convective Scavenging Bin 004
|
DUSV005 |
DU |
kg m-2 s-1 |
xy |
Dust Convective Scavenging Bin 005
|
DUWINDFIX |
mkiau |
m s-1 |
xyz |
eastward windfix increment
|
DUWT |
Saltwater |
kg m-2 s-1 |
tile |
Dust Wet Deposition
|
DUWT001 |
DU |
kg m-2 s-1 |
xy |
Dust Wet Deposition Bin 001
|
DUWT002 |
DU |
kg m-2 s-1 |
xy |
Dust Wet Deposition Bin 002
|
DUWT003 |
DU |
kg m-2 s-1 |
xy |
Dust Wet Deposition Bin 003
|
DUWT004 |
DU |
kg m-2 s-1 |
xy |
Dust Wet Deposition Bin 004
|
DUWT005 |
DU |
kg m-2 s-1 |
xy |
Dust Wet Deposition Bin 005
|
DVDT |
Physics |
m s-2 |
xyz |
tendency of northward wind due to physics
|
DVDT |
Moist |
m s-2 |
xyz |
meridional wind tendency due to moist
|
DVDT |
Gwd |
m s-2 |
xyz |
tendency of northward wind due to GWD
|
DVDT |
mkiau |
m s-1 |
xyz |
northward wind analysis increment
|
DVDT |
IAU |
m s-1 |
xyz |
northward wind analysis increment
|
DVDTANA |
FVdycore |
m s-2 |
xyz |
tendency of northward wind due to analysis
|
DVDTANA |
DynCore |
mss |
xyz |
tendency of northward wind due to analysis
|
DVDTANA |
ARIESg3 |
m s-2 |
xyz |
tendency of northward wind due to analysis
|
DVDTDYN |
FVdycore |
m s-2 |
xyz |
tendency of northward wind due to dynamics
|
DVDTDYN |
DynCore |
mss |
xyz |
tendency of northward wind due to dynamics
|
DVDTDYN |
ARIESg3 |
m s-2 |
xyz |
tendency of northward wind due to dynamics
|
DVDT_ANA |
Agcm |
m s-2 |
xyz |
total northward wind analysis tendency
|
DVDT_BKG |
Gwd |
m s-2 |
xyz |
tendency of northward wind due to background GWD
|
DVDT_ORO |
Gwd |
m s-2 |
xyz |
tendency of northward wind due to orographic GWD
|
DVDT_RAY |
Gwd |
m s-2 |
xyz |
tendency of northward wind due to Rayleigh friction
|
DVIDTD |
Surface |
cm day-1 |
xy |
ice volume tendency dueto dynamics
|
DVIDTT |
Surface |
cm day-1 |
xy |
ice volume tendency dueto thermodynamics
|
DVIDTT |
Saltwater |
cm day-1 |
tile |
ice volume tendency dueto thermodynamics
|
DVWINDFIX |
mkiau |
m s-1 |
xyz |
northward windfix increment
|
DWARM |
Surface |
m |
xy |
depth at base of warm layer
|
DWARM |
Saltwater |
m |
tile |
depth at base of warm layer
|
DWLAND |
Surface |
kg m-2 s-1 |
xy |
rate of change of total land water
|
DWLAND |
Land |
|
|
|
DWLAND |
Catch |
kg m-2 s-1 |
tile |
rate of change of total land water
|
DWLAND |
CatchCN |
kg m-2 s-1 |
tile |
rate of change of total land water
|
DXC |
DynCore |
m |
xy |
cgrid delta x
|
DYC |
DynCore |
m |
xy |
cgrid delta y
|
DYNTIMER |
DynCore |
seconds |
xy |
timer in the dynamics
|
DZ |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
DZ |
FVdycore |
m |
xy |
surface layer height
|
DZ |
DynCore |
m |
xy |
surface layer height
|
DZ |
ARIESg3 |
m |
xy |
surface layer height
|
DZ |
DatmoDyn |
m |
xy |
Surface layer height
|
DZ |
DynVec |
m |
xyz |
height thickness
|
DZOVER |
Moist |
m |
xyz |
Overshooting height
|
EKH |
Turbulence |
m+2 s-1 |
xyz |
entrainment heat diffusivity from Lock
|
EKM |
Turbulence |
m+2 s-1 |
xyz |
entrainment momentum diffusivity from Lock
|
EMBIOCOMETH |
GMICHEM |
kg m-2 s-1 |
xy |
biogenic source of CO from oxidation of methanol
|
EMBIOCOMONOT |
GMICHEM |
kg m-2 s-1 |
xy |
biogenic source of CO from oxidation of monoterpenes
|
EMBIOPROPENE |
GMICHEM |
kg m-2 s-1 |
xy |
biogenic source of propene
|
EMIS |
Surface |
1 |
xy |
surface emissivity
|
EMIS |
Lake |
1 |
tile |
surface emissivity
|
EMIS |
Landice |
1 |
tile |
surface emissivity
|
EMIS |
Land |
|
|
|
EMIS |
Catch |
1 |
tile |
surface emissivity
|
EMIS |
CatchCN |
1 |
tile |
surface emissivity
|
EMIS |
Saltwater |
1 |
tile |
surface emissivity
|
EMISOPSFC |
GMICHEM |
kg m-2 s-1 |
xy |
surface emission of isoprene
|
EMISS_DU |
MATRIXchem |
ug m-3 |
xy |
dust emissions
|
EMISS_DUC |
MATRIXchem |
ug m-3 |
xy |
coarse dust emissions
|
EMISS_DUF |
MATRIXchem |
ug m-3 |
xy |
fine dust emissions
|
EMISS_SS |
MATRIXchem |
ug m-3 |
xy |
seasalt emissions
|
EMISS_SSA |
MATRIXchem |
ug m-3 |
xy |
aitken seasalt emissions
|
EMISS_SSC |
MATRIXchem |
ug m-3 |
xy |
coarse seasalt emissions
|
EMIS_DMS |
AChem |
kg m-2 s-1 |
xy |
DMS emissions
|
EMIS_SO2 |
AChem |
kg m-2 s-1 |
xy |
SO2 emissions from biomass burning and anthropogenic sources
|
EMIS_SO2_EXV |
AChem |
kg m-2 s-1 |
xy |
SO2 emissions from explosive volcanoes
|
EMIS_SO2_NXV |
AChem |
kg m-2 s-1 |
xy |
SO2 emissions from non-explosive volcanoes
|
EMIS_SO2_VOLC |
AChem |
kg m-2 s-1 |
xy |
SO2 emissions from explosive and non-explosive volcanoes
|
EMIS_S_DMS |
AChem |
kg m-2 s-1 |
xy |
DMS emissions in kg-S m-2 s-1
|
EMIS_S_SO2 |
AChem |
kg m-2 s-1 |
xy |
SO2 emissions in kg-S m-2 s-1
|
EMMONOT |
GMICHEM |
kg m-2 s-1 |
xy |
surface emission of monoterpenes
|
EMNOX |
GMICHEM |
kg m-2 s-1 |
xy |
surface emission of odd nitrogen
|
EMSHIPHNO3 |
GMICHEM |
kg m-2 s-1 |
xy |
surface ship source of nitric acid
|
EMSHIPO3 |
GMICHEM |
kg m-2 s-1 |
xy |
surface ship source of ozone
|
EMSOILNOX |
GMICHEM |
kg m-2 s-1 |
xy |
soil source of odd nitrogen
|
EM_ACET |
GMICHEM |
mol mol-1 s-1 |
xyz |
acetone emissions
|
EM_ALD2 |
GMICHEM |
mol mol-1 s-1 |
xyz |
acetaldehyde (C2H4O) emissions
|
EM_ALK4 |
GMICHEM |
mol mol-1 s-1 |
xyz |
C45 alkanes (C4H10) emissions
|
EM_C2H6 |
GMICHEM |
mol mol-1 s-1 |
xyz |
ethane emissions
|
EM_C3H8 |
GMICHEM |
mol mol-1 s-1 |
xyz |
propane emissions
|
EM_CH2O |
GMICHEM |
mol mol-1 s-1 |
xyz |
formaldehyde emissions
|
EM_CH4 |
GMICHEM |
mol mol-1 s-1 |
xyz |
methane emissions
|
EM_CO |
GMICHEM |
mol mol-1 s-1 |
xyz |
carbon monoxide emissions
|
EM_LGTNO |
GMICHEM |
mol mol-1 s-1 |
xyz |
NO emissions from lightning
|
EM_MEK |
GMICHEM |
mol mol-1 s-1 |
xyz |
methyl ethyl ketone (C4H8O) emissions
|
EM_NO |
GMICHEM |
kg m-3 s-1 |
xyz |
nitrous oxide emissions
|
EM_PRPE |
GMICHEM |
mol mol-1 s-1 |
xyz |
propene (C3H6) emissions
|
ENTLAM |
Moist |
m-1 |
xyz |
entrainment parameter
|
EPV |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
EPV |
FVdycore |
K m+2 kg-1 s-1 |
xyz |
ertels potential vorticity
|
EPV |
DynCore |
K m+2 kg-1 s-1 |
xyz |
ertels potential vorticity
|
EPV |
ARIESg3 |
K m+2 kg-1 s-1 |
xyz |
ertels potential vorticity
|
EPV |
DatmoDyn |
K m+2 kg-1 sec-1 |
xyz |
ertels potential vorticity
|
ER_PRCP |
Moist |
kg m-2 s-1 |
xy |
spurious rain from RH cleanup
|
EVAP |
Surface |
kg m-2 s-1 |
xy |
evaporation from turbulence
|
EVAPC |
Moist |
kg kg-1 s-1 |
xyz |
evaporation of cloud liq
|
EVAPOUT |
Surface |
kg m-2 s-1 |
xy |
evaporation
|
EVAPOUT |
Lake |
kg m-2 s-1 |
tile |
evaporation
|
EVAPOUT |
Landice |
kg m-2 s-1 |
tile |
evaporation
|
EVAPOUT |
Land |
|
|
|
EVAPOUT |
Catch |
kg m-2 s-1 |
tile |
evaporation
|
EVAPOUT |
CatchCN |
kg m-2 s-1 |
tile |
evaporation
|
EVAPOUT |
Saltwater |
kg m-2 s-1 |
tile |
evaporation
|
EVLAND |
Surface |
kg m-2 s-1 |
xy |
Evaporation land
|
EVLAND |
Land |
|
|
|
EVLAND |
Catch |
kg m-2 s-1 |
tile |
Evaporation land
|
EVLAND |
CatchCN |
kg m-2 s-1 |
tile |
Evaporation land
|
EVPCZ |
Moist |
kg m-2 s-1 |
xy |
evaporation loss of cloud water
|
EVPICE |
Surface |
W m-2 |
xy |
snow ice evaporation energy flux
|
EVPICE |
Land |
|
|
|
EVPICE |
Catch |
W m-2 |
tile |
snow ice evaporation energy flux
|
EVPICE |
CatchCN |
W m-2 |
tile |
snow ice evaporation energy flux
|
EVPICE_GL |
Landice |
W m-2 |
tile |
snow ice evaporation energy flux over glaciated surface
|
EVPINT |
Surface |
W m-2 |
xy |
interception loss energy flux
|
EVPINT |
Land |
|
|
|
EVPINT |
Catch |
W m-2 |
tile |
interception loss energy flux
|
EVPINT |
CatchCN |
W m-2 |
tile |
interception loss energy flux
|
EVPPZ |
Moist |
kg m-2 s-1 |
xy |
evaporation loss of precip water
|
EVPSNO |
Surface |
W m-2 |
xy |
snowpack evaporation energy flux
|
EVPSNO |
Land |
|
|
|
EVPSNO |
Catch |
W m-2 |
tile |
snowpack evaporation energy flux
|
EVPSNO |
CatchCN |
W m-2 |
tile |
snowpack evaporation energy flux
|
EVPSOI |
Surface |
W m-2 |
xy |
baresoil evap energy flux
|
EVPSOI |
Land |
|
|
|
EVPSOI |
Catch |
W m-2 |
tile |
baresoil evap energy flux
|
EVPSOI |
CatchCN |
W m-2 |
tile |
baresoil evap energy flux
|
EVPVEG |
Surface |
W m-2 |
xy |
transpiration energy flux
|
EVPVEG |
Land |
|
|
|
EVPVEG |
Catch |
W m-2 |
tile |
transpiration energy flux
|
EVPVEG |
CatchCN |
W m-2 |
tile |
transpiration energy flux
|
F113FLX |
StratChem |
kg s-1 |
xy |
derived CFC-113 surface flux
|
F11FLX |
StratChem |
kg s-1 |
xy |
derived CFC-11 surface flux
|
F12FLX |
StratChem |
kg s-1 |
xy |
derived CFC-12 surface flux
|
FBOT |
Surface |
W m-2 |
xy |
net downward heat flux from ice to ocean
|
FBOT |
Saltwater |
W m-2 |
tile |
net downward heat flux from ice to ocean
|
FCLD |
Moist |
1 |
xyz |
cloud fraction for radiation
|
FCLD |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
FCLD |
Solar |
1 |
xyz |
cloud area fraction
|
FCONDBOT |
Saltwater |
W m-2 |
tile |
conductive heat flux at ice bottom surface
|
FCONDBOTN |
Saltwater |
W m-2 |
tile |
conductive heat flux at ice bottom over ice categories
|
FCONDTOP |
Saltwater |
W m-2 |
tile |
conductive heat flux at ice top surface
|
FDUCMASS |
MAMchem |
kg m-2 |
xy |
Column Mass Density Fine Dust mode
|
FDUEXTTAU |
MAMchem |
1 |
xy |
Aerosol Optical Thickness Fine Dust mode
|
FDUSCATAU |
MAMchem |
1 |
xy |
Aerosol Scattering Optical Thickness Fine Dust mode
|
FHOCN |
Surface |
W m-2 |
xy |
actual ocean ice flux
|
FHOCN |
Saltwater |
W m-2 |
tile |
actual ocean ice flux
|
FILLNQV |
Moist |
kg m-2 s-1 |
xy |
filling of negative Q
|
FLA |
Irrad |
W m-2 |
xyz |
net downward longwave flux in air assuming clear sky and no aerosol
|
FLAD |
Irrad |
W m-2 |
xyz |
downward longwave flux in air assuming clear sky and no aerosol
|
FLAU |
Irrad |
W m-2 |
xyz |
upward longwave flux in air assuming clear sky and no aerosol
|
FLC |
Irrad |
W m-2 |
xyz |
net downward longwave flux in air assuming clear sky
|
FLCD |
Irrad |
W m-2 |
xyz |
downward longwave flux in air assuming clear sky
|
FLCU |
Irrad |
W m-2 |
xyz |
upward longwave flux in air assuming clear sky
|
FLNS |
Irrad |
W m-2 |
xy |
surface net downward longwave flux
|
FLNSA |
Irrad |
W m-2 |
xy |
surface net downward longwave flux assuming clear sky and no aerosol
|
FLNSC |
Irrad |
W m-2 |
xy |
surface net downward longwave flux assuming clear sky
|
FLNSNA |
Irrad |
W m-2 |
xy |
surface net downward longwave flux and no aerosol
|
FLX |
Irrad |
W m-2 |
xyz |
net downward longwave flux in air
|
FLXA |
Irrad |
W m-2 |
xyz |
net downward longwave flux in air and no aerosol
|
FLXAD |
Irrad |
W m-2 |
xyz |
downward longwave flux in air and no aerosol
|
FLXAU |
Irrad |
W m-2 |
xyz |
upward longwave flux in air and no aerosol
|
FLXD |
Irrad |
W m-2 |
xyz |
downward longwave flux in air
|
FLXU |
Irrad |
W m-2 |
xyz |
upward longwave flux in air
|
FRACI |
Gcm |
|
|
|
FRACI |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
FRACI |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
FRACI |
Surface |
1 |
xy |
ice covered fraction of tile
|
FRACI |
Saltwater |
1 |
tile |
ice covered fraction of tile
|
FRACICE |
Ogcm |
1 |
tile |
fractional cover of seaice
|
FRACICE |
DataSeaIce |
1 |
xy |
fractional cover of seaice
|
FRACICE |
DataSeaIce |
1 |
xy |
fractional cover of seaice
|
FRAZIL |
Surface |
m s-1 |
xy |
frazil ice growth
|
FRAZIL |
Saltwater |
m s-1 |
tile |
frazil ice growth
|
FRESH |
Saltwater |
kg m-2 s-1 |
tile |
fresh water flux to ocean
|
FRLAKE |
Gcm |
|
|
|
FRLAKE |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
FRLAKE |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
FRLAKE |
Surface |
1 |
xy |
fraction of lake
|
FRLAND |
Gcm |
|
|
|
FRLAND |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
FRLAND |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
FRLAND |
Surface |
1 |
xy |
fraction of land
|
FRLANDICE |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
FRLANDICE |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
FRLANDICE |
Surface |
1 |
xy |
fraction of land ice
|
FRLANDICE& |
Gcm |
|
|
|
FRLANDX0 |
Moist |
1 |
xy |
areal land fraction
|
FROCEAN |
Gcm |
|
|
|
FROCEAN |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
FROCEAN |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
FROCEAN |
Surface |
1 |
xy |
fraction of ocean
|
FROCEAN |
Orad |
1 |
xy |
ocean fraction of grid cell
|
FRSAT |
Surface |
1 |
xy |
fractional area of saturated zone
|
FRSAT |
Land |
|
|
|
FRSAT |
Catch |
1 |
tile |
fractional area of saturated zone
|
FRSAT |
CatchCN |
1 |
tile |
fractional area of saturated zone
|
FRUST |
Surface |
1 |
xy |
fractional area of unsaturated zone
|
FRUST |
Land |
|
|
|
FRUST |
Catch |
1 |
tile |
fractional area of unsaturated zone
|
FRUST |
CatchCN |
1 |
tile |
fractional area of unsaturated zone
|
FRWLT |
Surface |
1 |
xy |
fractional area of wilting zone
|
FRWLT |
Land |
|
|
|
FRWLT |
Catch |
1 |
tile |
fractional area of wilting zone
|
FRWLT |
CatchCN |
1 |
tile |
fractional area of wilting zone
|
FRZCZ |
Moist |
kg m-2 s-1 |
xy |
net freezing of cloud condensate
|
FRZMLT |
Surface |
W m-2 |
xy |
freezing melting potential
|
FRZPP_LS |
Moist |
K s-1 |
xyz |
Tendency in T from micro precip freezing
|
FRZPZ |
Moist |
kg m-2 s-1 |
xy |
net freezing of precip condensate
|
FRZ_PP |
Moist |
kg kg-1 s-1 |
xyz |
freezing of precip condensate
|
FRZ_TT |
Moist |
kg kg-1 s-1 |
xyz |
freezing of cloud condensate
|
FSALT |
Saltwater |
kg m-2 s-1 |
tile |
salt flux to ocean
|
FSC |
Solar |
W m-2 |
xyz |
net downward shortwave flux in air assuming clear sky
|
FSCD |
Solar |
W m-2 |
xyz |
downward shortwave flux in air assuming clear sky
|
FSCDNA |
Solar |
W m-2 |
xyz |
downward shortwave flux in air assuming clear sky and no aerosol
|
FSCNA |
Solar |
W m-2 |
xyz |
net downward shortwave flux in air assuming clear sky and no aerosol
|
FSCU |
Solar |
W m-2 |
xyz |
upward shortwave flux in air assuming clear sky
|
FSCUNA |
Solar |
W m-2 |
xyz |
upward shortwave flux in air assuming clear sky and no aerosol
|
FSSCMASS |
MAMchem |
kg m-2 |
xy |
Column Mass Density Fine Seasalt mode
|
FSSEXTTAU |
MAMchem |
1 |
xy |
Aerosol Optical Thickness Fine Seasalt mode
|
FSSSCATAU |
MAMchem |
1 |
xy |
Aerosol Scattering Optical Thickness Fine Seasalt mode
|
FSTAR |
Turbulence |
X kg m-2 s-1 |
xy |
surface fluxes
|
FSW |
Solar |
W m-2 |
xyz |
net downward shortwave flux in air
|
FSWABS |
Surface |
W m-2 |
xy |
SW flux absorbed by skin layer
|
FSWABS |
Saltwater |
W m-2 |
tile |
SW flux absorbed by skin layer
|
FSWBAND |
Saltwater |
W m-2 |
tile |
net surface downward shortwave flux per band in air
|
FSWBAND |
Solar |
W m-2 |
xy |
net surface downward shortwave flux per band in air
|
FSWBANDNA |
Saltwater |
W m-2 |
tile |
net surface downward shortwave flux per band in air assuming no aerosol
|
FSWBANDNA |
Solar |
W m-2 |
xy |
net surface downward shortwave flux per band in air assuming no aerosol
|
FSWD |
Solar |
W m-2 |
xyz |
downward shortwave flux in air
|
FSWDNA |
Solar |
W m-2 |
xyz |
downward shortwave flux in air assuming no aerosol
|
FSWNA |
Solar |
W m-2 |
xyz |
net downward shortwave flux in air assuming no aerosol
|
FSWTHRU |
Surface |
W m-2 |
xy |
SW flux thru ice to ocean
|
FSWTHRU |
Saltwater |
W m-2 |
tile |
SW flux thru ice to ocean
|
FSWU |
Solar |
W m-2 |
xyz |
upward shortwave flux in air
|
FSWUNA |
Solar |
W m-2 |
xyz |
upward shortwave flux in air assuming no aerosol
|
FTB |
Physics |
W m-2 |
xyz |
upward net turbulence heat flux
|
FTU |
Physics |
m+2 s-2 |
xyz |
upward net turbulence eastward momentum flux
|
FTV |
Physics |
m+2 s-2 |
xyz |
upward net turbulence northward momentum flux
|
FWFLUX |
Saltwater |
kg m-2 s-1 |
tile |
fresh water flux weighted by fr
|
GHFLX |
Land |
|
|
|
GHFLX |
Catch |
W m-2 |
tile |
ground energy flux
|
GHFLX |
CatchCN |
W m-2 |
tile |
ground energy flux
|
GHLAND |
Surface |
W m-2 |
xy |
Ground heating land
|
GHLAND |
Land |
|
|
|
GHLAND |
Catch |
W m-2 |
tile |
Ground heating land
|
GHLAND |
CatchCN |
W m-2 |
tile |
Ground heating land
|
GHSNOW |
Surface |
W m-2 |
xy |
Ground heating snow
|
GHSNOW |
Landice |
W m-2 |
tile |
Ground heating snow
|
GHSNOW |
Land |
|
|
|
GHSNOW |
Catch |
W m-2 |
tile |
Ground heating snow
|
GHSNOW |
CatchCN |
W m-2 |
tile |
Ground heating snow
|
GHTSKIN |
Surface |
W m-2 |
xy |
Ground heating for skin temp
|
GHTSKIN |
Landice |
W m-2 |
tile |
Ground heating for tskin
|
GHTSKIN |
Land |
|
|
|
GHTSKIN |
Catch |
W m-2 |
tile |
Ground heating skin temp
|
GHTSKIN |
CatchCN |
W m-2 |
tile |
Ground heating skin temp
|
GMICHEMBCphilic |
GMICHEM |
kg kg-1 |
xyz |
prescribed hydrophylic black carbon from GMICHEM
|
GMICHEMBCphobic |
GMICHEM |
kg kg-1 |
xyz |
prescribed hydrophobic black carbon from GMICHEM
|
GMICHEMOCphilic |
GMICHEM |
kg kg-1 |
xyz |
prescribed hydrophylic organic carbon from GMICHEM
|
GMICHEMOCphobic |
GMICHEM |
kg kg-1 |
xyz |
prescribed hydrophobic organic carbon from GMICHEM
|
GMICHEMSO4 |
GMICHEM |
kg kg-1 |
xyz |
prescribed sulfate from GMICHEM
|
GMICHEMdu001 |
GMICHEM |
kg kg-1 |
xyz |
prescribed dust bin 1 from GMICHEM
|
GMICHEMdu002 |
GMICHEM |
kg kg-1 |
xyz |
prescribed dust bin 2 from GMICHEM
|
GMICHEMdu003 |
GMICHEM |
kg kg-1 |
xyz |
prescribed dust bin 3 from GMICHEM
|
GMICHEMdu004 |
GMICHEM |
kg kg-1 |
xyz |
prescribed dust bin 4 from GMICHEM
|
GMICHEMss001 |
GMICHEM |
kg kg-1 |
xyz |
prescribed sea salt bin 1 from GMICHEM
|
GMICHEMss003 |
GMICHEM |
kg kg-1 |
xyz |
prescribed sea salt bin 3 from GMICHEM
|
GMICHEMss004 |
GMICHEM |
kg kg-1 |
xyz |
prescribed sea salt bin 4 from GMICHEM
|
GMICHEMss005 |
GMICHEM |
kg kg-1 |
xyz |
prescribed sea salt bin 5 from GMICHEM
|
GMIH2O |
GMICHEM |
mol mol-1 |
xyz |
gas phase water from GMICHEM
|
GMITO3 |
GMICHEM |
dobsons |
xy |
total ozone
|
GMITROPP |
GMICHEM |
Pa |
xy |
tropopause pressure used in GMICHEM
|
GMITTO3 |
GMICHEM |
dobsons |
xy |
total tropospheric ozone
|
GRN |
Surface |
1 |
xy |
greenness fraction
|
GRN |
Land |
|
|
|
GRN |
Vegdyn |
1 |
tile |
greeness fraction
|
GUST |
Surface |
m s-1 |
xy |
gustiness
|
GUST |
Lake |
m s-1 |
tile |
gustiness
|
GUST |
Landice |
m s-1 |
tile |
gustiness
|
GUST |
Land |
|
|
|
GUST |
Catch |
m s-1 |
tile |
gustiness
|
GUST |
CatchCN |
m s-1 |
tile |
gustiness
|
GUST |
Saltwater |
m s-1 |
tile |
gustiness
|
GWDVARX |
Agcm |
m+2 |
xy |
east-west variance of GWD topography
|
GWDVARXY |
Agcm |
m+2 |
xy |
SW-NE variance of GWD topography
|
GWDVARY |
Agcm |
m+2 |
xy |
north-south variance of GWD topography
|
GWDVARYX |
Agcm |
m+2 |
xy |
NW-SE variance of GWD topography
|
H |
Orad |
dyn-m |
xyz |
Layer mass
|
H1000 |
FVdycore |
m |
xy |
height at 1000 mb
|
H1000 |
DynCore |
m |
xy |
height at 1000 mb
|
H1000 |
ARIESg3 |
m |
xy |
height at 1000 mb
|
H1224FLX |
StratChem |
kg s-1 |
xy |
derived H1224 surface flux
|
H12_24_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change H12 24
|
H1301FLX |
StratChem |
kg s-1 |
xy |
derived H1301 surface flux
|
H1301_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change H1301
|
H250 |
FVdycore |
m |
xy |
height at 250 hPa
|
H250 |
DynCore |
m |
xy |
height at 250 hPa
|
H250 |
ARIESg3 |
m |
xy |
height at 250 hPa
|
H2O2_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change H2O2
|
H2O_LOSS |
PChem |
s-1 |
xyz |
tendency of specific humidity due to loss
|
H2O_PROD |
PChem |
s-1 |
xyz |
tendency of specific humidity due to production
|
H2O_TEND |
PChem |
kg kg-1 s-1 |
xyz |
tendency of water vapor mixing ratio due to chemistry
|
H2O_TEND |
GMICHEM |
kg kg-1 s-1 |
xyz |
tendency of water vapor mixing ratio due to chemistry
|
H2O_TEND |
StratChem |
kg kg-1 s-1 |
xyz |
tendency of water vapor mixing ratio due to chemistry
|
H300 |
DynCore |
m |
xy |
height at 300 hPa
|
H500 |
FVdycore |
m |
xy |
height at 500 hPa
|
H500 |
DynCore |
m |
xy |
height at 500 hPa
|
H500 |
ARIESg3 |
m |
xy |
height at 500 hPa
|
H700 |
DynCore |
m |
xy |
height at 700 hPa
|
H850 |
FVdycore |
m |
xy |
height at 850 hPa
|
H850 |
DynCore |
m |
xy |
height at 850 hPa
|
H850 |
ARIESg3 |
m |
xy |
height at 850 hPa
|
HBR_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change HBR
|
HCFC22_LOSS |
PChem |
mol mol-1 s-1 |
xyz |
tendency of HCFC22 volume mixing ratio due to loss
|
HCFC22_PROD |
PChem |
mol mol-1 s-1 |
xyz |
tendency of HCFC22 volume mixing ratio due to production
|
HCFC22_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change HCFC22
|
HCFCFLX |
StratChem |
kg s-1 |
xy |
derived HCFC surface flux
|
HCFC_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change HCFC
|
HCL_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change HCL
|
HDQDTDYN |
DatmoDyn |
kgkgsec |
xyz |
horiz tendency of specific humidity due to dynamics
|
HDTDTDYN |
DatmoDyn |
K sec-1 |
xyz |
horiz tendency of air temperature due to dynamics
|
HDTHDTDYN |
DatmoDyn |
K sec-1 |
xyz |
horiz tendency of air pot temp due to dynamics
|
HFLUX |
Surface |
W m-2 |
xy |
heat flux bw saltwater ocean
|
HFLUX |
Saltwater |
W m-2 |
tile |
heat flux bw saltwater ocean
|
HGTLM5 |
Turbulence |
m |
xy |
height at LM5
|
HICE |
Gcm |
|
|
|
HICE |
Surface |
m |
xy |
grid cell mean ice thickness
|
HICE |
Saltwater |
m |
tile |
grid cell mean ice thickness
|
HICE |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
HICE |
DataSeaIce |
m |
xy |
mean ice thickness of grid cell
|
HICEUNT |
Saltwater |
m |
tile |
grid cell mean ice thickness untouched by run2
|
HLATICE |
Surface |
W m-2 |
xy |
sea ice latent energy flux
|
HLATICE |
Saltwater |
W m-2 |
tile |
sea ice latent energy flux
|
HLATN |
Lake |
W m-2 |
tile |
total latent energy flux
|
HLATN |
Landice |
W m-2 |
tile |
total latent energy flux
|
HLATN |
Land |
|
|
|
HLATN |
Catch |
W m-2 |
tile |
total latent energy flux
|
HLATN |
CatchCN |
W m-2 |
tile |
total latent energy flux
|
HLATN |
Saltwater |
W m-2 |
tile |
total latent energy flux
|
HLATWTR |
Surface |
W m-2 |
xy |
open water latent energy flux
|
HLATWTR |
Saltwater |
W m-2 |
tile |
open water latent energy flux
|
HLWUP |
Surface |
W m-2 |
xy |
surface outgoing longwave flux
|
HLWUP |
Lake |
W m-2 |
tile |
surface outgoing longwave flux
|
HLWUP |
Landice |
W m-2 |
tile |
surface outgoing longwave flux
|
HLWUP |
Catch |
W m-2 |
tile |
surface outgoing longwave flux
|
HLWUP |
CatchCN |
W m-2 |
tile |
surface outgoing longwave flux
|
HLWUP |
Saltwater |
W m-2 |
tile |
surface outgoing longwave flux
|
HLWUP& |
Land |
|
|
|
HNO3CMASS |
NI |
kg m-3 |
xy |
Nitric Acid Column Mass Density ENSEMBLE
|
HNO3CONC |
NI |
kg m-3 |
xyz |
Nitric Acid Mass Concentration ENSEMBLE
|
HNO3COND_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change HNO3COND
|
HNO3CONDsad |
GMIchem |
mixing_ratio |
xyz |
condensed phase hno3
|
HNO3GASsad |
GMIchem |
mixing_ratio |
xyz |
gas phase-hno3
|
HNO3SMASS |
NI |
kg m-3 |
xy |
Nitric Acid Surface Mass Concentration ENSEMBLE
|
HNO3_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change HNO3
|
HO2NO2_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change HO2NO2
|
HO2PBLFLAG |
GMICHEM |
0-1 |
xyz |
PBL flag for HO2 loss in aerosols
|
HOBR_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change HOBR
|
HOCL_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change HOCL
|
HOURNORAIN |
Moist |
s |
xy |
time-during an hour with no precipitation
|
HSNO |
Surface |
m |
xy |
grid cell mean snow thickness
|
HSNO |
Saltwater |
m |
tile |
grid cell mean snow thickness
|
HSNO |
DataSeaIce |
m |
xy |
mean snow thickness of grid cell
|
IAGE |
Saltwater |
years |
tile |
sea ice age
|
ICEANMOVE |
Moist |
kg kg-1 s-1 |
xyz |
move2anv source of anvil ice
|
ICESAD |
StratChem |
m-1 |
xyz |
surface area density water ice PSC
|
ICESOI |
Surface |
kg m-2 |
xy |
soil frozen water content
|
ICESOI |
Land |
|
|
|
ICESOI |
Catch |
kg m-2 |
tile |
soil frozen water content
|
ICESOI |
CatchCN |
kg m-2 |
tile |
soil frozen water content
|
IMELT |
Landice |
kg m-2 s-1 |
tile |
icemelt flux
|
INC_NUC |
Moist |
m-3 |
xyz |
Nucleated ice crystal concentration (grid avg)
|
INHB |
Moist |
1 |
xy |
inhibition for surface parcel
|
INTDIS |
Turbulence |
K s-1 Pa |
xyz |
p-weighted frictional heating rate from diffusion
|
ISCCP1 |
Satsim |
1 |
xy |
isccp cloud area fraction 0 180 hPa
|
ISCCP2 |
Satsim |
1 |
xy |
isccp cloud area fraction 180 310 hPa
|
ISCCP3 |
Satsim |
1 |
xy |
isccp cloud area fraction 310 440 hPa
|
ISCCP4 |
Satsim |
1 |
xy |
isccp cloud area fraction 440 560 hPa
|
ISCCP5 |
Satsim |
1 |
xy |
isccp cloud area fraction 560 680 hPa
|
ISCCP6 |
Satsim |
1 |
xy |
isccp cloud area fraction 680 800 hPa
|
ISCCP7 |
Satsim |
1 |
xy |
isccp cloud area fraction 800 SFC hPa
|
ISCCP_ACU_OA |
Satsim |
1 |
xy |
isccp fraction of thin higher altocumulus
|
ISCCP_ACU_OB |
Satsim |
1 |
xy |
isccp fraction of thick higher altocumulus
|
ISCCP_ACU_UA |
Satsim |
1 |
xy |
isccp fraction of thin lower altocumulus
|
ISCCP_ACU_UB |
Satsim |
1 |
xy |
isccp fraction of thick lower altocumulus
|
ISCCP_AST_OA |
Satsim |
1 |
xy |
isccp fraction of thin higher altostratus
|
ISCCP_AST_OB |
Satsim |
1 |
xy |
isccp fraction of thick higher altostratus
|
ISCCP_AST_UA |
Satsim |
1 |
xy |
isccp fraction of thin lower altostratus
|
ISCCP_AST_UB |
Satsim |
1 |
xy |
isccp fraction of thick lower altostratus
|
ISCCP_CB_MA |
Satsim |
1 |
xy |
isccp fraction of thin middle cumulonimbus
|
ISCCP_CB_MB |
Satsim |
1 |
xy |
isccp fraction of thick middle cumulonimbus
|
ISCCP_CB_OA |
Satsim |
1 |
xy |
isccp fraction of thin higher cumulonimbus
|
ISCCP_CB_OB |
Satsim |
1 |
xy |
isccp fraction of thick higher cumulonimbus
|
ISCCP_CB_UA |
Satsim |
1 |
xy |
isccp fraction of thin lower cumulonimbus
|
ISCCP_CB_UB |
Satsim |
1 |
xy |
isccp fraction of thick lower cumulonimbus
|
ISCCP_CIST_MA |
Satsim |
1 |
xy |
isccp fraction of thin middle cirrostratus
|
ISCCP_CIST_MB |
Satsim |
1 |
xy |
isccp fraction of thick middle cirrostratus
|
ISCCP_CIST_OA |
Satsim |
1 |
xy |
isccp fraction of thin higher cirrostratus
|
ISCCP_CIST_OB |
Satsim |
1 |
xy |
isccp fraction of thick higher cirrostratus
|
ISCCP_CIST_UA |
Satsim |
1 |
xy |
isccp fraction of thin lower cirrostratus
|
ISCCP_CIST_UB |
Satsim |
1 |
xy |
isccp fraction of thick lower cirrostratus
|
ISCCP_CI_MA |
Satsim |
1 |
xy |
isccp fraction of thin middle cirrus
|
ISCCP_CI_MB |
Satsim |
1 |
xy |
isccp fraction of thick middle cirrus
|
ISCCP_CI_OA |
Satsim |
1 |
xy |
isccp fraction of thin higher cirrus
|
ISCCP_CI_OB |
Satsim |
1 |
xy |
isccp fraction of thick higher cirrus
|
ISCCP_CI_UA |
Satsim |
1 |
xy |
isccp fraction of thin lower cirrus
|
ISCCP_CI_UB |
Satsim |
1 |
xy |
isccp fraction of thick lower cirrus
|
ISCCP_CU_OA |
Satsim |
1 |
xy |
isccp fraction of thin higher cumulus
|
ISCCP_CU_OB |
Satsim |
1 |
xy |
isccp fraction of thick higher cumulus
|
ISCCP_CU_UA |
Satsim |
1 |
xy |
isccp fraction of thin lower cumulus
|
ISCCP_CU_UB |
Satsim |
1 |
xy |
isccp fraction of thick lower cumulus
|
ISCCP_NST_OA |
Satsim |
1 |
xy |
isccp fraction of thin higher nimbostratus
|
ISCCP_NST_OB |
Satsim |
1 |
xy |
isccp fraction of thick higher nimbostratus
|
ISCCP_NST_UA |
Satsim |
1 |
xy |
isccp fraction of thin lower nimbostratus
|
ISCCP_NST_UB |
Satsim |
1 |
xy |
isccp fraction of thick lower nimbostratus
|
ISCCP_STCU_OA |
Satsim |
1 |
xy |
isccp fraction of thin higher stratocumulus
|
ISCCP_STCU_OB |
Satsim |
1 |
xy |
isccp fraction of thick higher stratocumulus
|
ISCCP_STCU_UA |
Satsim |
1 |
xy |
isccp fraction of thin lower stratocumulus
|
ISCCP_STCU_UB |
Satsim |
1 |
xy |
isccp fraction of thick lower stratocumulus
|
ISCCP_ST_OA |
Satsim |
1 |
xy |
isccp fraction of thin higher stratus
|
ISCCP_ST_OB |
Satsim |
1 |
xy |
isccp fraction of thick higher stratus
|
ISCCP_ST_UA |
Satsim |
1 |
xy |
isccp fraction of thin lower stratus
|
ISCCP_ST_UB |
Satsim |
1 |
xy |
isccp fraction of thick lower stratus
|
ISCCP_SUBV1 |
Satsim |
1 |
xy |
isccp fraction of subvisible cloud 0 180 hPa
|
ISCCP_SUBV2 |
Satsim |
1 |
xy |
isccp fraction of subvisible cloud 180 310 hPa
|
ISCCP_SUBV3 |
Satsim |
1 |
xy |
isccp fraction of subvisible cloud 310 440 hPa
|
ISCCP_SUBV4 |
Satsim |
1 |
xy |
isccp fraction of subvisible cloud 440 560 hPa
|
ISCCP_SUBV5 |
Satsim |
1 |
xy |
isccp fraction of subvisible cloud 560 680 hPa
|
ISCCP_SUBV6 |
Satsim |
1 |
xy |
isccp fraction of subvisible cloud 680 800 hPa
|
ISCCP_SUBV7 |
Satsim |
1 |
xy |
isccp fraction of subvisible cloud 800 SFC hPa
|
ISTSFC |
Surface |
C |
xy |
snow or ice surface temperature
|
ISTSFC |
Saltwater |
C |
tile |
snow or ice surface temperature
|
ITY |
Surface |
1 |
xy |
vegetation type
|
ITY |
Landice |
1 |
tile |
vegetation type
|
ITY |
Land |
|
|
|
ITY |
Catch |
1 |
tile |
vegetation type
|
ITY |
CatchCN |
1 |
tile |
vegetation type
|
IWC |
Moist |
kg m-3 |
xyz |
ice water content
|
IWP |
Moist |
kg m-2 |
xy |
ice water path
|
KAPPA |
Moist |
1 |
xyz |
kappa parameter for activation
|
KCBLI |
Moist |
1 |
xy |
cloud base layer before ras
|
KCBL_moist |
Moist |
1 |
xy |
KCBL before moist
|
KE |
Agcm |
J m-2 |
xy |
vertically integrated kinetic energy
|
KE |
FVdycore |
J m-2 |
xy |
vertically integrated kinetic energy
|
KE |
DynCore |
J m-2 |
xy |
vertically integrated kinetic energy
|
KE |
ARIESg3 |
J m-2 |
xy |
vertically integrated kinetic energy
|
KEADV |
FVdycore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to dynamics advection
|
KEADV |
DynCore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to dynamics advection
|
KEADV |
ARIESg3 |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to dynamics advection
|
KEANA |
FVdycore |
W m-2 |
xy |
total kinetic energy tendency due to analysis
|
KEANA |
DynCore |
W m-2 |
xy |
total kinetic energy tendency due to analysis
|
KEANA |
ARIESg3 |
W m-2 |
xy |
total kinetic energy tendency due to analysis
|
KEBKG |
Gwd |
W m-2 |
xy |
vertically integrated kinetic energy dissipation due to gravity wave background
|
KECDCOR |
FVdycore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to cdcore
|
KECDCOR |
DynCore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to cdcore
|
KECDCOR |
ARIESg3 |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to cdcore
|
KEDISS |
Moist |
W m-2 |
xyz |
kinetic energy diss in RAS
|
KEDP |
FVdycore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to pressure change
|
KEDP |
DynCore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to pressure change
|
KEDP |
ARIESg3 |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to pressure change
|
KEDYN |
FVdycore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to dynamics
|
KEDYN |
DynCore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to dynamics
|
KEDYN |
ARIESg3 |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to dynamics
|
KEGEN |
FVdycore |
W m-2 |
xy |
vertically integrated generation of kinetic energy
|
KEGEN |
DynCore |
W m-2 |
xy |
vertically integrated generation of kinetic energy
|
KEGEN |
ARIESg3 |
W m-2 |
xy |
vertically integrated generation of kinetic energy
|
KEGWD |
Gwd |
W m-2 |
xy |
vertically integrated kinetic energy tendency across gwd
|
KEHOT |
FVdycore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to HOT
|
KEHOT |
DynCore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to HOT
|
KEHOT |
ARIESg3 |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to HOT
|
KEINT |
Turbulence |
W m-2 |
xy |
vertically integrated kinetic energy dissipation due to diffusion
|
KEMST |
Moist |
W m-2 |
xy |
vertically integrated kinetic energy tendency across moist
|
KEMST2 |
Moist |
W m-2 |
xy |
vertically integrated KE dissipation in RAS
|
KEORO |
Gwd |
W m-2 |
xy |
vertically integrated kinetic energy dissipation due to orographic gravity waves
|
KEPG |
FVdycore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to pressure gradient
|
KEPG |
DynCore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to pressure gradient
|
KEPG |
ARIESg3 |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to pressure gradient
|
KEPHY |
FVdycore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to physics
|
KEPHY |
DynCore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to physics
|
KEPHY |
ARIESg3 |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to physics
|
KEPHY |
Physics |
W m-2 |
xy |
vertically integrated kinetic energy tendency across physics
|
KERAD |
Turbulence |
m+2 s-1 |
xy |
turbulent entrainment diff from cooling
|
KERAY |
Gwd |
W m-2 |
xy |
vertically integrated kinetic energy dissipation due to Rayleigh friction
|
KEREMAP |
FVdycore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to remap
|
KEREMAP |
DynCore |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to remap
|
KEREMAP |
ARIESg3 |
W m-2 |
xy |
vertically integrated kinetic energy tendency due to remap
|
KERES |
Gwd |
W m-2 |
xy |
vertically integrated kinetic energy residual for total energy conservation
|
KESRF |
Turbulence |
W m-2 |
xy |
vertically integrated kinetic energy dissipation due to surface friction
|
KETOP |
Turbulence |
W m-2 |
xy |
vertically integrated kinetic energy dissipation due to topographic friction
|
KETRB |
Turbulence |
W m-2 |
xy |
vertically integrated kinetic energy tendency across turbulence
|
KH |
Turbulence |
m+2 s-1 |
xyz |
total scalar diffusivity
|
KHLS |
Turbulence |
m+2 s-1 |
xyz |
scalar diffusivity from Louis
|
KHRAD |
Turbulence |
m+2 s-1 |
xyz |
radiation driven scalar diffusivity from Lock scheme
|
KHSFC |
Turbulence |
m+2 s-1 |
xyz |
surface driven scalar diffusivity from Lock scheme
|
KHX0 |
Moist |
m+2 s-1 |
xyz |
scalar diffusivity
|
KHl_moist |
Moist |
1 |
xy |
lower index where Kh greater than 2
|
KHu_moist |
Moist |
1 |
xy |
upper index where Kh greater than 2
|
KM |
Turbulence |
m+2 s-1 |
xyz |
total momentum diffusivity
|
KMLS |
Turbulence |
m+2 s-1 |
xyz |
momentum diffusivity from Louis
|
KPAR |
Ogcm |
m-1 |
tile |
PAR extinction coefficient
|
KPAR |
Orad |
m-1 |
xy |
PAR extinction coefficient
|
KPBL |
Turbulence |
1 |
xy |
pbltop level
|
LAI |
Surface |
1 |
xy |
leaf area index
|
LAI |
Land |
|
|
|
LAI |
Vegdyn |
1 |
tile |
leaf area index
|
LANGM |
Surface |
1 |
xy |
Langmuir number
|
LANGM |
Saltwater |
1 |
tile |
Langmuir number
|
LAS |
Irrad |
W m-2 |
xy |
surface absorbed longwave radiation assuming clear sky and no aerosol
|
LATS |
DynCore |
radians |
xy |
Center latitudes
|
LCOOL |
Surface |
1 |
xy |
Saunders parameter
|
LCOOL |
Saltwater |
1 |
tile |
Saunders parameter
|
LCS |
Irrad |
W m-2 |
xy |
surface absorbed longwave radiation assuming clear sky
|
LFR |
Moist |
km-2 s-1 |
xy |
lightning flash rate
|
LHFX |
Surface |
W m-2 |
xy |
total latent energy flux
|
LHLAND |
Surface |
W m-2 |
xy |
Latent heat flux land
|
LHLAND |
Land |
|
|
|
LHLAND |
Catch |
W m-2 |
tile |
Latent heat flux land
|
LHLAND |
CatchCN |
W m-2 |
tile |
Latent heat flux land
|
LHOBS |
DatmoDyn |
W m-2 |
xy |
Obs. latent heat flux (surface)
|
LHSNOW |
Surface |
W m-2 |
xy |
Latent heat flux snow
|
LHSNOW |
Land |
|
|
|
LHSNOW |
Catch |
W m-2 |
tile |
Latent heat flux snow
|
LHSNOW |
CatchCN |
W m-2 |
tile |
Latent heat flux snow
|
LIDARPMOL |
Satsim |
m-1 sr-1 |
xyz |
calipso molecular attenuated backscatter signal power
|
LIDARPTOT |
Satsim |
m-1 sr-1 |
xyz |
calipso total attenuated backscatter signal power
|
LIDARTAUTOT |
Satsim |
1 |
xyz |
calipso optical thickess integrated from top to level z
|
LIQANMOVE |
Moist |
kg kg-1 s-1 |
xyz |
move2anv source of anvil liq
|
LM50M |
Turbulence |
1 |
xy |
LM at 50 meters
|
LONS |
DynCore |
radians |
xy |
Center longitudes
|
LST |
Surface |
K |
xy |
land surface skin temperature
|
LST |
Landice |
K |
tile |
land surface skin temperature
|
LST |
Land |
|
|
|
LST |
Catch |
K |
tile |
land surface skin temperature
|
LST |
CatchCN |
K |
tile |
land surface skin temperature
|
LS_ARF |
Moist |
1 |
xy |
areal fraction of nonanvil large scale showers
|
LS_PRCP |
Moist |
kg m-2 s-1 |
xy |
nonanvil large scale precipitation
|
LWC |
Moist |
kg m-3 |
xyz |
liquid water content
|
LWC |
Landice |
1 |
tile |
liquid water content in top x m
|
LWCRT |
Turbulence |
K s-1 |
xyz |
cloudy LW radiation tendency used by Lock scheme
|
LWDNSNOW |
Surface |
W m-2 |
xy |
Net longwave snow
|
LWDNSNOW |
Land |
|
|
|
LWDNSNOW |
Catch |
W m-2 |
tile |
Net longwave snow
|
LWDNSNOW |
CatchCN |
W m-2 |
tile |
Net longwave snow
|
LWI |
Gcm |
|
|
|
LWI |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
LWI |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
LWI |
Surface |
1 |
xy |
land(1) water(0) ice(2) flag
|
LWLAND |
Surface |
W m-2 |
xy |
Net longwave land
|
LWLAND |
Land |
|
|
|
LWLAND |
Catch |
W m-2 |
tile |
Net longwave land
|
LWLAND |
CatchCN |
W m-2 |
tile |
Net longwave land
|
LWNDICE |
Surface |
W m-2 |
xy |
sea ice net downward longwave flux
|
LWNDICE |
Saltwater |
W m-2 |
tile |
sea ice net downward longwave flux
|
LWNDSRF |
Surface |
W m-2 |
xy |
surface net downward longwave flux
|
LWNDSRF |
Lake |
W m-2 |
tile |
surface net downward longwave flux
|
LWNDSRF |
Landice |
W m-2 |
tile |
surface net downward longwave flux
|
LWNDSRF |
Land |
|
|
|
LWNDSRF |
Catch |
W m-2 |
tile |
surface net downward longwave flux
|
LWNDSRF |
CatchCN |
W m-2 |
tile |
surface net downward longwave flux
|
LWNDSRF |
Saltwater |
W m-2 |
tile |
surface net downward longwave flux
|
LWNDWTR |
Surface |
W m-2 |
xy |
open water net downward longwave flux
|
LWNDWTR |
Saltwater |
W m-2 |
tile |
open water net downward longwave flux
|
LWP |
Moist |
kg m-2 |
xy |
liquid water path
|
LWS |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
LWS |
Irrad |
W m-2 |
xy |
surface absorbed longwave radiation
|
LWS0 |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
LWS0 |
Irrad |
W m-2 |
xy |
surface absorbed longwave radiation at reference time
|
LWSA |
Irrad |
W m-2 |
xy |
surface absorbed longwave radiation and no aerosol
|
LWUPSNOW |
Surface |
W m-2 |
xy |
Net longwave snow
|
LWUPSNOW |
Land |
|
|
|
LWUPSNOW |
Catch |
W m-2 |
tile |
Net longwave snow
|
LWUPSNOW |
CatchCN |
W m-2 |
tile |
Net longwave snow
|
MASS |
Agcm |
kg m-2 |
xy |
atmospheric mass
|
MCFFLX |
StratChem |
kg s-1 |
xy |
derived CH3CCl3 surface flux
|
MCOSZ |
Solar |
1 |
xy |
mean cosine of the solar zenith angle
|
MDSCLDFRCH2O |
Satsim |
1 |
xy |
modis cloud fraction water mean
|
MDSCLDFRCHI |
Satsim |
1 |
xy |
modis cloud fraction high mean
|
MDSCLDFRCICE |
Satsim |
1 |
xy |
modis cloud fraction ice mean
|
MDSCLDFRCLO |
Satsim |
1 |
xy |
modis cloud fraction low mean
|
MDSCLDFRCMID |
Satsim |
1 |
xy |
modis cloud fraction mid mean
|
MDSCLDFRCTTL |
Satsim |
1 |
xy |
modis cloud fraction total mean
|
MDSCLDFRCWTR |
Satsim |
1 |
xy |
modis cloud fraction water mean
|
MDSCLDSZH20 |
Satsim |
1 |
xy |
modis cloud particle size water mean
|
MDSCLDSZICE |
Satsim |
1 |
xy |
modis cloud particle size ice mean
|
MDSCLDSZWTR |
Satsim |
1 |
xy |
modis cloud particle size water mean
|
MDSCLDTOPPS |
Satsim |
1 |
xy |
modis cloud top pressure total mean
|
MDSH2OPATH |
Satsim |
1 |
xy |
modis liquid water path mean
|
MDSICEPATH |
Satsim |
1 |
xy |
modis ice water path mean
|
MDSOPTHCKH2O |
Satsim |
1 |
xy |
modis optical thickness water mean
|
MDSOPTHCKH2OLG |
Satsim |
1 |
xy |
modis optical thickness water logmean
|
MDSOPTHCKICE |
Satsim |
1 |
xy |
modis optical thickness ice mean
|
MDSOPTHCKICELG |
Satsim |
1 |
xy |
modis optical thickness ice logmean
|
MDSOPTHCKTTL |
Satsim |
1 |
xy |
modis optical thickness total mean
|
MDSOPTHCKTTLLG |
Satsim |
1 |
xy |
modis optical thickness total logmean
|
MDSOPTHCKWTR |
Satsim |
1 |
xy |
modis optical thickness water mean
|
MDSOPTHCKWTRLG |
Satsim |
1 |
xy |
modis optical thickness water logmean
|
MDSTAUPRSHIST11 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 1 1
|
MDSTAUPRSHIST12 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 1 2
|
MDSTAUPRSHIST13 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 1 3
|
MDSTAUPRSHIST14 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 1 4
|
MDSTAUPRSHIST15 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 1 5
|
MDSTAUPRSHIST16 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 1 6
|
MDSTAUPRSHIST17 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 1 7
|
MDSTAUPRSHIST21 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 2 1
|
MDSTAUPRSHIST22 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 2 2
|
MDSTAUPRSHIST23 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 2 3
|
MDSTAUPRSHIST24 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 2 4
|
MDSTAUPRSHIST25 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 2 5
|
MDSTAUPRSHIST26 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 2 6
|
MDSTAUPRSHIST27 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 2 7
|
MDSTAUPRSHIST31 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 3 1
|
MDSTAUPRSHIST32 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 3 2
|
MDSTAUPRSHIST33 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 3 3
|
MDSTAUPRSHIST34 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 3 4
|
MDSTAUPRSHIST35 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 3 5
|
MDSTAUPRSHIST36 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 3 6
|
MDSTAUPRSHIST37 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 3 7
|
MDSTAUPRSHIST41 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 4 1
|
MDSTAUPRSHIST42 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 4 2
|
MDSTAUPRSHIST43 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 4 3
|
MDSTAUPRSHIST44 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 4 4
|
MDSTAUPRSHIST45 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 4 5
|
MDSTAUPRSHIST46 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 4 6
|
MDSTAUPRSHIST47 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 4 7
|
MDSTAUPRSHIST51 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 5 1
|
MDSTAUPRSHIST52 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 5 2
|
MDSTAUPRSHIST53 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 5 3
|
MDSTAUPRSHIST54 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 5 4
|
MDSTAUPRSHIST55 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 5 5
|
MDSTAUPRSHIST56 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 5 6
|
MDSTAUPRSHIST57 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 5 7
|
MDSTAUPRSHIST61 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 6 1
|
MDSTAUPRSHIST62 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 6 2
|
MDSTAUPRSHIST63 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 6 3
|
MDSTAUPRSHIST64 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 6 4
|
MDSTAUPRSHIST65 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 6 5
|
MDSTAUPRSHIST66 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 6 6
|
MDSTAUPRSHIST67 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 6 7
|
MDSTAUPRSHIST71 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 7 1
|
MDSTAUPRSHIST72 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 7 2
|
MDSTAUPRSHIST73 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 7 3
|
MDSTAUPRSHIST74 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 7 4
|
MDSTAUPRSHIST75 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 7 5
|
MDSTAUPRSHIST76 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 7 6
|
MDSTAUPRSHIST77 |
Satsim |
1 |
xy |
modis tau pressure histogram bin 7 7
|
MDSWTRPATH |
Satsim |
1 |
xy |
modis liquid water path mean
|
MELT |
Moist |
Kg Kg-1 s-1 |
xyz |
Melting of cloud ice
|
MELTB |
Surface |
m s-1 |
xy |
basal ice melt
|
MELTB |
Saltwater |
m s-1 |
tile |
basal ice melt
|
MELTL |
Surface |
m s-1 |
xy |
lateral ice melt
|
MELTL |
Saltwater |
m s-1 |
tile |
lateral ice melt
|
MELTQ |
DataSeaIce |
W m-2 |
xy |
heat of melting or freezing
|
MELTS |
Surface |
m s-1 |
xy |
snow melt
|
MELTS |
Saltwater |
m s-1 |
tile |
snow melt
|
MELTT |
Surface |
m s-1 |
xy |
top ice melt
|
MELTT |
Saltwater |
m s-1 |
tile |
top ice melt
|
MELTWTR |
Landice |
kg m-2 s-1 |
tile |
melt water production
|
MELTWTRCONT |
Landice |
kg m-2 |
tile |
melt water content
|
MFX |
FVdycore |
Pa m+2 s-1 |
xyz |
pressure weighted eastward wind
|
MFX |
DynCore |
Pa m+2 s-1 |
xyz |
pressure weighted accumulated eastward mass flux
|
MFX |
ARIESg3 |
Pa m+2 s-1 |
xyz |
pressure weighted eastward wind
|
MFX_A |
FVdycore |
Pa m+2 s-1 |
xyz |
zonal mass flux
|
MFX_A |
ARIESg3 |
Pa m+2 s-1 |
xyz |
zonal mass flux
|
MFX_UR |
FVdycore |
Pa m+2 s-1 |
xyz |
pressure weighted eastward wind unremapped
|
MFX_UR |
ARIESg3 |
Pa m+2 s-1 |
xyz |
pressure weighted eastward wind unremapped
|
MFY |
FVdycore |
Pa m+2 s-1 |
xyz |
pressure weighted northward wind
|
MFY |
DynCore |
Pa m+2 s-1 |
xyz |
pressure weighted accumulated northward mass flux
|
MFY |
ARIESg3 |
Pa m+2 s-1 |
xyz |
pressure weighted northward wind
|
MFY_A |
FVdycore |
Pa m+2 s-1 |
xyz |
meridional mass flux
|
MFY_A |
ARIESg3 |
Pa m+2 s-1 |
xyz |
meridional mass flux
|
MFY_UR |
FVdycore |
Pa m+2 s-1 |
xyz |
pressure weighted northward wind unremapped
|
MFY_UR |
ARIESg3 |
Pa m+2 s-1 |
xyz |
pressure weighted northward wind unremapped
|
MFZ |
FVdycore |
kg m-2 s-1 |
xyz |
vertical mass flux
|
MFZ |
DynCore |
kg m-2 s-1 |
xyz |
vertical mass flux
|
MFZ |
ARIESg3 |
kg m-2 s-1 |
xyz |
vertical mass flux
|
MISRCLDAREA |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ0 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ10000 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ12000 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ1250 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ14000 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ16000 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ1750 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ18000 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ2250 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ250 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ2750 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ3500 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ4500 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ6000 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ750 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ8000 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRLYRTP0 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP10000 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP12000 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP1250 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP14000 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP16000 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP1750 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP18000 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP2250 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP250 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP2750 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP3500 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP4500 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP6000 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP750 |
Satsim |
1 |
xy |
MISR layer top
|
MISRLYRTP8000 |
Satsim |
1 |
xy |
MISR layer top
|
MISRMNCLDTP |
Satsim |
m |
xy |
MISR mead cloud top height
|
MLD |
Gcm |
|
|
|
MLD |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
MOM_3D_MASK |
Gcm |
|
|
|
MOM_3D_MASK |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
MOQ10M |
Lake |
kg kg-1 |
tile |
humidity 10m wind from MO sfc
|
MOQ10M |
Landice |
kg kg-1 |
tile |
humidity 10m wind from MO sfc
|
MOQ10M |
Land |
|
|
|
MOQ10M |
Catch |
kg kg-1 |
tile |
humidity 10m wind from MO sfc
|
MOQ10M |
CatchCN |
kg kg-1 |
tile |
humidity 10m wind from MO sfc
|
MOQ10M |
Saltwater |
kg kg-1 |
tile |
humidity 10m wind from MO sfc
|
MOQ2M |
Lake |
kg kg-1 |
tile |
humidity 2m wind from MO sfc
|
MOQ2M |
Landice |
kg kg-1 |
tile |
humidity 2m wind from MO sfc
|
MOQ2M |
Land |
|
|
|
MOQ2M |
Catch |
kg kg-1 |
tile |
humidity 2m wind from MO sfc
|
MOQ2M |
CatchCN |
kg kg-1 |
tile |
humidity 2m wind from MO sfc
|
MOQ2M |
Saltwater |
kg kg-1 |
tile |
humidity 2m wind from MO sfc
|
MOT10M |
Lake |
K |
tile |
temperature 10m wind from MO sfc
|
MOT10M |
Landice |
K |
tile |
temperature 10m wind from MO sfc
|
MOT10M |
Land |
|
|
|
MOT10M |
Catch |
K |
tile |
temperature 10m wind from MO sfc
|
MOT10M |
CatchCN |
K |
tile |
temperature 10m wind from MO sfc
|
MOT10M |
Saltwater |
K |
tile |
temperature 10m wind from MO sfc
|
MOT2M |
Lake |
K |
tile |
temperature 2m wind from MO sfc
|
MOT2M |
Landice |
K |
tile |
temperature 2m wind from MO sfc
|
MOT2M |
Land |
|
|
|
MOT2M |
Catch |
K |
tile |
temperature 2m wind from MO sfc
|
MOT2M |
CatchCN |
K |
tile |
temperature 2m wind from MO sfc
|
MOT2M |
Saltwater |
K |
tile |
temperature 2m wind from MO sfc
|
MOU10M |
Lake |
m s-1 |
tile |
zonal 10m wind from MO sfc
|
MOU10M |
Landice |
m s-1 |
tile |
zonal 10m wind from MO sfc
|
MOU10M |
Land |
|
|
|
MOU10M |
Catch |
m s-1 |
tile |
zonal 10m wind from MO sfc
|
MOU10M |
CatchCN |
m s-1 |
tile |
zonal 10m wind from MO sfc
|
MOU10M |
Saltwater |
m s-1 |
tile |
zonal 10m wind from MO sfc
|
MOU2M |
Lake |
m s-1 |
tile |
zonal 2m wind from MO sfc
|
MOU2M |
Landice |
m s-1 |
tile |
zonal 2m wind from MO sfc
|
MOU2M |
Land |
|
|
|
MOU2M |
Catch |
m s-1 |
tile |
zonal 2m wind from MO sfc
|
MOU2M |
CatchCN |
m s-1 |
tile |
zonal 2m wind from MO sfc
|
MOU2M |
Saltwater |
m s-1 |
tile |
zonal 2m wind from MO sfc
|
MOU50M |
Lake |
m s-1 |
tile |
zonal 50m wind from MO sfc
|
MOU50M |
Landice |
m s-1 |
tile |
zonal 50m wind from MO sfc
|
MOU50M |
Land |
|
|
|
MOU50M |
Catch |
m s-1 |
tile |
zonal 50m wind from MO sfc
|
MOU50M |
CatchCN |
m s-1 |
tile |
zonal 50m wind from MO sfc
|
MOU50M |
Saltwater |
m s-1 |
tile |
zonal 50m wind from MO sfc
|
MOV10M |
Lake |
m s-1 |
tile |
meridional 10m wind from MO sfc
|
MOV10M |
Landice |
m s-1 |
tile |
meridional 10m wind from MO sfc
|
MOV10M |
Land |
|
|
|
MOV10M |
Catch |
m s-1 |
tile |
meridional 10m wind from MO sfc
|
MOV10M |
CatchCN |
m s-1 |
tile |
meridional 10m wind from MO sfc
|
MOV10M |
Saltwater |
m s-1 |
tile |
meridional 10m wind from MO sfc
|
MOV2M |
Lake |
m s-1 |
tile |
meridional 2m wind from MO sfc
|
MOV2M |
Landice |
m s-1 |
tile |
meridional 2m wind from MO sfc
|
MOV2M |
Land |
|
|
|
MOV2M |
Catch |
m s-1 |
tile |
meridional 2m wind from MO sfc
|
MOV2M |
CatchCN |
m s-1 |
tile |
meridional 2m wind from MO sfc
|
MOV2M |
Saltwater |
m s-1 |
tile |
meridional 2m wind from MO sfc
|
MOV50M |
Lake |
m s-1 |
tile |
meridional 50m wind from MO sfc
|
MOV50M |
Landice |
m s-1 |
tile |
meridional 50m wind from MO sfc
|
MOV50M |
Land |
|
|
|
MOV50M |
Catch |
m s-1 |
tile |
meridional 50m wind from MO sfc
|
MOV50M |
CatchCN |
m s-1 |
tile |
meridional 50m wind from MO sfc
|
MOV50M |
Saltwater |
m s-1 |
tile |
meridional 50m wind from MO sfc
|
MTRI |
Moist |
X s-1 |
xyz |
tracer tendencies due to moist
|
MX |
DynCore |
Pa m+2 s-1 |
xyz |
pressure weighted accumulated eastward mass flux
|
MXDIAM |
Moist |
m |
xy |
diameter of largest RAS plume
|
MY |
DynCore |
Pa m+2 s-1 |
xyz |
pressure weighted accumulated northward mass flux
|
N2O5_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change N2O5
|
N2OFLX |
StratChem |
kg s-1 |
xy |
derived N2O surface flux
|
N2O_LOSS |
PChem |
mol mol-1 s-1 |
xyz |
tendency of nitrous oxide volume mixing ratio due to loss
|
N2O_PROD |
PChem |
mol mol-1 s-1 |
xyz |
tendency of nitrous oxide volume mixing ratio due to production
|
N2O_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change N2O
|
NATSAD |
StratChem |
m-1 |
xyz |
surface area density nitric acid trihydrate PSC
|
NCCOLUMN |
Moist |
m-2 |
xy |
Vertically integrated NCPI
|
NCN_PRCP |
ChemEnv |
kg m-2 s-1 |
xy |
Non-convective precipitation
|
NCPI_TOP |
Moist |
m-3 |
xy |
Grid-averaged NCPI at cloud top
|
NCPI_VOL |
Moist |
m-3 |
xyz |
particle number for ice cloud
|
NCPL_TOP |
Moist |
m-3 |
xy |
Grid-averaged NCPL at cloud top
|
NCPL_VOL |
Moist |
m-3 |
xyz |
particle number for liquid cloud
|
NDCOLUMN |
Moist |
m-2 |
xy |
Vertically integrated NCPL
|
NH3CMASS |
NI |
kg m-3 |
xy |
Ammonia Column Mass Density ENSEMBLE
|
NH3CONC |
NI |
kg m-3 |
xyz |
Ammonia Mass Concentration ENSEMBLE
|
NH3DP |
NI |
kg m-2 s-1 |
xy |
Ammonia Dry Deposition ENSEMBLE
|
NH3EM |
NI |
kg m-2 s-1 |
xy |
Ammonia Emission ENSEMBLE
|
NH3MASS |
NI |
kgkg |
xyz |
Ammonia Mass Mixing Ratio ENSEMBLE
|
NH3SMASS |
NI |
kg m-3 |
xy |
Ammonia Surface Mass Concentration ENSEMBLE
|
NH3SV |
NI |
kg m-2 s-1 |
xy |
Ammonia Convective Scavenging ENSEMBLE
|
NH3WT |
NI |
kg m-2 s-1 |
xy |
Ammonia Wet Deposition ENSEMBLE
|
NH4CMASS |
NI |
kg m-3 |
xy |
Ammonium Column Mass Density ENSEMBLE
|
NH4CONC |
NI |
kg m-3 |
xyz |
Ammonium Mass Concentration ENSEMBLE
|
NH4DP |
NI |
kg m-2 s-1 |
xy |
Ammonium Dry Deposition ENSEMBLE
|
NH4MASS |
NI |
kgkg |
xyz |
Ammonium Aerosol Mass Mixing Ratio ENSEMBLE
|
NH4SD |
NI |
kg m-2 s-1 |
xy |
Ammonium Settling ENSEMBLE
|
NH4SMASS |
NI |
kg m-3 |
xy |
Ammonium Surface Mass Concentration ENSEMBLE
|
NH4SV |
NI |
kg m-2 s-1 |
xy |
Ammonium Convective Scavenging ENSEMBLE
|
NH4WT |
NI |
kg m-2 s-1 |
xy |
Ammonium Wet Deposition ENSEMBLE
|
NHET_DEP |
Moist |
m-3 |
xyz |
Deposition IN
|
NHET_DHF |
Moist |
m-3 |
xyz |
Deliquesced IN
|
NHET_IMM |
Moist |
m-3 |
xyz |
Immersion IN
|
NHET_NUC |
Moist |
m-3 |
xyz |
Nucleated ice crystal concentration by het freezing (grid avg)
|
NIANA |
GAAS |
kgkg |
xyz |
Nitrate Mixing Ratio Analysis
|
NIANGSTR |
NI |
1 |
xy |
Nitrate Angstrom parameter [470-870 nm] ENSEMBLE
|
NICMASS |
NI |
kg m-2 |
xy |
Nitrate Column Mass Density ENSEMBLE
|
NICMASS25 |
NI |
kg m-2 |
xy |
Nitrate Column Mass Density [PM2.5] ENSEMBLE
|
NICONC |
NI |
kg m-3 |
xyz |
Nitrate Mass Concentration ENSEMBLE
|
NICONC25 |
NI |
kg m-3 |
xyz |
Nitrate Mass Concentration [PM2.5] ENSEMBLE
|
NIDP001 |
NI |
kg m-2 s-1 |
xy |
Nitrate Dry Deposition Bin 001 ENSEMBLE
|
NIDP002 |
NI |
kg m-2 s-1 |
xy |
Nitrate Dry Deposition Bin 002 ENSEMBLE
|
NIDP003 |
NI |
kg m-2 s-1 |
xy |
Nitrate Dry Deposition Bin 003 ENSEMBLE
|
NIEXTCOEF |
NI |
m-1 |
xyz |
Nitrate Extinction Coefficient [550 nm] ENSEMBLE
|
NIEXTT25 |
NI |
1 |
xy |
Nitrate Extinction AOT [550 nm] - PM 2.5 um ENSEMBLE
|
NIEXTTAU |
NI |
1 |
xy |
Nitrate Extinction AOT [550 nm] ENSEMBLE
|
NIEXTTFM |
NI |
1 |
xy |
Nitrate Extinction AOT [550 nm] - PM 1.0 um ENSEMBLE
|
NIFLUXU |
NI |
kg m-1 s-1 |
xy |
Nitrate column u-wind mass flux ENSEMBLE
|
NIFLUXV |
NI |
kg m-1 s-1 |
xy |
Nitrate column v-wind mass flux ENSEMBLE
|
NIHT001 |
NI |
kg m-2 s-1 |
xy |
Nitrate Production from Het Chem Bin 001 ENSEMBLE
|
NIHT002 |
NI |
kg m-2 s-1 |
xy |
Nitrate Production from Het Chem Bin 002 ENSEMBLE
|
NIHT003 |
NI |
kg m-2 s-1 |
xy |
Nitrate Production from Het Chem Bin 003 ENSEMBLE
|
NIINC |
GAAS |
kgkg |
xyz |
Nitrate Mixing Ratio Analysis Increments
|
NIMASS |
NI |
kgkg |
xyz |
Nitrate Mass Mixing Ratio ENSEMBLE
|
NIMASS25 |
NI |
kgkg |
xyz |
Nitrate Mass Mixing Ratio [PM2.5] ENSEMBLE
|
NIPNH3AQ |
NI |
kg m-2 s-1 |
xy |
Ammonia Change from Aqueous Chemistry ENSEMBLE
|
NIPNH4AQ |
NI |
kg m-2 s-1 |
xy |
Ammonium Production from Aqueous Chemistry ENSEMBLE
|
NIPNO3AQ |
NI |
kg m-2 s-1 |
xy |
Nitrate Production from Aqueous Chemistry ENSEMBLE
|
NISCACOEF |
NI |
m-1 |
xyz |
Nitrate Scattering Coefficient [550 nm] ENSEMBLE
|
NISCAT25 |
NI |
1 |
xy |
Nitrate Scattering AOT [550 nm] - PM 2.5 um ENSEMBLE
|
NISCATAU |
NI |
1 |
xy |
Nitrate Scattering AOT [550 nm] ENSEMBLE
|
NISCATFM |
NI |
1 |
xy |
Nitrate Scattering AOT [550 nm] - PM 1.0 um ENSEMBLE
|
NISD001 |
NI |
kg m-2 s-1 |
xy |
Nitrate Sedimentation Bin 001 ENSEMBLE
|
NISD002 |
NI |
kg m-2 s-1 |
xy |
Nitrate Sedimentation Bin 002 ENSEMBLE
|
NISD003 |
NI |
kg m-2 s-1 |
xy |
Nitrate Sedimentation Bin 003 ENSEMBLE
|
NISMASS |
NI |
kg m-3 |
xy |
Nitrate Surface Mass Concentration ENSEMBLE
|
NISMASS25 |
NI |
kg m-3 |
xy |
Nitrate Surface Mass Concentration [PM2.5] ENSEMBLE
|
NISV001 |
NI |
kg m-2 s-1 |
xy |
Nitrate Convective Scavenging Bin 001 ENSEMBLE
|
NISV002 |
NI |
kg m-2 s-1 |
xy |
Nitrate Convective Scavenging Bin 002 ENSEMBLE
|
NISV003 |
NI |
kg m-2 s-1 |
xy |
Nitrate Convective Scavenging Bin 003 ENSEMBLE
|
NITY |
Surface |
1 |
xy |
NCEP vegetation type
|
NIWT001 |
NI |
kg m-2 s-1 |
xy |
Nitrate Wet Deposition Bin 001 ENSEMBLE
|
NIWT002 |
NI |
kg m-2 s-1 |
xy |
Nitrate Wet Deposition Bin 002 ENSEMBLE
|
NIWT003 |
NI |
kg m-2 s-1 |
xy |
Nitrate Wet Deposition Bin 003 ENSEMBLE
|
NLIM_NUC |
Moist |
m-3 |
xyz |
Limiting IN concentration allowing hom freezing
|
NONDUST_DEP |
Moist |
m-3 |
xyz |
Nondust deposition IN
|
NONDUST_IMM |
Moist |
m-3 |
xyz |
Nondust Immersion IN
|
NOX_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change NOX
|
NRAIN |
Moist |
m-3 |
xyz |
Rain number concentration
|
NSNOW |
Moist |
m-3 |
xyz |
Snow number concentration
|
O3 |
PChem |
kg kg-1 |
xyz |
ozone mass mixing ratio
|
O3 |
O3 |
kg kg-1 |
xyz |
Ozone mass mixing ratio
|
O3 |
GMICHEM |
kg kg-1 |
xyz |
ozone mass mixing ratio
|
O3 |
StratChem |
kg kg-1 |
xyz |
ozone mass mixing ratio
|
O3DDP |
O3 |
kg m-2 s-1 |
xy |
Ozone dry deposition
|
O3DDV |
O3 |
m s-1 |
xy |
Dry deposition speed
|
O3PPMV |
Gcm |
|
|
|
O3PPMV |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
O3PPMV |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
O3PPMV |
PChem |
ppmv |
xyz |
ozone volume mixing ratio
|
O3PPMV |
O3 |
ppmv |
xyz |
Ozone
|
O3PPMV |
GMICHEM |
ppmv |
xyz |
ozone mass mixing ratio in ppm
|
O3PPMV |
StratChem |
ppmv |
xyz |
ozone volume mixing ratio
|
O3PPMVBKG |
mkiau |
ppmv |
xyz |
ozone volume mixing ratio of background
|
O3TOT |
O3 |
Dobsons |
xy |
Total ozone
|
OCANA |
GAAS |
kgkg |
xyz |
Organic Carbon Mixing Ratio Analysis
|
OCANGSTR |
OC |
1 |
xy |
Organic Carbon Angstrom parameter [470-870 nm] ENSEMBLE
|
OCANGSTRanth |
OC |
1 |
xy |
Organic Carbon Angstrom parameter [470-870 nm] anth
|
OCANGSTRbbgl |
OC |
1 |
xy |
Organic Carbon Angstrom parameter [470-870 nm] bbgl
|
OCANGSTRbfri |
OC |
1 |
xy |
Organic Carbon Angstrom parameter [470-870 nm] bfri
|
OCANGSTRbiob |
OC |
1 |
xy |
Organic Carbon Angstrom parameter [470-870 nm] biob
|
OCANGSTRbmon |
OC |
1 |
xy |
Organic Carbon Angstrom parameter [470-870 nm] bmon
|
OCANGSTRbsat |
OC |
1 |
xy |
Organic Carbon Angstrom parameter [470-870 nm] bsat
|
OCANGSTRbsun |
OC |
1 |
xy |
Organic Carbon Angstrom parameter [470-870 nm] bsun
|
OCANGSTRbthu |
OC |
1 |
xy |
Organic Carbon Angstrom parameter [470-870 nm] bthu
|
OCANGSTRbtue |
OC |
1 |
xy |
Organic Carbon Angstrom parameter [470-870 nm] btue
|
OCANGSTRbwed |
OC |
1 |
xy |
Organic Carbon Angstrom parameter [470-870 nm] bwed
|
OCCMASS |
OC |
kg m-2 |
xy |
Organic Carbon Column Mass Density ENSEMBLE
|
OCCMASSanth |
OC |
kg m-2 |
xy |
Organic Carbon Column Mass Density anth
|
OCCMASSbbgl |
OC |
kg m-2 |
xy |
Organic Carbon Column Mass Density bbgl
|
OCCMASSbfri |
OC |
kg m-2 |
xy |
Organic Carbon Column Mass Density bfri
|
OCCMASSbiob |
OC |
kg m-2 |
xy |
Organic Carbon Column Mass Density biob
|
OCCMASSbmon |
OC |
kg m-2 |
xy |
Organic Carbon Column Mass Density bmon
|
OCCMASSbsat |
OC |
kg m-2 |
xy |
Organic Carbon Column Mass Density bsat
|
OCCMASSbsun |
OC |
kg m-2 |
xy |
Organic Carbon Column Mass Density bsun
|
OCCMASSbthu |
OC |
kg m-2 |
xy |
Organic Carbon Column Mass Density bthu
|
OCCMASSbtue |
OC |
kg m-2 |
xy |
Organic Carbon Column Mass Density btue
|
OCCMASSbwed |
OC |
kg m-2 |
xy |
Organic Carbon Column Mass Density bwed
|
OCCONC |
OC |
kg m-3 |
xyz |
Organic Carbon Mass Concentration ENSEMBLE
|
OCCONCanth |
OC |
kg m-3 |
xyz |
Organic Carbon Mass Concentration anth
|
OCCONCbbgl |
OC |
kg m-3 |
xyz |
Organic Carbon Mass Concentration bbgl
|
OCCONCbfri |
OC |
kg m-3 |
xyz |
Organic Carbon Mass Concentration bfri
|
OCCONCbiob |
OC |
kg m-3 |
xyz |
Organic Carbon Mass Concentration biob
|
OCCONCbmon |
OC |
kg m-3 |
xyz |
Organic Carbon Mass Concentration bmon
|
OCCONCbsat |
OC |
kg m-3 |
xyz |
Organic Carbon Mass Concentration bsat
|
OCCONCbsun |
OC |
kg m-3 |
xyz |
Organic Carbon Mass Concentration bsun
|
OCCONCbthu |
OC |
kg m-3 |
xyz |
Organic Carbon Mass Concentration bthu
|
OCCONCbtue |
OC |
kg m-3 |
xyz |
Organic Carbon Mass Concentration btue
|
OCCONCbwed |
OC |
kg m-3 |
xyz |
Organic Carbon Mass Concentration bwed
|
OCDP |
Saltwater |
kg m-2 s-1 |
tile |
Organic Carbon Dry Deposition
|
OCDP001 |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 001 ENSEMBLE
|
OCDP001anth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 001 anth
|
OCDP001bbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 001 bbgl
|
OCDP001bfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 001 bfri
|
OCDP001biob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 001 biob
|
OCDP001bmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 001 bmon
|
OCDP001bsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 001 bsat
|
OCDP001bsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 001 bsun
|
OCDP001bthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 001 bthu
|
OCDP001btue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 001 btue
|
OCDP001bwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 001 bwed
|
OCDP002 |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 002 ENSEMBLE
|
OCDP002anth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 002 anth
|
OCDP002bbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 002 bbgl
|
OCDP002bfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 002 bfri
|
OCDP002biob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 002 biob
|
OCDP002bmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 002 bmon
|
OCDP002bsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 002 bsat
|
OCDP002bsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 002 bsun
|
OCDP002bthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 002 bthu
|
OCDP002btue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 002 btue
|
OCDP002bwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Dry Deposition Bin 002 bwed
|
OCEANCOLOR |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
OCEM001 |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 001 ENSEMBLE
|
OCEM001anth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 001 anth
|
OCEM001bbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 001 bbgl
|
OCEM001bfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 001 bfri
|
OCEM001biob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 001 biob
|
OCEM001bmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 001 bmon
|
OCEM001bsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 001 bsat
|
OCEM001bsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 001 bsun
|
OCEM001bthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 001 bthu
|
OCEM001btue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 001 btue
|
OCEM001bwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 001 bwed
|
OCEM002 |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 002 ENSEMBLE
|
OCEM002anth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 002 anth
|
OCEM002bbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 002 bbgl
|
OCEM002bfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 002 bfri
|
OCEM002biob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 002 biob
|
OCEM002bmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 002 bmon
|
OCEM002bsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 002 bsat
|
OCEM002bsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 002 bsun
|
OCEM002bthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 002 bthu
|
OCEM002btue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 002 btue
|
OCEM002bwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Emission Bin 002 bwed
|
OCEMAN |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Anthropogenic Emissions ENSEMBLE
|
OCEMANanth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Anthropogenic Emissions anth
|
OCEMANbbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Anthropogenic Emissions bbgl
|
OCEMANbfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Anthropogenic Emissions bfri
|
OCEMANbiob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Anthropogenic Emissions biob
|
OCEMANbmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Anthropogenic Emissions bmon
|
OCEMANbsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Anthropogenic Emissions bsat
|
OCEMANbsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Anthropogenic Emissions bsun
|
OCEMANbthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Anthropogenic Emissions bthu
|
OCEMANbtue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Anthropogenic Emissions btue
|
OCEMANbwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Anthropogenic Emissions bwed
|
OCEMBB |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biomass Burning Emissions ENSEMBLE
|
OCEMBBanth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biomass Burning Emissions anth
|
OCEMBBbbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biomass Burning Emissions bbgl
|
OCEMBBbfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biomass Burning Emissions bfri
|
OCEMBBbiob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biomass Burning Emissions biob
|
OCEMBBbmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biomass Burning Emissions bmon
|
OCEMBBbsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biomass Burning Emissions bsat
|
OCEMBBbsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biomass Burning Emissions bsun
|
OCEMBBbthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biomass Burning Emissions bthu
|
OCEMBBbtue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biomass Burning Emissions btue
|
OCEMBBbwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biomass Burning Emissions bwed
|
OCEMBF |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biofuel Emissions ENSEMBLE
|
OCEMBFanth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biofuel Emissions anth
|
OCEMBFbbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biofuel Emissions bbgl
|
OCEMBFbfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biofuel Emissions bfri
|
OCEMBFbiob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biofuel Emissions biob
|
OCEMBFbmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biofuel Emissions bmon
|
OCEMBFbsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biofuel Emissions bsat
|
OCEMBFbsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biofuel Emissions bsun
|
OCEMBFbthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biofuel Emissions bthu
|
OCEMBFbtue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biofuel Emissions btue
|
OCEMBFbwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biofuel Emissions bwed
|
OCEMBG |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biogenic Emissions ENSEMBLE
|
OCEMBGanth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biogenic Emissions anth
|
OCEMBGbbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biogenic Emissions bbgl
|
OCEMBGbfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biogenic Emissions bfri
|
OCEMBGbiob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biogenic Emissions biob
|
OCEMBGbmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biogenic Emissions bmon
|
OCEMBGbsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biogenic Emissions bsat
|
OCEMBGbsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biogenic Emissions bsun
|
OCEMBGbthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biogenic Emissions bthu
|
OCEMBGbtue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biogenic Emissions btue
|
OCEMBGbwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Biogenic Emissions bwed
|
OCEXTCOEF |
OC |
m-1 |
xyz |
Organic Carbon Ext. Coefficient [550 nm] ENSEMBLE
|
OCEXTCOEFanth |
OC |
m-1 |
xyz |
Organic Carbon Ext. Coefficient [550 nm] anth
|
OCEXTCOEFbbgl |
OC |
m-1 |
xyz |
Organic Carbon Ext. Coefficient [550 nm] bbgl
|
OCEXTCOEFbfri |
OC |
m-1 |
xyz |
Organic Carbon Ext. Coefficient [550 nm] bfri
|
OCEXTCOEFbiob |
OC |
m-1 |
xyz |
Organic Carbon Ext. Coefficient [550 nm] biob
|
OCEXTCOEFbmon |
OC |
m-1 |
xyz |
Organic Carbon Ext. Coefficient [550 nm] bmon
|
OCEXTCOEFbsat |
OC |
m-1 |
xyz |
Organic Carbon Ext. Coefficient [550 nm] bsat
|
OCEXTCOEFbsun |
OC |
m-1 |
xyz |
Organic Carbon Ext. Coefficient [550 nm] bsun
|
OCEXTCOEFbthu |
OC |
m-1 |
xyz |
Organic Carbon Ext. Coefficient [550 nm] bthu
|
OCEXTCOEFbtue |
OC |
m-1 |
xyz |
Organic Carbon Ext. Coefficient [550 nm] btue
|
OCEXTCOEFbwed |
OC |
m-1 |
xyz |
Organic Carbon Ext. Coefficient [550 nm] bwed
|
OCEXTTAU |
OC |
1 |
xy |
Organic Carbon Extinction AOT [550 nm] ENSEMBLE
|
OCEXTTAUanth |
OC |
1 |
xy |
Organic Carbon Extinction AOT [550 nm] anth
|
OCEXTTAUbbgl |
OC |
1 |
xy |
Organic Carbon Extinction AOT [550 nm] bbgl
|
OCEXTTAUbfri |
OC |
1 |
xy |
Organic Carbon Extinction AOT [550 nm] bfri
|
OCEXTTAUbiob |
OC |
1 |
xy |
Organic Carbon Extinction AOT [550 nm] biob
|
OCEXTTAUbmon |
OC |
1 |
xy |
Organic Carbon Extinction AOT [550 nm] bmon
|
OCEXTTAUbsat |
OC |
1 |
xy |
Organic Carbon Extinction AOT [550 nm] bsat
|
OCEXTTAUbsun |
OC |
1 |
xy |
Organic Carbon Extinction AOT [550 nm] bsun
|
OCEXTTAUbthu |
OC |
1 |
xy |
Organic Carbon Extinction AOT [550 nm] bthu
|
OCEXTTAUbtue |
OC |
1 |
xy |
Organic Carbon Extinction AOT [550 nm] btue
|
OCEXTTAUbwed |
OC |
1 |
xy |
Organic Carbon Extinction AOT [550 nm] bwed
|
OCFLUXU |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column u-wind mass flux ENSEMBLE
|
OCFLUXUanth |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column u-wind mass flux anth
|
OCFLUXUbbgl |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column u-wind mass flux bbgl
|
OCFLUXUbfri |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column u-wind mass flux bfri
|
OCFLUXUbiob |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column u-wind mass flux biob
|
OCFLUXUbmon |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column u-wind mass flux bmon
|
OCFLUXUbsat |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column u-wind mass flux bsat
|
OCFLUXUbsun |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column u-wind mass flux bsun
|
OCFLUXUbthu |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column u-wind mass flux bthu
|
OCFLUXUbtue |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column u-wind mass flux btue
|
OCFLUXUbwed |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column u-wind mass flux bwed
|
OCFLUXV |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column v-wind mass flux ENSEMBLE
|
OCFLUXVanth |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column v-wind mass flux anth
|
OCFLUXVbbgl |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column v-wind mass flux bbgl
|
OCFLUXVbfri |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column v-wind mass flux bfri
|
OCFLUXVbiob |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column v-wind mass flux biob
|
OCFLUXVbmon |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column v-wind mass flux bmon
|
OCFLUXVbsat |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column v-wind mass flux bsat
|
OCFLUXVbsun |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column v-wind mass flux bsun
|
OCFLUXVbthu |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column v-wind mass flux bthu
|
OCFLUXVbtue |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column v-wind mass flux btue
|
OCFLUXVbwed |
OC |
kg m-1 s-1 |
xy |
Organic Carbon column v-wind mass flux bwed
|
OCHYGRO |
GMICHEM |
1 |
xyz |
hygroscopic growth of organic carbon
|
OCHYPHIL |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Hydrophobic to Hydrophilic ENSEMBLE
|
OCHYPHILanth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Hydrophobic to Hydrophilic anth
|
OCHYPHILbbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Hydrophobic to Hydrophilic bbgl
|
OCHYPHILbfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Hydrophobic to Hydrophilic bfri
|
OCHYPHILbiob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Hydrophobic to Hydrophilic biob
|
OCHYPHILbmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Hydrophobic to Hydrophilic bmon
|
OCHYPHILbsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Hydrophobic to Hydrophilic bsat
|
OCHYPHILbsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Hydrophobic to Hydrophilic bsun
|
OCHYPHILbthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Hydrophobic to Hydrophilic bthu
|
OCHYPHILbtue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Hydrophobic to Hydrophilic btue
|
OCHYPHILbwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Hydrophobic to Hydrophilic bwed
|
OCINC |
GAAS |
kgkg |
xyz |
Organic Carbon Mixing Ratio Analysis Increments
|
OCLO_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change OCLO
|
OCMASS |
OC |
kg kg-1 |
xyz |
Organic Carbon Mass Mixing Ratio ENSEMBLE
|
OCMASSanth |
OC |
kg kg-1 |
xyz |
Organic Carbon Mass Mixing Ratio anth
|
OCMASSbbgl |
OC |
kg kg-1 |
xyz |
Organic Carbon Mass Mixing Ratio bbgl
|
OCMASSbfri |
OC |
kg kg-1 |
xyz |
Organic Carbon Mass Mixing Ratio bfri
|
OCMASSbiob |
OC |
kg kg-1 |
xyz |
Organic Carbon Mass Mixing Ratio biob
|
OCMASSbmon |
OC |
kg kg-1 |
xyz |
Organic Carbon Mass Mixing Ratio bmon
|
OCMASSbsat |
OC |
kg kg-1 |
xyz |
Organic Carbon Mass Mixing Ratio bsat
|
OCMASSbsun |
OC |
kg kg-1 |
xyz |
Organic Carbon Mass Mixing Ratio bsun
|
OCMASSbthu |
OC |
kg kg-1 |
xyz |
Organic Carbon Mass Mixing Ratio bthu
|
OCMASSbtue |
OC |
kg kg-1 |
xyz |
Organic Carbon Mass Mixing Ratio btue
|
OCMASSbwed |
OC |
kg kg-1 |
xyz |
Organic Carbon Mass Mixing Ratio bwed
|
OCOD |
GMICHEM |
1 |
xyz |
organic carbon optical depth (400 nm)
|
OCSA |
GMICHEM |
cm+2 cm-3 |
xyz |
organic carbon surface area
|
OCSCACOEF |
OC |
m-1 |
xyz |
Organic Carbon Scatt. Coefficient [550 nm] ENSEMBLE
|
OCSCACOEFanth |
OC |
m-1 |
xyz |
Organic Carbon Scatt. Coefficient [550 nm] anth
|
OCSCACOEFbbgl |
OC |
m-1 |
xyz |
Organic Carbon Scatt. Coefficient [550 nm] bbgl
|
OCSCACOEFbfri |
OC |
m-1 |
xyz |
Organic Carbon Scatt. Coefficient [550 nm] bfri
|
OCSCACOEFbiob |
OC |
m-1 |
xyz |
Organic Carbon Scatt. Coefficient [550 nm] biob
|
OCSCACOEFbmon |
OC |
m-1 |
xyz |
Organic Carbon Scatt. Coefficient [550 nm] bmon
|
OCSCACOEFbsat |
OC |
m-1 |
xyz |
Organic Carbon Scatt. Coefficient [550 nm] bsat
|
OCSCACOEFbsun |
OC |
m-1 |
xyz |
Organic Carbon Scatt. Coefficient [550 nm] bsun
|
OCSCACOEFbthu |
OC |
m-1 |
xyz |
Organic Carbon Scatt. Coefficient [550 nm] bthu
|
OCSCACOEFbtue |
OC |
m-1 |
xyz |
Organic Carbon Scatt. Coefficient [550 nm] btue
|
OCSCACOEFbwed |
OC |
m-1 |
xyz |
Organic Carbon Scatt. Coefficient [550 nm] bwed
|
OCSCATAU |
OC |
1 |
xy |
Organic Carbon Scattering AOT [550 nm] ENSEMBLE
|
OCSCATAUanth |
OC |
1 |
xy |
Organic Carbon Scattering AOT [550 nm] anth
|
OCSCATAUbbgl |
OC |
1 |
xy |
Organic Carbon Scattering AOT [550 nm] bbgl
|
OCSCATAUbfri |
OC |
1 |
xy |
Organic Carbon Scattering AOT [550 nm] bfri
|
OCSCATAUbiob |
OC |
1 |
xy |
Organic Carbon Scattering AOT [550 nm] biob
|
OCSCATAUbmon |
OC |
1 |
xy |
Organic Carbon Scattering AOT [550 nm] bmon
|
OCSCATAUbsat |
OC |
1 |
xy |
Organic Carbon Scattering AOT [550 nm] bsat
|
OCSCATAUbsun |
OC |
1 |
xy |
Organic Carbon Scattering AOT [550 nm] bsun
|
OCSCATAUbthu |
OC |
1 |
xy |
Organic Carbon Scattering AOT [550 nm] bthu
|
OCSCATAUbtue |
OC |
1 |
xy |
Organic Carbon Scattering AOT [550 nm] btue
|
OCSCATAUbwed |
OC |
1 |
xy |
Organic Carbon Scattering AOT [550 nm] bwed
|
OCSD001 |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 001 ENSEMBLE
|
OCSD001anth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 001 anth
|
OCSD001bbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 001 bbgl
|
OCSD001bfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 001 bfri
|
OCSD001biob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 001 biob
|
OCSD001bmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 001 bmon
|
OCSD001bsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 001 bsat
|
OCSD001bsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 001 bsun
|
OCSD001bthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 001 bthu
|
OCSD001btue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 001 btue
|
OCSD001bwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 001 bwed
|
OCSD002 |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 002 ENSEMBLE
|
OCSD002anth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 002 anth
|
OCSD002bbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 002 bbgl
|
OCSD002bfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 002 bfri
|
OCSD002biob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 002 biob
|
OCSD002bmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 002 bmon
|
OCSD002bsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 002 bsat
|
OCSD002bsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 002 bsun
|
OCSD002bthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 002 bthu
|
OCSD002btue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 002 btue
|
OCSD002bwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Sedimentation Bin 002 bwed
|
OCSMASS |
OC |
kg m-3 |
xy |
Organic Carbon Surface Mass Concentration ENSEMBLE
|
OCSMASSanth |
OC |
kg m-3 |
xy |
Organic Carbon Surface Mass Concentration anth
|
OCSMASSbbgl |
OC |
kg m-3 |
xy |
Organic Carbon Surface Mass Concentration bbgl
|
OCSMASSbfri |
OC |
kg m-3 |
xy |
Organic Carbon Surface Mass Concentration bfri
|
OCSMASSbiob |
OC |
kg m-3 |
xy |
Organic Carbon Surface Mass Concentration biob
|
OCSMASSbmon |
OC |
kg m-3 |
xy |
Organic Carbon Surface Mass Concentration bmon
|
OCSMASSbsat |
OC |
kg m-3 |
xy |
Organic Carbon Surface Mass Concentration bsat
|
OCSMASSbsun |
OC |
kg m-3 |
xy |
Organic Carbon Surface Mass Concentration bsun
|
OCSMASSbthu |
OC |
kg m-3 |
xy |
Organic Carbon Surface Mass Concentration bthu
|
OCSMASSbtue |
OC |
kg m-3 |
xy |
Organic Carbon Surface Mass Concentration btue
|
OCSMASSbwed |
OC |
kg m-3 |
xy |
Organic Carbon Surface Mass Concentration bwed
|
OCSV001 |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 001 ENSEMBLE
|
OCSV001anth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 001 anth
|
OCSV001bbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 001 bbgl
|
OCSV001bfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 001 bfri
|
OCSV001biob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 001 biob
|
OCSV001bmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 001 bmon
|
OCSV001bsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 001 bsat
|
OCSV001bsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 001 bsun
|
OCSV001bthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 001 bthu
|
OCSV001btue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 001 btue
|
OCSV001bwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 001 bwed
|
OCSV002 |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 002 ENSEMBLE
|
OCSV002anth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 002 anth
|
OCSV002bbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 002 bbgl
|
OCSV002bfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 002 bfri
|
OCSV002biob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 002 biob
|
OCSV002bmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 002 bmon
|
OCSV002bsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 002 bsat
|
OCSV002bsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 002 bsun
|
OCSV002bthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 002 bthu
|
OCSV002btue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 002 btue
|
OCSV002bwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Convective Scavenging Bin 002 bwed
|
OCS_JRATE |
StratChem |
s-1 |
xyz |
OCS photolysis rate
|
OCWT |
Saltwater |
kg m-2 s-1 |
tile |
Organic Carbon Wet Deposition
|
OCWT001 |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 001 ENSEMBLE
|
OCWT001anth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 001 anth
|
OCWT001bbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 001 bbgl
|
OCWT001bfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 001 bfri
|
OCWT001biob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 001 biob
|
OCWT001bmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 001 bmon
|
OCWT001bsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 001 bsat
|
OCWT001bsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 001 bsun
|
OCWT001bthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 001 bthu
|
OCWT001btue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 001 btue
|
OCWT001bwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 001 bwed
|
OCWT002 |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 002 ENSEMBLE
|
OCWT002anth |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 002 anth
|
OCWT002bbgl |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 002 bbgl
|
OCWT002bfri |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 002 bfri
|
OCWT002biob |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 002 biob
|
OCWT002bmon |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 002 bmon
|
OCWT002bsat |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 002 bsat
|
OCWT002bsun |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 002 bsun
|
OCWT002bthu |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 002 bthu
|
OCWT002btue |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 002 btue
|
OCWT002bwed |
OC |
kg m-2 s-1 |
xy |
Organic Carbon Wet Deposition Bin 002 bwed
|
OLA |
Irrad |
W m-2 |
xy |
upwelling longwave flux at toa assuming clear sky and no aerosol
|
OLC |
Irrad |
W m-2 |
xy |
upwelling longwave flux at toa assuming clear sky
|
OLR |
Irrad |
W m-2 |
xy |
upwelling longwave flux at toa
|
OLRA |
Irrad |
W m-2 |
xy |
upwelling longwave flux at toa and no aerosol
|
OMEGA |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
OMEGA |
FVdycore |
Pa s-1 |
xyz |
vertical pressure velocity
|
OMEGA |
DynCore |
Pa s-1 |
xyz |
vertical pressure velocity
|
OMEGA |
ARIESg3 |
Pa s-1 |
xyz |
vertical pressure velocity
|
OMEGA |
DatmoDyn |
Pas |
xyz |
pressure velocity
|
OMEGA10 |
DynCore |
Pa s-1 |
xy |
omega at 10 hPa
|
OMEGA200 |
DynCore |
Pa s-1 |
xy |
omega at 200 hPa
|
OMEGA500 |
FVdycore |
Pa s-1 |
xy |
omega at 500 hPa
|
OMEGA500 |
DynCore |
Pa s-1 |
xy |
omega at 500 hPa
|
OMEGA500 |
ARIESg3 |
Pa s-1 |
xy |
omega at 500 hPa
|
OMEGA850 |
DynCore |
Pa s-1 |
xy |
omega at 850 hPa
|
ORG |
Moist |
m-3 |
xyz |
Organic number conc. (hydrophilic)
|
OSR |
Solar |
W m-2 |
xy |
toa outgoing shortwave flux
|
OSRCLR |
Solar |
W m-2 |
xy |
toa outgoing shortwave flux assuming clear sky
|
OSRCNA |
Solar |
W m-2 |
xy |
toa outgoing shortwave flux no aerosol clear sky
|
OSRNA |
Solar |
W m-2 |
xy |
toa outgoing shortwave flux no aerosol
|
OUSTAR3 |
Lake |
m+3 s-3 |
tile |
ocean ustar cubed
|
OUSTAR3 |
Saltwater |
m+3 s-3 |
tile |
ocean ustar cubed
|
OX |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
OX |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
OX |
O3 |
mol mol-1 |
xyz |
Ozone volume mixing ratio
|
OXFILL |
Agcm |
kg m-2 s-1 |
xy |
vertically integrated ox adjustment from filling
|
OXIM |
Physics |
mol mol-1 s-1 |
xyz |
tendency of odd oxygen due to moist processes
|
OXIT |
Physics |
mol mol-1 s-1 |
xyz |
tendency of odd oxygen due to turbulence
|
OX_LOSS |
PChem |
mol mol-1 s-1 |
xyz |
tendency of odd oxygen volume mixing ratio due to loss
|
OX_PROD |
PChem |
mol mol-1 s-1 |
xyz |
tendency of odd oxygen volume mixing ratio due to production
|
OX_SCTEND |
StratChem |
mol mol-1 s-1 |
xyz |
chemical rate of change OX
|
OX_TEND |
PChem |
mol mol-1 s-1 |
xyz |
tendency of odd oxygen mixing ratio due to chemistry
|
OX_TEND |
O3 |
mol mol-1 s-1 |
xyz |
tendency of odd oxygen mixing ratio due to chemistry
|
OX_TEND |
GMICHEM |
kg kg-1 s-1 |
xyz |
tendency of odd oxygen mixing ratio due to chemistry
|
OX_TEND |
StratChem |
mol mol-1 s-1 |
xyz |
tendency of odd oxygen mixing ratio due to chemistry
|
PARABS |
Surface |
W m-2 |
xy |
absorbed PAR
|
PARABS |
CatchCN |
W m-2 |
tile |
absorbed PAR
|
PARASOLREFL0 |
Satsim |
1 |
xy |
parasol reflectance
|
PARASOLREFL1 |
Satsim |
1 |
xy |
parasol reflectance 1
|
PARASOLREFL2 |
Satsim |
1 |
xy |
parasol reflectance 2
|
PARASOLREFL3 |
Satsim |
1 |
xy |
parasol reflectance 3
|
PARASOLREFL4 |
Satsim |
1 |
xy |
parasol reflectance 4
|
PARASOLREFL5 |
Satsim |
1 |
xy |
parasol reflectance 5
|
PARINC |
Surface |
W m-2 |
xy |
incident PAR
|
PARINC |
CatchCN |
W m-2 |
tile |
incident PAR
|
PBO |
Gcm |
|
|
|
PBO |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
PCMCMASS |
MAMchem |
kg m-2 |
xy |
Column Mass Density Primary Carbon mode
|
PCMEXTTAU |
MAMchem |
1 |
xy |
Aerosol Optical Thickness Primary Carbon mode
|
PCMSCATAU |
MAMchem |
1 |
xy |
Aerosol Scattering Optical Thickness Primary Carbon mode
|
PCPOBS |
DatmoDyn |
mmd |
xy |
Obs. precipitation rate
|
PCTISCCP |
Satsim |
Pa |
xy |
isccp air pressure at cloud top
|
PCU |
Moist |
kg m-2 s-1 |
xy |
convective rainfall
|
PCU |
Surface |
kg m-2 s-1 |
xy |
liquid water convective precipitation
|
PDFIZ |
Moist |
kg m-2 s-1 |
xy |
statistical source of cloud ice
|
PDFLZ |
Moist |
kg m-2 s-1 |
xy |
statistical source of cloud water
|
PE |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
PE |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
PE |
FVdycore |
Pa |
xyz |
air pressure
|
PE |
DynCore |
Pa |
xyz |
air pressure
|
PE |
ARIESg3 |
Pa |
xyz |
air pressure
|
PE |
DatmoDyn |
Pa |
xyz |
air pressure
|
PE |
DynVec |
Pa |
xyz |
air pressure
|
PEANA |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
PEANA |
FVdycore |
W m-2 |
xy |
total potential energy tendency due to analysis
|
PEANA |
DynCore |
W m-2 |
xy |
total potential energy tendency due to analysis
|
PEANA |
ARIESg3 |
W m-2 |
xy |
total potential energy tendency due to analysis
|
PEANA |
DatmoDyn |
W m-2 |
xy |
total potential energy tendency due to analysis
|
PEBKG |
Gwd |
W m-2 |
xy |
vertically integrated potential energy tendency due to gravity wave background
|
PECDCOR |
FVdycore |
W m-2 |
xy |
vertically integrated potential energy tendency due to cdcore
|
PECDCOR |
DynCore |
W m-2 |
xy |
vertically integrated potential energy tendency due to cdcore
|
PECDCOR |
ARIESg3 |
W m-2 |
xy |
vertically integrated potential energy tendency due to cdcore
|
PECUF |
Physics |
W m-2 |
xy |
vertically integrated potential energy tendency due to cumulus friction
|
PEDYN |
FVdycore |
W m-2 |
xy |
vertically integrated potential energy tendency due to dynamics
|
PEDYN |
DynCore |
W m-2 |
xy |
vertically integrated potential energy tendency due to dynamics
|
PEDYN |
ARIESg3 |
W m-2 |
xy |
vertically integrated potential energy tendency due to dynamics
|
PEFILL |
Agcm |
W m-2 |
xy |
vertically integrated cpt adjustment from filling
|
PEFRI |
Physics |
W m-2 |
xy |
vertically integrated potential energy tendency due to friction
|
PEGWD |
Physics |
W m-2 |
xy |
vertically integrated potential energy tendency across gwd
|
PEGWD |
Gwd |
W m-2 |
xy |
vertically integrated potential energy tendency across gwd
|
PEMST |
Physics |
W m-2 |
xy |
vertically integrated potential energy tendency across moist
|
PENPAF |
Lake |
W m-2 |
tile |
downwelling par diffuse flux at skin base
|
PENPAF |
Saltwater |
W m-2 |
tile |
downwelling par diffuse flux at skin base
|
PENPAF |
Orad |
W m-2 |
xy |
net downward penetrating diffuse PAR flux
|
PENPAR |
Lake |
W m-2 |
tile |
downwelling par direct flux at skin base
|
PENPAR |
Saltwater |
W m-2 |
tile |
downwelling par direct flux at skin base
|
PENPAR |
Orad |
W m-2 |
xy |
net downward penetrating direct PAR flux
|
PENUVF |
Lake |
W m-2 |
tile |
downwelling uvr diffuse flux at skin base
|
PENUVF |
Saltwater |
W m-2 |
tile |
downwelling uvr diffuse flux at skin base
|
PENUVF |
Orad |
W m-2 |
xy |
net downward penetrating diffuse UV flux
|
PENUVR |
Lake |
W m-2 |
tile |
downwelling uvr direct flux at skin base
|
PENUVR |
Saltwater |
W m-2 |
tile |
downwelling uvr direct flux at skin base
|
PENUVR |
Orad |
W m-2 |
xy |
net downward penetrating direct UV flux
|
PEORO |
Gwd |
W m-2 |
xy |
vertically integrated potential energy tendency due to orographic gravity waves
|
PEPHY |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
PEPHY |
FVdycore |
W m-2 |
xy |
total potential energy tendency due to physics
|
PEPHY |
DynCore |
W m-2 |
xy |
total potential energy tendency due to physics
|
PEPHY |
ARIESg3 |
W m-2 |
xy |
total potential energy tendency due to physics
|
PEPHY |
DatmoDyn |
W m-2 |
xy |
total potential energy tendency due to physics
|
PEPHY |
Physics |
W m-2 |
xy |
vertically integrated potential energy tendency across physics
|
PERAD |
Physics |
W m-2 |
xy |
vertically integrated potential energy tendency across radiation
|
PERAY |
Gwd |
W m-2 |
xy |
vertically integrated potential energy tendency due to Rayleigh friction
|
PEREMAP |
FVdycore |
W m-2 |
xy |
vertically integrated potential energy tendency due to remap
|
PEREMAP |
DynCore |
W m-2 |
xy |
vertically integrated potential energy tendency due to remap
|
PEREMAP |
ARIESg3 |
W m-2 |
xy |
vertically integrated potential energy tendency due to remap
|
PERES |
Agcm |
W m-2 |
xy |
vertically integrated cpt tendency residual
|
PETRB |
Physics |
W m-2 |
xy |
vertically integrated potential energy tendency across turbulence
|
PFI_AN |
Moist |
kg m-2 s-1 |
xyz |
3D flux of ice anvil precipitation
|
PFI_CN |
Moist |
kg m-2 s-1 |
xyz |
3D flux of ice convective precipitation
|
PFI_LS |
Moist |
kg m-2 s-1 |
xyz |
3D flux of ice nonanvil large scale precipitation
|
PFI_LSAN |
Moist |
kg m-2 s-1 |
xyz |
3D flux of ice nonconvective precipitation
|
PFL_AN |
Moist |
kg m-2 s-1 |
xyz |
3D flux of liquid anvil precipitation
|
PFL_CN |
Moist |
kg m-2 s-1 |
xyz |
3D flux of liquid convective precipitation
|
PFL_LS |
Moist |
kg m-2 s-1 |
xyz |
3D flux of liquid nonanvil large scale precipitation
|
PFL_LSAN |
Moist |
kg m-2 s-1 |
xyz |
3D flux of liquid nonconvective precipitation
|
PFRZ |
Moist |
1 |
xyz |
Probability of freezing of aerosol part
|
PGENTOT |
Moist |
kg m-2 s-1 |
xy |
Total column production of precipitation
|
PHIS |
Gcm |
|
|
|
PHIS |
Agcm |
m+2 s-2 |
xy |
surface geopotential height
|
PHIS |
DynCore |
m |
xy |
surface height
|
PHIS |
DatmoDyn |
K |
xy |
obs skin temperature
|
PHIW |
Surface |
1 |
xy |
Similarity function in warm layer
|
PHIW |
Saltwater |
1 |
tile |
Similarity function in warm layer
|
PID |
DynCore |
|
xy |
process id
|
PKZ |
DynVec |
Pa$^\kappa$ |
xyz |
pressure to kappa
|
PL |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
PL |
FVdycore |
Pa |
xyz |
mid level pressure
|
PL |
DynCore |
Pa |
xyz |
mid level pressure
|
PL |
ARIESg3 |
Pa |
xyz |
mid level pressure
|
PL |
DatmoDyn |
Pa |
xyz |
midlevel pressures
|
PLE |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
PLE |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
PLE |
FVdycore |
Pa |
xyz |
edge pressure
|
PLE |
DynCore |
Pa |
xyz |
edge pressure
|
PLE |
ARIESg3 |
Pa |
xyz |
edge pressure
|
PLE |
DatmoDyn |
Pascals |
xyz |
Pressure at the edges
|
PLE |
Gwd |
Pa |
xyz |
air pressure
|
PLE0 |
DynCore |
Pa |
xyz |
pressure at layer edges before dynamics
|
PLE1 |
DynCore |
Pa |
xyz |
pressure at layer edges after dynamics
|
PLEBKG |
mkiau |
Pa |
xyz |
air pressure of background
|
PLEI |
Moist |
Pa |
xyz |
air pressure before ras
|
PLK |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
PLK |
FVdycore |
Pa$^\kappa$ |
xyz |
mid layer $p^\kappa$
|
PLK |
DynCore |
Pa$^\kappa$ |
xyz |
mid-layer p$^\kappa$
|
PLK |
ARIESg3 |
Pa$^\kappa$ |
xyz |
mid layer $p^\kappa$
|
PLK |
DatmoDyn |
J kg-1 |
xyz |
Exner quantity
|
PLS |
Moist |
kg m-2 s-1 |
xy |
large scale rainfall
|
PLS |
Surface |
kg m-2 s-1 |
xy |
liquid water large scale precipitation
|
PM |
GOCART |
kg m-3 |
xy |
Total reconstructed PM
|
PM25 |
GOCART |
kg m-3 |
xy |
Total reconstructed PM2.5
|
PMSA |
SU |
kg m-2 s-1 |
xyz |
MSA Prod from DMS oxidation ENSEMBLE
|
PMSAanth |
SU |
kg m-2 s-1 |
xyz |
MSA Prod from DMS oxidation (Anthropogenic)
|
PMSAstrat |
SU |
kg m-2 s-1 |
xyz |
MSA Prod from DMS oxidation (Stratospheric)
|
PMSAvolc |
SU |
kg m-2 s-1 |
xyz |
MSA Prod from DMS oxidation (Volcanic)
|
POMEMPCM |
MAMchem |
kg m-2 s-1 |
xy |
POM Emission Primary Carbon mode
|
PPBL |
Turbulence |
Pa |
xy |
pbltop pressure
|
PRECTOT |
Surface |
kg m-2 s-1 |
xy |
total precipitation
|
PREF |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
PREF |
FVdycore |
Pa |
z |
reference air pressure
|
PREF |
DynCore |
Pa |
z |
reference air pressure
|
PREF |
ARIESg3 |
Pa |
z |
reference air pressure
|
PREF |
Gwd |
Pa |
z |
reference air pressure
|
PREVTOT |
Moist |
kg m-2 s-1 |
xy |
Total column re-evapsubl of precipitation
|
PRLAND |
Surface |
kg m-2 s-1 |
xy |
Total precipitation land
|
PRLAND |
Land |
|
|
|
PRLAND |
Catch |
kg m-2 s-1 |
tile |
Total precipitation land
|
PRLAND |
CatchCN |
kg m-2 s-1 |
tile |
Total precipitation land
|
PS |
Gcm |
|
|
|
PS |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
PS |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
PS |
FVdycore |
Pa |
xy |
surface pressure
|
PS |
DynCore |
Pa |
xy |
surface pressure
|
PS |
ARIESg3 |
Pa |
xy |
surface pressure
|
PS |
DatmoDyn |
Pa |
xy |
Surface Pressure
|
PS |
Lake |
Pa |
tile |
surface pressure
|
PS |
Saltwater |
Pa |
tile |
surface pressure
|
PSFCOBS |
DatmoDyn |
[PahPa] |
xy |
Obs. Sfc. Pressure
|
PSI |
Gcm |
|
|
|
PSI |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
PSO2 |
SU |
kg m-2 s-1 |
xyz |
SO2 Prod from DMS oxidation ENSEMBLE
|
PSO2anth |
SU |
kg m-2 s-1 |
xyz |
SO2 Prod from DMS oxidation (Anthropogenic)
|
PSO2strat |
SU |
kg m-2 s-1 |
xyz |
SO2 Prod from DMS oxidation (Stratospheric)
|
PSO2volc |
SU |
kg m-2 s-1 |
xyz |
SO2 Prod from DMS oxidation (Volcanic)
|
PSO4AQ |
SU |
kg m-2 s-1 |
xyz |
SO4 Prod from aqueous SO2 oxidation ENSEMBLE
|
PSO4AQanth |
SU |
kg m-2 s-1 |
xyz |
SO4 Prod from aqueous SO2 oxidation (Anthropogenic)
|
PSO4AQstrat |
SU |
kg m-2 s-1 |
xyz |
SO4 Prod from aqueous SO2 oxidation (Stratospheric)
|
PSO4AQvolc |
SU |
kg m-2 s-1 |
xyz |
SO4 Prod from aqueous SO2 oxidation (Volcanic)
|
PSO4G |
SU |
kg m-2 s-1 |
xyz |
SO4 Prod from SO2 oxidation ENSEMBLE
|
PSO4Ganth |
SU |
kg m-2 s-1 |
xyz |
SO4 Prod from SO2 oxidation (Anthropogenic)
|
PSO4Gstrat |
SU |
kg m-2 s-1 |
xyz |
SO4 Prod from SO2 oxidation (Stratospheric)
|
PSO4Gvolc |
SU |
kg m-2 s-1 |
xyz |
SO4 Prod from SO2 oxidation (Volcanic)
|
PSO4WET |
SU |
kg m-2 s-1 |
xyz |
SO4 Prod from wet SO2 oxidation ENSEMBLE
|
PSO4WETanth |
SU |
kg m-2 s-1 |
xyz |
SO4 Prod from wet SO2 oxidation (Anthropogenic)
|
PSO4WETstrat |
SU |
kg m-2 s-1 |
xyz |
SO4 Prod from wet SO2 oxidation (Stratospheric)
|
PSO4WETvolc |
SU |
kg m-2 s-1 |
xyz |
SO4 Prod from wet SO2 oxidation (Volcanic)
|
PT |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
PT |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
PT |
FVdycore |
K Pa$^{-\kappa}$ |
xyz |
scaled potential temperature
|
PT |
DynCore |
K Pa$^{-\kappa}$ |
xyz |
scaled potential temperature
|
PT |
ARIESg3 |
K Pa$^{-\kappa}$ |
xyz |
scaled potential temperature
|
PT |
DatmoDyn |
K Pa$^{-\kappa}$ |
xyz |
scaled potential temperature
|
PT |
DynVec |
K Pa$^{-\kappa}$ |
xyz |
scaled potential temperature
|
PTFX |
FVdycore |
K Pa m+2 s-1 |
xyz |
pressure weighted eastward potential temperature flux unremapped
|
PTFX |
ARIESg3 |
K Pa m+2 s-1 |
xyz |
pressure weighted eastward potential temperature flux unremapped
|
PTFY |
FVdycore |
K Pa m+2 s-1 |
xyz |
pressure weighted northward potential temperature flux unremapped
|
PTFY |
ARIESg3 |
K Pa m+2 s-1 |
xyz |
pressure weighted northward potential temperature flux unremapped
|
PV |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
PV |
FVdycore |
m+2 kg-1 s-1 |
xyz |
ertels isentropic potential vorticity
|
PV |
DynCore |
m+2 kg-1 s-1 |
xyz |
ertels isentropic potential vorticity
|
PV |
ARIESg3 |
m+2 kg-1 s-1 |
xyz |
ertels isentropic potential vorticity
|
PV |
DatmoDyn |
m+2 kg-1 sec-1 |
xyz |
ertels isentropic potential vorticity
|
Q |
Gcm |
|
|
|
Q |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
Q |
FVdycore |
kg kg-1 |
xyz |
specific humidity
|
Q |
DynCore |
1 |
xyz |
specific humidity
|
Q |
ARIESg3 |
kg kg-1 |
xyz |
specific humidity
|
Q |
DatmoDyn |
ms |
xyz |
meridional wind
|
Q |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
Q |
Gwd |
kg kg-1 |
xyz |
specific humidity
|
Q10M |
Surface |
kg kg-1 |
xy |
10-meter specific humidity
|
Q250 |
FVdycore |
kg kg-1 |
xy |
specific humidity at 250 hPa
|
Q250 |
DynCore |
kg kg-1 |
xy |
specific humidity at 250 hPa
|
Q250 |
ARIESg3 |
kg kg-1 |
xy |
specific humidity at 250 hPa
|
Q2M |
Surface |
kg kg-1 |
xy |
2-meter specific humidity
|
Q500 |
FVdycore |
kg kg-1 |
xy |
specific humidity at 500 hPa
|
Q500 |
DynCore |
kg kg-1 |
xy |
specific humidity at 500 hPa
|
Q500 |
ARIESg3 |
kg kg-1 |
xy |
specific humidity at 500 hPa
|
Q600 |
Moist |
kgkg |
xy |
q at 600mb
|
Q850 |
FVdycore |
kg kg-1 |
xy |
specific humidity at 850 hPa
|
Q850 |
DynCore |
kg kg-1 |
xy |
specific humidity at 850 hPa
|
Q850 |
ARIESg3 |
kg kg-1 |
xy |
specific humidity at 850 hPa
|
QA |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
QA |
FVdycore |
kg kg-1 |
xy |
surface specific humidity
|
QA |
DynCore |
1 |
xy |
surface specific humidity
|
QA |
ARIESg3 |
kg kg-1 |
xy |
surface specific humidity
|
QA |
DatmoDyn |
1 |
xy |
Surface air spec humidity
|
QA |
Surface |
kg kg-1 |
xy |
surface air specific humidity
|
QC |
DynCore |
1 |
xyz |
specific mass of condensate
|
QCCNX0 |
Moist |
kg kg-1 |
xyz |
initial mass fraction of convective cloud condensate
|
QCLSX0 |
Moist |
kg kg-1 |
xyz |
initial mass fraction of large scale cloud condensate
|
QCOOL |
Surface |
W m-2 |
xy |
net cooling in cool layer
|
QCOOL |
Saltwater |
W m-2 |
tile |
net heating in cool layer
|
QCRES |
Moist |
Kg Kg-1 s-1 |
xyz |
Residual cloud tendency in micro
|
QCTOT |
Gcm |
|
|
|
QCTOT |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
QCTOT |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
QCTOT |
Moist |
kg kg-1 |
xyz |
mass fraction of total cloud water
|
QCVAR_EXP |
Moist |
1 |
xy |
inverse relative variance of cloud water
|
QDWL |
Surface |
kg kg-1 |
xy |
surface liquid condensate
|
QFIXER |
FVdycore |
W m-2 |
xy |
vertically integrated potential energy tendency due to CONSV
|
QFIXER |
DynCore |
W m-2 |
xy |
vertically integrated potential energy tendency due to CONSV
|
QFIXER |
ARIESg3 |
W m-2 |
xy |
vertically integrated potential energy tendency due to CONSV
|
QFRL |
Surface |
kg kg-1 |
xy |
surface ice condensate
|
QH |
Lake |
kg kg-1 |
tile |
turbulence surface specific humidity
|
QH |
Landice |
kg kg-1 |
tile |
turbulence surface specific humidity
|
QH |
Land |
|
|
|
QH |
Catch |
kg kg-1 |
tile |
turbulence surface skin specific hum
|
QH |
CatchCN |
kg kg-1 |
tile |
turbulence surface skin specific hum
|
QH |
Saltwater |
kg kg-1 |
tile |
turbulence surface specific humidity
|
QHATOBS |
DatmoDyn |
K s-1 |
xyz |
Obs. Moisture Tendency H adv
|
QHOI |
Moist |
kg kg-1 |
xyz |
specific humidity before ras
|
QI |
Moist |
kg kg-1 |
xyz |
in cloud cloud ice for radiation
|
QICN |
Moist |
1 |
xyz |
mass fraction of convective cloud ice water
|
QICNX0 |
Moist |
kg kg-1 |
xyz |
initial mass fraction of convective cloud ice water
|
QICNX1 |
Moist |
kg kg-1 |
xyz |
final mass fraction of convective cloud ice water
|
QIFILL |
Agcm |
kg m-2 s-1 |
xy |
vertically integrated qi adjustment from filling
|
QILSIT |
Physics |
kg kg-1 s-1 |
xyz |
tendency of frozen condensate due to turbulence
|
QILSX0 |
Moist |
kg kg-1 |
xyz |
initial mass fraction of large scale cloud ice water
|
QILSX1 |
Moist |
kg kg-1 |
xyz |
final mass fraction of large scale cloud ice water
|
QINFIL |
Surface |
kg m-2 s-1 |
xy |
Soil water infiltration rate
|
QINFIL |
Land |
|
|
|
QINFIL |
Catch |
kg m-2 s-1 |
tile |
rainwater infiltration flux
|
QINFIL |
CatchCN |
kg m-2 s-1 |
tile |
rainwater infiltration flux
|
QIOBS |
DatmoDyn |
1 |
xyz |
Obs. Cloud ice
|
QIRES |
Moist |
Kg Kg-1 s-1 |
xyz |
Residual ice cloud tendency in micro
|
QITOT |
Gcm |
|
|
|
QITOT |
Agcm |
kg kg-1 |
xyz |
mass fraction of cloud ice water
|
QITOT |
Moist |
kg kg-1 |
xyz |
grid box mass fraction of cloud ice water
|
QL |
Moist |
kg kg-1 |
xyz |
in cloud cloud liquid for radiation
|
QLCN |
Moist |
1 |
xyz |
mass fraction of convective cloud liquid water
|
QLCNX0 |
Moist |
kg kg-1 |
xyz |
initial mass fraction of convective cloud liquid water
|
QLCNX1 |
Moist |
kg kg-1 |
xyz |
final mass fraction of convective cloud liquid water
|
QLFILL |
Agcm |
kg m-2 s-1 |
xy |
vertically integrated ql adjustment from filling
|
QLLSIT |
Physics |
kg kg-1 s-1 |
xyz |
tendency of liquid condensate due to turbulence
|
QLLSX0 |
Moist |
kg kg-1 |
xyz |
initial mass fraction of large scale cloud liquid water
|
QLLSX1 |
Moist |
kg kg-1 |
xyz |
final mass fraction of large scale cloud liquid water
|
QLOBS |
DatmoDyn |
1 |
xyz |
Obs. Cloud liquid
|
QLTOT |
Gcm |
|
|
|
QLTOT |
Agcm |
kg kg-1 |
xyz |
mass fraction of cloud liquid water
|
QLTOT |
Moist |
kg kg-1 |
xyz |
grid box mass fraction of cloud liquid water
|
QOBS |
DatmoDyn |
1 |
xyz |
Obs. Spec. Humidity
|
QPTOTLS |
Moist |
kg kg-1 |
xyz |
mass fraction of large scale falling precip
|
QR |
Moist |
kg kg-1 |
xyz |
Falling rain for radiation
|
QRTOT |
Moist |
kg kg-1 |
xyz |
mass fraction of falling rain
|
QS |
Moist |
kg kg-1 |
xyz |
Falling snow for radiation
|
QSATI |
Moist |
kg kg-1 |
xyz |
saturation spec hum over ice
|
QSATL |
Moist |
kg kg-1 |
xyz |
saturation spec hum over liquid
|
QSKINOBS |
DatmoDyn |
1 |
xy |
obs skin spec humidity whatever that means
|
QSSI |
Moist |
kg kg-1 |
xyz |
saturation specific humidity before ras
|
QST |
Lake |
kg kg-1 |
tile |
surface specific humidity
|
QST |
Landice |
kg kg-1 |
tile |
surface specific humidity
|
QST |
Land |
|
|
|
QST |
Catch |
kg kg-1 |
tile |
surface specific humidity
|
QST |
CatchCN |
kg kg-1 |
tile |
surface specific humidity
|
QST |
Saltwater |
kg kg-1 |
tile |
surface specific humidity
|
QSTAR |
Surface |
kg kg-1 |
xy |
surface moisture scale
|
QSTOT |
Moist |
kg kg-1 |
xyz |
mass fraction of falling snow
|
QTEST |
DatmoDyn |
1 |
xyz |
test tracer
|
QTFILL |
Agcm |
kg m-2 s-1 |
xy |
vertically integrated total water adjustment from filling
|
QV |
Moist |
kg kg-1 |
xyz |
water vapor for radiation
|
QV |
Turbulence |
kg kg-1 |
xyz |
specific humidity
|
QVATOBS |
DatmoDyn |
K s-1 |
xyz |
Obs. Moisture Tendency V adv
|
QVBKG |
mkiau |
kgkg |
xyz |
water vapor specific humdity of background
|
QVFILL |
Agcm |
kg m-2 s-1 |
xy |
vertically integrated qv adjustment from filling
|
QVIT |
Physics |
kg kg-1 s-1 |
xyz |
tendency of specific humidity due to turbulence
|
QVRAS |
Moist |
kg kg-1 |
xyz |
water vapor after ras
|
QWARM |
Surface |
W m-2 |
xy |
net heating in warm layer
|
QWARM |
Saltwater |
W m-2 |
tile |
net heating in warm layer
|
QX0 |
Moist |
kg kg-1 |
xyz |
specific humidity
|
Q_moist |
Moist |
kg kg-1 |
xyz |
specific humidity before moist
|
RADARLTCC |
Satsim |
1 |
xy |
cloudsat calipso total cloud amount
|
RADARZETOT |
Satsim |
1 |
xyz |
cloudsat total reflectivity
|
RADLW |
Radiation |
K s-1 |
xyz |
air temperature tendency due to longwave
|
RADLWC |
Radiation |
K s-1 |
xyz |
air temperature tendency due to longwave for clear skies
|
RADLWCNA |
Radiation |
K s-1 |
xyz |
air temperature tendency due to longwave for clear skies no aerosol
|
RADRCODE |
Turbulence |
1 |
xy |
Return codes for Lock top driven plume
|
RADSRF |
Radiation |
W m-2 |
xy |
net downwelling radiation at surface
|
RADSW |
Radiation |
K s-1 |
xyz |
air temperature tendency due to shortwave
|
RADSWC |
Radiation |
K s-1 |
xyz |
air temperature tendency due to shortwave for clear skies
|
RADSWCNA |
Radiation |
K s-1 |
xyz |
air temperature tendency due to shortwave for clear skies no aerosol
|
RADSWNA |
Radiation |
K s-1 |
xyz |
air temperature tendency due to shortwave no aerosol
|
RAINOCN |
Surface |
kg m-2 s-1 |
xy |
ocean rainfall
|
RAINOCN |
Saltwater |
kg m-2 s-1 |
tile |
ocean rainfall
|
RAINRFZ |
Landice |
kg m-2 s-1 |
tile |
contribution to smb from refreezed rain over bare ice
|
RASPBLQ |
Moist |
(m+3 s-1)+12 |
xy |
sqrt of integral KH dz
|
RASTIME |
Moist |
s |
xy |
timescale for deep RAS plumes
|
RCCODE |
Moist |
codes |
xyz |
Convection return codes
|
RE |
Surface |
1 |
xy |
surface reynolds number
|
REFFICE |
GMICHEM |
cm |
xyz |
ice aerosol effective radius
|
REFFSTS |
GMICHEM |
cm |
xyz |
STS aerosol effective radius
|
RET |
Saltwater |
1 |
tile |
surface reynolds number
|
REVSU_CN |
Moist |
kg kg-1 s-1 |
xyz |
evap subl of convective precipitation
|
REVSU_LSAN |
Moist |
kg kg-1 s-1 |
xyz |
evap subl of non convective precipitation
|
REV_AN |
Moist |
kg kg-1 s-1 |
xyz |
evaporation of anvil precipitation
|
REV_CN |
Moist |
kg kg-1 s-1 |
xyz |
evaporation of convective precipitation
|
REV_LS |
Moist |
kg kg-1 s-1 |
xyz |
evaporation of nonanvil large scale precipitation
|
RH1 |
Moist |
1 |
xyz |
relative humidity before moist
|
RH2 |
Moist |
1 |
xyz |
relative humidity after moist
|
RH2M |
Surface |
% |
xy |
near-surface relative humidity
|
RHCLR |
Moist |
1 |
xyz |
RH clear sky
|
RHCmicro |
Moist |
1 |
xyz |
Corrected RHc after micro
|
RHICE |
Moist |
1 |
xyz |
Relative humidity wrt ice
|
RHLIQ |
Moist |
1 |
xyz |
Relative humidity wrt liquid
|
RHO |
Gcm |
|
|
|
RHO |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
RHOSNOW |
Landice |
kg m-3 |
tile |
snow layer density
|
RHX |
Moist |
1 |
xyz |
relative humidity after PDF
|
RI |
Moist |
m |
xyz |
ice phase cloud particle effective radius
|
RI |
Surface |
1 |
xy |
surface bulk richardson number
|
RI |
Turbulence |
1 |
xyz |
Richardson number from Louis
|
RIT |
Lake |
1 |
tile |
surface bulk richardson number
|
RIT |
Landice |
1 |
tile |
surface bulk richardson number
|
RIT |
Land |
|
|
|
RIT |
Catch |
1 |
tile |
surface bulk richardson number
|
RIT |
CatchCN |
1 |
tile |
surface bulk richardson number
|
RIT |
Saltwater |
1 |
tile |
surface bulk richardson number
|
RI_MASK |
Moist |
m |
xyz |
volumetric ice cloud particle volume radius
|
RL |
Moist |
m |
xyz |
liquid cloud particle effective radius
|
RL_MASK |
Moist |
m |
xyz |
volumetric liquid cloud particle volume radius
|
ROOTL |
Surface |
m m-3 |
xy |
root length
|
ROOTL |
Land |
|
|
|
ROOTL |
Vegdyn |
m+2 |
tile |
root length density
|
RR |
Moist |
m |
xyz |
falling rain particle effective radius
|
RS |
Moist |
m |
xyz |
falling ice particle effective radius
|
RSC |
Solar |
W m-2 |
xy |
toa net downward shortwave flux assuming clear sky
|
RSCNA |
Solar |
W m-2 |
xy |
toa net downward shortwave flux assuming clear sky and no aerosol
|
RSCS |
Solar |
W m-2 |
xy |
surface net downward shortwave flux assuming clear sky
|
RSCSNA |
Solar |
W m-2 |
xy |
surface net downward shortwave flux assuming clear sky and no aerosol
|
RSR |
Solar |
W m-2 |
xy |
toa net downward shortwave flux
|
RSRNA |
Solar |
W m-2 |
xy |
toa net downward shortwave flux assuming no aerosol
|
RSRS |
Solar |
W m-2 |
xy |
surface net downward shortwave flux
|
RSRSNA |
Solar |
W m-2 |
xy |
surface net downward shortwave flux assuming no aerosol
|
RSU_AN |
Moist |
kg kg-1 s-1 |
xyz |
sublimation of anvil precipitation
|
RSU_CN |
Moist |
kg kg-1 s-1 |
xyz |
sublimation of convective precipitation
|
RSU_LS |
Moist |
kg kg-1 s-1 |
xyz |
sublimation of nonanvil large scale precipitation
|
RUNOFF |
Surface |
kg m-2 s-1 |
xy |
runoff flux
|
RUNOFF |
Lake |
kg m-2 s-1 |
tile |
runoff flux
|
RUNOFF |
Landice |
kg m-2 s-1 |
tile |
runoff flux
|
RUNOFF |
Land |
|
|
|
RUNOFF |
Catch |
kg m-2 s-1 |
tile |
runoff flux
|
RUNOFF |
CatchCN |
kg m-2 s-1 |
tile |
runoff flux
|
RUNSURF |
Surface |
kg m-2 s-1 |
xy |
overland runoff including throughflow
|
RUNSURF |
Land |
|
|
|
RUNSURF |
Catch |
kg m-2 s-1 |
tile |
overland runoff including throughflow
|
RUNSURF |
CatchCN |
kg m-2 s-1 |
tile |
overland runoff including throughflow
|
RZEQ |
Catch |
kg m-2 |
tile |
root zone equilibrium moisture
|
RZEQ |
CatchCN |
kg m-2 |
tile |
root zone equilibrium moisture
|
RnCL |
Rn |
kg m-2 |
xy |
Rn Column Burden ENSEMBLE
|
RnCLAfri |
Rn |
kg m-2 |
xy |
Rn Column Burden Africa
|
RnCLAsia |
Rn |
kg m-2 |
xy |
Rn Column Burden Asia
|
RnCLAust |
Rn |
kg m-2 |
xy |
Rn Column Burden Australia
|
RnCLEuro |
Rn |
kg m-2 |
xy |
Rn Column Burden Europe
|
RnCLNoAm |
Rn |
kg m-2 |
xy |
Rn Column Burden North America
|
RnCLSoAm |
Rn |
kg m-2 |
xy |
Rn Column Burden South America
|
RnEM |
Rn |
kg m-2 s-1 |
xy |
Rn Emission ENSEMBLE
|
RnEMAfri |
Rn |
kg m-2 s-1 |
xy |
Rn Emission Africa
|
RnEMAsia |
Rn |
kg m-2 s-1 |
xy |
Rn Emission Asia
|
RnEMAust |
Rn |
kg m-2 s-1 |
xy |
Rn Emission Australia
|
RnEMEuro |
Rn |
kg m-2 s-1 |
xy |
Rn Emission Europe
|
RnEMNoAm |
Rn |
kg m-2 s-1 |
xy |
Rn Emission North America
|
RnEMSoAm |
Rn |
kg m-2 s-1 |
xy |
Rn Emission South America
|
RnLS |
Rn |
kg m-2 s-1 |
xy |
Rn Decay ENSEMBLE
|
RnLSAfri |
Rn |
kg m-2 s-1 |
xy |
Rn Decay Africa
|
RnLSAsia |
Rn |
kg m-2 s-1 |
xy |
Rn Decay Asia
|
RnLSAust |
Rn |
kg m-2 s-1 |
xy |
Rn Decay Australia
|
RnLSEuro |
Rn |
kg m-2 s-1 |
xy |
Rn Decay Europe
|
RnLSNoAm |
Rn |
kg m-2 s-1 |
xy |
Rn Decay North America
|
RnLSSoAm |
Rn |
kg m-2 s-1 |
xy |
Rn Decay South America
|
RnSC |
Rn |
molmol |
xy |
Rn Surface Concentration ENSEMBLE
|
RnSCAfri |
Rn |
molmol |
xy |
Rn Surface Concentration Africa
|
RnSCAsia |
Rn |
molmol |
xy |
Rn Surface Concentration Asia
|
RnSCAust |
Rn |
molmol |
xy |
Rn Surface Concentration Australia
|
RnSCEuro |
Rn |
molmol |
xy |
Rn Surface Concentration Europe
|
RnSCNoAm |
Rn |
molmol |
xy |
Rn Surface Concentration North America
|
RnSCSoAm |
Rn |
molmol |
xy |
Rn Surface Concentration South America
|
S |
Gcm |
|
|
|
S |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
S |
FVdycore |
m |
xyz |
mid layer dry static energy
|
S |
DynCore |
m |
xyz |
mid layer dry static energy
|
S |
ARIESg3 |
m |
xyz |
mid layer dry static energy
|
S |
DatmoDyn |
J kg-1 |
xyz |
static energy
|
S |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
SAFDIFFUSE |
Turbulence |
K |
xyz |
dry static energy after diffuse
|
SAFUPDATE |
Turbulence |
K |
xyz |
dry static energy after update
|
SALTFLUX |
Surface |
kg m-2 s-1 |
xy |
salt flux bw saltwater ocean
|
SALTFLUX |
Saltwater |
kg m-2 s-1 |
tile |
salt flux bw saltwater ocean
|
SAT_RAT |
Moist |
1 |
xyz |
saturation ratio after moist
|
SCBASEK |
StratChem |
1 |
xy |
stratosphere base layer
|
SCF |
Moist |
1 |
xyz |
Supercooled cloud fraction
|
SCF_ALL |
Moist |
1 |
xyz |
Supercooled cloud fraction including snow and rain
|
SCSAT |
Surface |
m s-1 |
xy |
saturated stomatal conductance
|
SCSAT |
CatchCN |
m s-1 |
tile |
saturated stomatal conductance
|
SCTO3 |
StratChem |
dobsons |
xy |
total ozone from StratChem
|
SCTROPP |
StratChem |
Pa |
xy |
tropopause pressure used in StratChem
|
SCTTO3 |
StratChem |
dobsons |
xy |
tropospheric total ozone from StratChem
|
SCUNS |
Surface |
m s-1 |
xy |
unstressed stomatal conductance
|
SCUNS |
CatchCN |
m s-1 |
tile |
unstressed stomatal conductance
|
SC_ICE |
Moist |
1 |
xyz |
Effective Freezing RHi
|
SDM |
Moist |
kg kg-1 s-1 |
xyz |
sedimentation sink of cloud ice
|
SDMZ |
Moist |
kg m-2 s-1 |
xy |
sedimentation loss of cloud ice
|
SEASALT |
Moist |
m-3 |
xyz |
Total sea number conc
|
SFCEM |
Irrad |
W m-2 |
xy |
longwave flux emitted from surface
|
SFCEM0 |
Irrad |
W m-2 |
xy |
longwave flux emitted from surface at reference time
|
SFC_CONC_DMS |
AChem |
m-3 |
xy |
Near-surface concentration of DMS in molecules-DMS m-3
|
SFC_CONC_H2SO4 |
AChem |
m-3 |
xy |
Near-surface concentration of H2SO4 in molecules-H2SO4 m-3
|
SFC_CONC_MSA |
AChem |
m-3 |
xy |
Near-surface concentration of MSA in molecules-MSA m-3
|
SFC_CONC_NH3 |
AChem |
m-3 |
xy |
Near-surface concentration of NH3 in molecules-NH3 m-3
|
SFC_CONC_SO2 |
AChem |
m-3 |
xy |
Near-surface concentration of SO2 in molecules-SO2 m-3
|
SFC_CONC_SOAG |
AChem |
m-3 |
xy |
Near-surface concentration of SOA(gas) in molecules-SOA m-3
|
SFC_DGN_DRY_ACC |
MAMchem |
m |
xy |
Dry size of Accumulation mode number size distribution in the surface model layer
|
SFC_DGN_DRY_AIT |
MAMchem |
m |
xy |
Dry size of Aitken mode number size distribution in the surface model layer
|
SFC_DGN_DRY_CDU |
MAMchem |
m |
xy |
Dry size of Coarse Dust mode number size distribution in the surface model layer
|
SFC_DGN_DRY_CSS |
MAMchem |
m |
xy |
Dry size of Coarse Sea Salt mode number size distribution in the surface model layer
|
SFC_DGN_DRY_FDU |
MAMchem |
m |
xy |
Dry size of Fine Dust mode number size distribution in the surface model layer
|
SFC_DGN_DRY_FSS |
MAMchem |
m |
xy |
Dry size of Fine Sea Salt mode number size distribution in the surface model layer
|
SFC_DGN_DRY_PCM |
MAMchem |
m |
xy |
Dry size of Primary Carbon mode number size distribution in the surface model layer
|
SFC_DGN_WET_ACC |
MAMchem |
m |
xy |
Wet size of Accumulation mode number size distribution in the surface model layer
|
SFC_DGN_WET_AIT |
MAMchem |
m |
xy |
Wet size of Aitken mode number size distribution in the surface model layer
|
SFC_DGN_WET_CDU |
MAMchem |
m |
xy |
Wet size of Coarse Dust mode number size distribution in the surface model layer
|
SFC_DGN_WET_CSS |
MAMchem |
m |
xy |
Wet size of Coarse Sea Salt mode number size distribution in the surface model layer
|
SFC_DGN_WET_FDU |
MAMchem |
m |
xy |
Wet size of Fine Dust mode number size distribution in the surface model layer
|
SFC_DGN_WET_FSS |
MAMchem |
m |
xy |
Wet size of Fine Sea Salt mode number size distribution in the surface model layer
|
SFC_DGN_WET_PCM |
MAMchem |
m |
xy |
Wet size of Primary Carbon mode number size distribution in the surface model layer
|
SFC_NUM_ACC |
MAMchem |
m-3 |
xy |
Number of particles in Accumulation mode in the surface model layer
|
SFC_NUM_AIT |
MAMchem |
m-3 |
xy |
Number of particles in Aitken mode in the surface model layer
|
SFC_NUM_CDU |
MAMchem |
m-3 |
xy |
Number of particles in Coarse Dust mode in the surface model layer
|
SFC_NUM_CSS |
MAMchem |
m-3 |
xy |
Number of particles in Coarse Sea Salt mode in the surface model layer
|
SFC_NUM_FDU |
MAMchem |
m-3 |
xy |
Number of particles in Fine Dust mode in the surface model layer
|
SFC_NUM_FSS |
MAMchem |
m-3 |
xy |
Number of particles in Fine Sea Salt mode in the surface model layer
|
SFC_NUM_PCM |
MAMchem |
m-3 |
xy |
Number of particles in Primary Carbon mode in the surface model layer
|
SFC_WTR_ACC |
MAMchem |
kg m-3 |
xy |
Aerosol water in Accumulation mode in the surface model layer
|
SFC_WTR_AIT |
MAMchem |
kg m-3 |
xy |
Aerosol water in Aitken mode in the surface model layer
|
SFC_WTR_CDU |
MAMchem |
kg m-3 |
xy |
Aerosol water in Coarse Dust mode in the surface model layer
|
SFC_WTR_CSS |
MAMchem |
kg m-3 |
xy |
Aerosol water in Coarse Sea Salt mode in the surface model layer
|
SFC_WTR_FDU |
MAMchem |
kg m-3 |
xy |
Aerosol water in Fine Dust mode in the surface model layer
|
SFC_WTR_FSS |
MAMchem |
kg m-3 |
xy |
Aerosol water in Fine Sea Salt mode in the surface model layer
|
SFC_WTR_PCM |
MAMchem |
kg m-3 |
xy |
Aerosol water in Primary Carbon mode in the surface model layer
|
SGFCLD |
Satsim |
1 |
xyz |
summed subgrid cloud fraction from scops
|
SGH |
Agcm |
m |
xy |
isotropic stdv of GWD topography
|
SGH |
Gwd |
m |
xy |
standard deviation of topography
|
SH |
Surface |
W m-2 |
xy |
sensible heat flux from turbulence
|
SHAT |
Surface |
m+2 s-2 |
xy |
effective surface dry static energy
|
SHICE |
Surface |
W m-2 |
xy |
sea ice upward sensible heat flux
|
SHICE |
Saltwater |
W m-2 |
tile |
sea ice upward sensible heat flux
|
SHLAND |
Surface |
W m-2 |
xy |
Sensible heat flux land
|
SHLAND |
Land |
|
|
|
SHLAND |
Catch |
W m-2 |
tile |
Sensible heat flux land
|
SHLAND |
CatchCN |
W m-2 |
tile |
Sensible heat flux land
|
SHOBS |
DatmoDyn |
W m-2 |
xy |
Obs. sensible heat flux (surface)
|
SHOUT |
Surface |
W m-2 |
xy |
upward sensible heat flux
|
SHOUT |
Lake |
W m-2 |
tile |
upward sensible heat flux
|
SHOUT |
Landice |
W m-2 |
tile |
upward sensible heat flux
|
SHOUT |
Land |
|
|
|
SHOUT |
Catch |
W m-2 |
tile |
upward sensible heat flux
|
SHOUT |
CatchCN |
W m-2 |
tile |
upward sensible heat flux
|
SHOUT |
Saltwater |
W m-2 |
tile |
upward sensible heat flux
|
SHSNOW |
Surface |
W m-2 |
xy |
downward heat flux into snow
|
SHSNOW |
Land |
|
|
|
SHSNOW |
Catch |
W m-2 |
tile |
downward heat flux into snow
|
SHSNOW |
CatchCN |
W m-2 |
tile |
downward heat flux into snow
|
SHWTR |
Surface |
W m-2 |
xy |
open water upward sensible heat flux
|
SHWTR |
Saltwater |
W m-2 |
tile |
open water upward sensible heat flux
|
SIALB |
Saltwater |
1 |
tile |
broad band sea ice albedo
|
SIF |
Surface |
umol m-2 sm s-1 |
xy |
solar induced fluorescence
|
SIF |
CatchCN |
umol m-2 sm s-1 |
tile |
solar induced fluorescence
|
SIGW_CNV |
Moist |
m2 s-2 |
xyz |
Subgrid Scale vertical velocity variance from convection
|
SIGW_GW |
Moist |
m2 s-2 |
xyz |
Subgrid Scale vertical velocity variance from GW
|
SIGW_RC |
Moist |
m s-1 |
xyz |
Mean subgrid Scale vertical velocity from rad cooling
|
SIGW_TURB |
Moist |
m2 s-2 |
xyz |
Subgrid Scale vertical velocity variance from turbulence
|
SIT |
Physics |
Pa m+2 s-3 |
xyz |
pressure weighted tendency of dry static energy due to turbulence
|
SLP |
FVdycore |
Pa |
xy |
sea level pressure
|
SLP |
DynCore |
Pa |
xy |
sea level pressure
|
SLP |
ARIESg3 |
Pa |
xy |
sea level pressure
|
SLRSF |
Solar |
W m-2 |
xy |
surface incoming shortwave flux
|
SLRSFC |
Solar |
W m-2 |
xy |
surface incoming shortwave flux assuming clear sky
|
SLRSFCNA |
Solar |
W m-2 |
xy |
surface incoming shortwave flux assuming clear clean sky
|
SLRSFNA |
Solar |
W m-2 |
xy |
surface incoming shortwave flux assuming clean sky
|
SLRSUF |
Solar |
W m-2 |
xy |
surface outgoing shortwave flux
|
SLRSUFC |
Solar |
W m-2 |
xy |
surface outgoing shortwave flux assuming clear sky
|
SLRSUFCNA |
Solar |
W m-2 |
xy |
surface outgoing shortwave flux assuming clear clean sky
|
SLRSUFNA |
Solar |
W m-2 |
xy |
surface outgoing shortwave flux assuming clean sky
|
SLRTP |
Solar |
W m-2 |
xy |
toa incoming shortwave flux
|
SLV |
Gcm |
|
|
|
SLV |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
SMAX_ICE |
Moist |
% |
xyz |
Maximum incloud supersaturation for ice
|
SMAX_LIQ |
Moist |
% |
xyz |
Maximum incloud supersaturation for liquid
|
SMELT |
Surface |
kg m-2 s-1 |
xy |
snowmelt flux
|
SMELT |
Landice |
kg m-2 s-1 |
tile |
snowmelt flux
|
SMELT |
Land |
|
|
|
SMELT |
Catch |
kg m-2 s-1 |
tile |
snowmelt flux
|
SMELT |
CatchCN |
kg m-2 s-1 |
tile |
snowmelt flux
|
SMIXT |
Turbulence |
J kg-1 |
xy |
s of optimal mixture for BRV
|
SMLAND |
Surface |
kg m-2 s-1 |
xy |
Snowmelt flux land
|
SMLAND |
Land |
|
|
|
SMLAND |
Catch |
kg m-2 s-1 |
tile |
Snowmelt flux land
|
SMLAND |
CatchCN |
kg m-2 s-1 |
tile |
Snowmelt flux land
|
SMOIST |
Moist |
m+2 s-2 |
xyz |
dry static energy after all of moist
|
SNDZ1PERC |
Landice |
m s-1 |
tile |
top snow layer thickness change due to percolation
|
SNDZPREC |
Landice |
m s-1 |
tile |
top snow layer thickness change due to precip
|
SNDZSC |
Landice |
m s-1 |
tile |
top snow layer thickness change due to sub con
|
SNICEALB |
Landice |
1 |
tile |
aggregated snow ice broadband albedo
|
SNO |
Moist |
kg m-2 s-1 |
xy |
snowfall
|
SNO |
Surface |
kg m-2 s-1 |
xy |
snowfall
|
SNOICE |
Surface |
m s-1 |
xy |
snow-ice formation
|
SNOICE |
Saltwater |
m s-1 |
tile |
snow ice formation
|
SNOLAND |
Surface |
kg m-2 s-1 |
xy |
snowfall land
|
SNOLAND |
Land |
|
|
|
SNOLAND |
Catch |
kg m-2 s-1 |
tile |
snowfall land
|
SNOLAND |
CatchCN |
kg m-2 s-1 |
tile |
snowfall land
|
SNOMAS |
Gcm |
|
|
|
SNOMAS |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
SNOMAS |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
SNOMAS |
Surface |
kg m-2 |
xy |
snow mass
|
SNOMAS_GL |
Landice |
kg m-2 |
tile |
snow mass over glaciated surface
|
SNOONICE |
Saltwater |
kg m-2 s-1 |
tile |
snow fall on top of ice
|
SNOWALB |
Landice |
1 |
tile |
snow broadband albedo
|
SNOWDP |
Surface |
m |
xy |
snow depth
|
SNOWDP |
Land |
|
|
|
SNOWDP |
Catch |
m |
tile |
snow depth
|
SNOWDP |
CatchCN |
m |
tile |
snow depth
|
SNOWDP_GL |
Landice |
m |
tile |
snow depth over glaciated surface
|
SNOWMASS |
Landice |
kg m-2 |
tile |
snow mass over glaciated surface
|
SNOWMASS |
Land |
|
|
|
SNOWMASS |
Catch |
kg m-2 |
tile |
snow mass
|
SNOWMASS |
CatchCN |
kg m-2 |
tile |
snow mass
|
SNOWMELT_LS |
Moist |
K s-1 |
xyz |
Tendency in T from micro snow melting
|
SNOWOCN |
Surface |
kg m-2 s-1 |
xy |
ocean snowfall
|
SNOWOCN |
Saltwater |
kg m-2 s-1 |
tile |
ocean snowfall
|
SO2CMASS |
SU |
kg m-2 |
xy |
SO2 Column Mass Density ENSEMBLE
|
SO2CMASSanth |
SU |
kg m-2 |
xy |
SO2 Column Mass Density (Anthropogenic)
|
SO2CMASSstrat |
SU |
kg m-2 |
xy |
SO2 Column Mass Density (Stratospheric)
|
SO2CMASSvolc |
SU |
kg m-2 |
xy |
SO2 Column Mass Density (Volcanic)
|
SO2EMAN |
SU |
kg m-2 s-1 |
xy |
SO2 Anthropogenic Emissions ENSEMBLE
|
SO2EMANanth |
SU |
kg m-2 s-1 |
xy |
SO2 Anthropogenic Emissions (Anthropogenic)
|
SO2EMANstrat |
SU |
kg m-2 s-1 |
xy |
SO2 Anthropogenic Emissions (Stratospheric)
|
SO2EMANvolc |
SU |
kg m-2 s-1 |
xy |
SO2 Anthropogenic Emissions (Volcanic)
|
SO2EMBB |
SU |
kg m-2 s-1 |
xy |
SO2 Biomass Burning Emissions ENSEMBLE
|
SO2EMBBanth |
SU |
kg m-2 s-1 |
xy |
SO2 Biomass Burning Emissions (Anthropogenic)
|
SO2EMBBstrat |
SU |
kg m-2 s-1 |
xy |
SO2 Biomass Burning Emissions (Stratospheric)
|
SO2EMBBvolc |
SU |
kg m-2 s-1 |
xy |
SO2 Biomass Burning Emissions (Volcanic)
|
SO2EMVE |
SU |
kg m-2 s-1 |
xy |
SO2 Volcanic (explosive) Emissions ENSEMBLE
|
SO2EMVEanth |
SU |
kg m-2 s-1 |
xy |
SO2 Volcanic (explosive) Emissions (Anthropogenic)
|
SO2EMVEstrat |
SU |
kg m-2 s-1 |
xy |
SO2 Volcanic (explosive) Emissions (Stratospheric)
|
SO2EMVEvolc |
SU |
kg m-2 s-1 |
xy |
SO2 Volcanic (explosive) Emissions (Volcanic)
|
SO2EMVN |
SU |
kg m-2 s-1 |
xy |
SO2 Volcanic (non-explosive) Emissions ENSEMBLE
|
SO2EMVNanth |
SU |
kg m-2 s-1 |
xy |
SO2 Volcanic (non-explosive) Emissions (Anthropogenic)
|
SO2EMVNstrat |
SU |
kg m-2 s-1 |
xy |
SO2 Volcanic (non-explosive) Emissions (Stratospheric)
|
SO2EMVNvolc |
SU |
kg m-2 s-1 |
xy |
SO2 Volcanic (non-explosive) Emissions (Volcanic)
|
SO2SMASS |
SU |
kg m-3 |
xy |
SO2 Surface Mass Concentration ENSEMBLE
|
SO2SMASSanth |
SU |
kg m-3 |
xy |
SO2 Surface Mass Concentration (Anthropogenic)
|
SO2SMASSstrat |
SU |
kg m-3 |
xy |
SO2 Surface Mass Concentration (Stratospheric)
|
SO2SMASSvolc |
SU |
kg m-3 |
xy |
SO2 Surface Mass Concentration (Volcanic)
|
SO4 |
Moist |
m-3 |
xyz |
Sulfate number conc.
|
SO4CMASS |
SU |
kg m-2 |
xy |
SO4 Column Mass Density ENSEMBLE
|
SO4CMASSanth |
SU |
kg m-2 |
xy |
SO4 Column Mass Density (Anthropogenic)
|
SO4CMASSstrat |
SU |
kg m-2 |
xy |
SO4 Column Mass Density (Stratospheric)
|
SO4CMASSvolc |
SU |
kg m-2 |
xy |
SO4 Column Mass Density (Volcanic)
|
SO4EMAN |
SU |
kg m-2 s-1 |
xy |
SO4 Anthropogenic Emissions ENSEMBLE
|
SO4EMANanth |
SU |
kg m-2 s-1 |
xy |
SO4 Anthropogenic Emissions (Anthropogenic)
|
SO4EMANstrat |
SU |
kg m-2 s-1 |
xy |
SO4 Anthropogenic Emissions (Stratospheric)
|
SO4EMANvolc |
SU |
kg m-2 s-1 |
xy |
SO4 Anthropogenic Emissions (Volcanic)
|
SO4HYGRO |
GMICHEM |
1 |
xyz |
hygroscopic growth of sulfate
|
SO4MASS |
SU |
kg kg-1 |
xyz |
SO4 Aerosol Mass Mixing Ratio ENSEMBLE
|
SO4MASSanth |
SU |
kg kg-1 |
xyz |
SO4 Aerosol Mass Mixing Ratio (Anthropogenic)
|
SO4MASSstrat |
SU |
kg kg-1 |
xyz |
SO4 Aerosol Mass Mixing Ratio (Stratospheric)
|
SO4MASSvolc |
SU |
kg kg-1 |
xyz |
SO4 Aerosol Mass Mixing Ratio (Volcanic)
|
SO4OD |
GMICHEM |
1 |
xyz |
sulfate optical depth (400 nm)
|
SO4SA |
GMICHEM |
cm+2 cm-3 |
xyz |
sulfate surface area
|
SO4SAREA |
SU |
m2 m-3 |
xyz |
SO4 Surface Area Density ENSEMBLE
|
SO4SAREAanth |
SU |
m2 m-3 |
xyz |
SO4 Surface Area Density (Anthropogenic)
|
SO4SAREAstrat |
SU |
m2 m-3 |
xyz |
SO4 Surface Area Density (Stratospheric)
|
SO4SAREAvolc |
SU |
m2 m-3 |
xyz |
SO4 Surface Area Density (Volcanic)
|
SO4SMASS |
SU |
kg m-3 |
xy |
SO4 Surface Mass Concentration ENSEMBLE
|
SO4SMASSanth |
SU |
kg m-3 |
xy |
SO4 Surface Mass Concentration (Anthropogenic)
|
SO4SMASSstrat |
SU |
kg m-3 |
xy |
SO4 Surface Mass Concentration (Stratospheric)
|
SO4SMASSvolc |
SU |
kg m-3 |
xy |
SO4 Surface Mass Concentration (Volcanic)
|
SO4SNUM |
SU |
m-3 |
xyz |
SO4 Number Density ENSEMBLE
|
SO4SNUManth |
SU |
m-3 |
xyz |
SO4 Number Density (Anthropogenic)
|
SO4SNUMstrat |
SU |
m-3 |
xyz |
SO4 Number Density (Stratospheric)
|
SO4SNUMvolc |
SU |
m-3 |
xyz |
SO4 Number Density (Volcanic)
|
SPEED |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
SPEED |
FVdycore |
m s-1 |
xy |
surface wind speed
|
SPEED |
DynCore |
m s-1 |
xy |
surface wind speed
|
SPEED |
ARIESg3 |
m s-1 |
xy |
surface wind speed
|
SPEED |
DatmoDyn |
m s-1 |
xy |
Surface wind speed
|
SPLAND |
Surface |
W m-2 |
xy |
rate of spurious land energy source
|
SPLAND |
Land |
|
|
|
SPLAND |
Catch |
W m-2 |
tile |
rate of spurious land energy source
|
SPLAND |
CatchCN |
W m-2 |
tile |
rate of spurious land energy source
|
SPSNOW |
Surface |
W m-2 |
xy |
rate of spurious snow energy
|
SPSNOW |
Land |
|
|
|
SPSNOW |
Catch |
W m-2 |
tile |
rate of spurious snow energy
|
SPSNOW |
CatchCN |
W m-2 |
tile |
rate of spurious snow energy
|
SPWATR |
Surface |
kg m-2 s-1 |
xy |
rate of spurious land water source
|
SPWATR |
Land |
|
|
|
SPWATR |
Catch |
kg m-2 s-1 |
tile |
rate of spurious land water source
|
SPWATR |
CatchCN |
kg m-2 s-1 |
tile |
rate of spurious land water source
|
SRFDIS |
Turbulence |
K s-1 Pa |
xy |
p-weighted frictional heating rate from surface drag
|
SSAERIDX |
SS |
1 |
xy |
Sea Salt TOMS UV Aerosol Index
|
SSAHYGRO |
GMICHEM |
1 |
xyz |
hygroscopic growth of accumulated sea salt
|
SSANA |
GAAS |
kgkg |
xyz |
Sea-salt Mixing Ratio Analysis
|
SSANGSTR |
SS |
1 |
xy |
Sea Salt Angstrom parameter [470-870 nm]
|
SSAOD |
GMICHEM |
1 |
xyz |
accumulated sea salt optical depth (400 nm)
|
SSASA |
GMICHEM |
cm+2 cm-3 |
xyz |
accumulated sea salt surface area
|
SSCHYGRO |
GMICHEM |
1 |
xyz |
hygroscopic growth of coarse sea salt
|
SSCMASS |
SS |
kg m-2 |
xy |
Sea Salt Column Mass Density
|
SSCMASS |
MAMchem |
kg m-2 |
xy |
Sea Salt Column Mass Density
|
SSCMASS25 |
SS |
kg m-2 |
xy |
Sea Salt Column Mass Density - PM 2.5
|
SSCMASS25 |
MAMchem |
kg m-2 |
xy |
Sea Salt Column Mass Density - PM 2.5
|
SSCOD |
GMICHEM |
1 |
xyz |
coarse sea salt optical depth (400 nm)
|
SSCONC |
SS |
kg m-3 |
xyz |
Sea Salt Mass Concentration
|
SSCONC |
MAMchem |
kg m-3 |
xyz |
Sea Salt Mass Concentration
|
SSCSA |
GMICHEM |
cm+2 cm-3 |
xyz |
coarse sea salt surface area
|
SSDP001 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Dry Deposition Bin 001
|
SSDP002 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Dry Deposition Bin 002
|
SSDP003 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Dry Deposition Bin 003
|
SSDP004 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Dry Deposition Bin 004
|
SSDP005 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Dry Deposition Bin 005
|
SSEM001 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Emission Bin 001
|
SSEM002 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Emission Bin 002
|
SSEM003 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Emission Bin 003
|
SSEM004 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Emission Bin 004
|
SSEM005 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Emission Bin 005
|
SSEMACC |
MAMchem |
kg m-2 s-1 |
xy |
Sea Salt Emission Accumulation mode
|
SSEMAIT |
MAMchem |
kg m-2 s-1 |
xy |
Sea Salt Emission Aitken mode
|
SSEMCSS |
MAMchem |
kg m-2 s-1 |
xy |
Sea Salt Emission Coarse Seasalt mode
|
SSEMFSS |
MAMchem |
kg m-2 s-1 |
xy |
Sea Salt Emission Fine Seasalt mode
|
SSEXTCOEF |
SS |
m-1 |
xyz |
Sea Salt Extinction Coefficient [550 nm]
|
SSEXTT25 |
SS |
1 |
xy |
Sea Salt Extinction AOT [550 nm] - PM 2.5
|
SSEXTTAU |
SS |
1 |
xy |
Sea Salt Extinction AOT [550 nm]
|
SSEXTTFM |
SS |
1 |
xy |
Sea Salt Extinction AOT [550 nm] - PM 1.0 um
|
SSFLUXU |
SS |
kg m-1 s-1 |
xy |
Sea Salt column u-wind mass flux
|
SSFLUXU |
MAMchem |
kg m-1 s-1 |
xy |
Sea Salt column u-wind mass flux
|
SSFLUXV |
SS |
kg m-1 s-1 |
xy |
Sea Salt column v-wind mass flux
|
SSFLUXV |
MAMchem |
kg m-1 s-1 |
xy |
Sea Salt column v-wind mass flux
|
SSH |
Gcm |
|
|
|
SSH |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
SSINC |
GAAS |
kgkg |
xyz |
Sea-salt Mixing Ratio Analysis Increments
|
SSKINW |
Surface |
psu |
xy |
sea skin layer salinity
|
SSKINW2 |
Saltwater |
psu |
tile |
sea skin layer salinity
|
SSMASS |
SS |
kg kg-1 |
xyz |
Sea Salt Mass Mixing Ratio
|
SSMASS |
MAMchem |
kg kg-1 |
xyz |
Sea Salt Mass Mixing Ratio
|
SSMASS25 |
SS |
kg kg-1 |
xyz |
Sea Salt Mass Mixing Ratio - PM 2.5
|
SSMASS25 |
MAMchem |
kg kg-1 |
xyz |
Sea Salt Mass Mixing Ratio - PM 2.5
|
SSSCACOEF |
SS |
m-1 |
xyz |
Sea Salt Scattering Coefficient [550 nm]
|
SSSCAT25 |
SS |
1 |
xy |
Sea Salt Scattering AOT [550 nm] - PM 2.5
|
SSSCATAU |
SS |
1 |
xy |
Sea Salt Scattering AOT [550 nm]
|
SSSCATFM |
SS |
1 |
xy |
Sea Salt Scattering AOT [550 nm] - PM 1.0 um
|
SSSD001 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Sedimentation Bin 001
|
SSSD002 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Sedimentation Bin 002
|
SSSD003 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Sedimentation Bin 003
|
SSSD004 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Sedimentation Bin 004
|
SSSD005 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Sedimentation Bin 005
|
SSSMASS |
SS |
kg m-3 |
xy |
Sea Salt Surface Mass Concentration
|
SSSMASS |
MAMchem |
kg m-3 |
xy |
Sea Salt Surface Mass Concentration
|
SSSMASS25 |
SS |
kg m-3 |
xy |
Sea Salt Surface Mass Concentration - PM 2.5
|
SSSMASS25 |
MAMchem |
kg m-3 |
xy |
Sea Salt Surface Mass Concentration - PM 2.5
|
SSSV001 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Convective Scavenging Bin 001
|
SSSV002 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Convective Scavenging Bin 002
|
SSSV003 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Convective Scavenging Bin 003
|
SSSV004 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Convective Scavenging Bin 004
|
SSSV005 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Convective Scavenging Bin 005
|
SSWT001 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Wet Deposition Bin 001
|
SSWT002 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Wet Deposition Bin 002
|
SSWT003 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Wet Deposition Bin 003
|
SSWT004 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Wet Deposition Bin 004
|
SSWT005 |
SS |
kg m-2 s-1 |
xy |
Sea Salt Wet Deposition Bin 005
|
SUANA |
GAAS |
kgkg |
xyz |
Sulfate Mixing Ratio Analysis
|
SUANGSTR |
SU |
1 |
xy |
SO4 Angstrom parameter [470-870 nm] ENSEMBLE
|
SUANGSTRanth |
SU |
1 |
xy |
SO4 Angstrom parameter [470-870 nm] (Anthropogenic)
|
SUANGSTRstrat |
SU |
1 |
xy |
SO4 Angstrom parameter [470-870 nm] (Stratospheric)
|
SUANGSTRvolc |
SU |
1 |
xy |
SO4 Angstrom parameter [470-870 nm] (Volcanic)
|
SUBCZ |
Moist |
kg m-2 s-1 |
xy |
sublimation loss of cloud ice
|
SUBLC |
Moist |
kg kg-1 s-1 |
xyz |
sublimation of cloud ice
|
SUBLIM |
Surface |
kg m-2 s-1 |
xy |
sublimation
|
SUBLIM |
Lake |
kg m-2 s-1 |
tile |
sublimation
|
SUBLIM |
Landice |
kg m-2 s-1 |
tile |
sublimation
|
SUBLIM |
Land |
|
|
|
SUBLIM |
Catch |
kg m-2 s-1 |
tile |
sublimation
|
SUBLIM |
CatchCN |
kg m-2 s-1 |
tile |
sublimation
|
SUBLIM |
Saltwater |
kg m-2 s-1 |
tile |
sublimation
|
SUBPZ |
Moist |
kg m-2 s-1 |
xy |
sublimation loss of precip ice
|
SUCONC |
SU |
kg m-3 |
xyz |
SO4 Aerosol Mass Concentration ENSEMBLE
|
SUCONCanth |
SU |
kg m-3 |
xyz |
SO4 Aerosol Mass Concentration (Anthropogenic)
|
SUCONCstrat |
SU |
kg m-3 |
xyz |
SO4 Aerosol Mass Concentration (Stratospheric)
|
SUCONCvolc |
SU |
kg m-3 |
xyz |
SO4 Aerosol Mass Concentration (Volcanic)
|
SUDP001 |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 001 ENSEMBLE
|
SUDP001anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 001 (Anthropogenic)
|
SUDP001strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 001 (Stratospheric)
|
SUDP001volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 001 (Volcanic)
|
SUDP002 |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 002 ENSEMBLE
|
SUDP002anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 002 (Anthropogenic)
|
SUDP002strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 002 (Stratospheric)
|
SUDP002volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 002 (Volcanic)
|
SUDP003 |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 003 ENSEMBLE
|
SUDP003anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 003 (Anthropogenic)
|
SUDP003strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 003 (Stratospheric)
|
SUDP003volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 003 (Volcanic)
|
SUDP004 |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 004 ENSEMBLE
|
SUDP004anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 004 (Anthropogenic)
|
SUDP004strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 004 (Stratospheric)
|
SUDP004volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Dry Deposition Bin 004 (Volcanic)
|
SUEM001 |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 001 ENSEMBLE
|
SUEM001anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 001 (Anthropogenic)
|
SUEM001strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 001 (Stratospheric)
|
SUEM001volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 001 (Volcanic)
|
SUEM002 |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 002 ENSEMBLE
|
SUEM002anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 002 (Anthropogenic)
|
SUEM002strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 002 (Stratospheric)
|
SUEM002volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 002 (Volcanic)
|
SUEM003 |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 003 ENSEMBLE
|
SUEM003anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 003 (Anthropogenic)
|
SUEM003strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 003 (Stratospheric)
|
SUEM003volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 003 (Volcanic)
|
SUEM004 |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 004 ENSEMBLE
|
SUEM004anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 004 (Anthropogenic)
|
SUEM004strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 004 (Stratospheric)
|
SUEM004volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Emission Bin 004 (Volcanic)
|
SUEXTCOEF |
SU |
m-1 |
xyz |
SO4 Extinction Coefficient [550 nm] ENSEMBLE
|
SUEXTCOEFanth |
SU |
m-1 |
xyz |
SO4 Extinction Coefficient [550 nm] (Anthropogenic)
|
SUEXTCOEFstrat |
SU |
m-1 |
xyz |
SO4 Extinction Coefficient [550 nm] (Stratospheric)
|
SUEXTCOEFvolc |
SU |
m-1 |
xyz |
SO4 Extinction Coefficient [550 nm] (Volcanic)
|
SUEXTTAU |
SU |
1 |
xy |
SO4 Extinction AOT [550 nm] ENSEMBLE
|
SUEXTTAUanth |
SU |
1 |
xy |
SO4 Extinction AOT [550 nm] (Anthropogenic)
|
SUEXTTAUstrat |
SU |
1 |
xy |
SO4 Extinction AOT [550 nm] (Stratospheric)
|
SUEXTTAUvolc |
SU |
1 |
xy |
SO4 Extinction AOT [550 nm] (Volcanic)
|
SUFLUXU |
SU |
kg m-1 s-1 |
xy |
SO4 column u-wind mass flux ENSEMBLE
|
SUFLUXUanth |
SU |
kg m-1 s-1 |
xy |
SO4 column u-wind mass flux (Anthropogenic)
|
SUFLUXUstrat |
SU |
kg m-1 s-1 |
xy |
SO4 column u-wind mass flux (Stratospheric)
|
SUFLUXUvolc |
SU |
kg m-1 s-1 |
xy |
SO4 column u-wind mass flux (Volcanic)
|
SUFLUXV |
SU |
kg m-1 s-1 |
xy |
SO4 column v-wind mass flux ENSEMBLE
|
SUFLUXVanth |
SU |
kg m-1 s-1 |
xy |
SO4 column v-wind mass flux (Anthropogenic)
|
SUFLUXVstrat |
SU |
kg m-1 s-1 |
xy |
SO4 column v-wind mass flux (Stratospheric)
|
SUFLUXVvolc |
SU |
kg m-1 s-1 |
xy |
SO4 column v-wind mass flux (Volcanic)
|
SUINC |
GAAS |
kgkg |
xyz |
Sulfate Mixing Ratio Analysis Increments
|
SUPMSA |
SU |
kg m-2 s-1 |
xy |
MSA Prod from DMS Oxidation [column] ENSEMBLE
|
SUPMSAanth |
SU |
kg m-2 s-1 |
xy |
MSA Prod from DMS Oxidation [column] (Anthropogenic)
|
SUPMSAstrat |
SU |
kg m-2 s-1 |
xy |
MSA Prod from DMS Oxidation [column] (Stratospheric)
|
SUPMSAvolc |
SU |
kg m-2 s-1 |
xy |
MSA Prod from DMS Oxidation [column] (Volcanic)
|
SUPSO2 |
SU |
kg m-2 s-1 |
xy |
SO2 Prod from DMS Oxidation [column] ENSEMBLE
|
SUPSO2anth |
SU |
kg m-2 s-1 |
xy |
SO2 Prod from DMS Oxidation [column] (Anthropogenic)
|
SUPSO2strat |
SU |
kg m-2 s-1 |
xy |
SO2 Prod from DMS Oxidation [column] (Stratospheric)
|
SUPSO2volc |
SU |
kg m-2 s-1 |
xy |
SO2 Prod from DMS Oxidation [column] (Volcanic)
|
SUPSO4AQ |
SU |
kg m-2 s-1 |
xy |
SO4 Prod from Aqueous SO2 Oxidation [column] ENSEMBLE
|
SUPSO4AQanth |
SU |
kg m-2 s-1 |
xy |
SO4 Prod from Aqueous SO2 Oxidation [column] (Anthropogenic)
|
SUPSO4AQstrat |
SU |
kg m-2 s-1 |
xy |
SO4 Prod from Aqueous SO2 Oxidation [column] (Stratospheric)
|
SUPSO4AQvolc |
SU |
kg m-2 s-1 |
xy |
SO4 Prod from Aqueous SO2 Oxidation [column] (Volcanic)
|
SUPSO4G |
SU |
kg m-2 s-1 |
xy |
SO4 Prod from Gaseous SO2 Oxidation [column] ENSEMBLE
|
SUPSO4Ganth |
SU |
kg m-2 s-1 |
xy |
SO4 Prod from Gaseous SO2 Oxidation [column] (Anthropogenic)
|
SUPSO4Gstrat |
SU |
kg m-2 s-1 |
xy |
SO4 Prod from Gaseous SO2 Oxidation [column] (Stratospheric)
|
SUPSO4Gvolc |
SU |
kg m-2 s-1 |
xy |
SO4 Prod from Gaseous SO2 Oxidation [column] (Volcanic)
|
SUPSO4WT |
SU |
kg m-2 s-1 |
xy |
SO4 Prod from Aqueous SO2 Oxidation (wet dep) [column] ENSEMBLE
|
SUPSO4WTanth |
SU |
kg m-2 s-1 |
xy |
SO4 Prod from Aqueous SO2 Oxidation (wet dep) [column] (Anthropogenic)
|
SUPSO4WTstrat |
SU |
kg m-2 s-1 |
xy |
SO4 Prod from Aqueous SO2 Oxidation (wet dep) [column] (Stratospheric)
|
SUPSO4WTvolc |
SU |
kg m-2 s-1 |
xy |
SO4 Prod from Aqueous SO2 Oxidation (wet dep) [column] (Volcanic)
|
SUSCACOEF |
SU |
m-1 |
xyz |
SO4 Scattering Coefficient [550 nm] ENSEMBLE
|
SUSCACOEFanth |
SU |
m-1 |
xyz |
SO4 Scattering Coefficient [550 nm] (Anthropogenic)
|
SUSCACOEFstrat |
SU |
m-1 |
xyz |
SO4 Scattering Coefficient [550 nm] (Stratospheric)
|
SUSCACOEFvolc |
SU |
m-1 |
xyz |
SO4 Scattering Coefficient [550 nm] (Volcanic)
|
SUSCATAU |
SU |
1 |
xy |
SO4 Scattering AOT [550 nm] ENSEMBLE
|
SUSCATAUanth |
SU |
1 |
xy |
SO4 Scattering AOT [550 nm] (Anthropogenic)
|
SUSCATAUstrat |
SU |
1 |
xy |
SO4 Scattering AOT [550 nm] (Stratospheric)
|
SUSCATAUvolc |
SU |
1 |
xy |
SO4 Scattering AOT [550 nm] (Volcanic)
|
SUSD001 |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 001 ENSEMBLE
|
SUSD001anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 001 (Anthropogenic)
|
SUSD001strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 001 (Stratospheric)
|
SUSD001volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 001 (Volcanic)
|
SUSD002 |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 002 ENSEMBLE
|
SUSD002anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 002 (Anthropogenic)
|
SUSD002strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 002 (Stratospheric)
|
SUSD002volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 002 (Volcanic)
|
SUSD003 |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 003 ENSEMBLE
|
SUSD003anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 003 (Anthropogenic)
|
SUSD003strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 003 (Stratospheric)
|
SUSD003volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 003 (Volcanic)
|
SUSD004 |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 004 ENSEMBLE
|
SUSD004anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 004 (Anthropogenic)
|
SUSD004strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 004 (Stratospheric)
|
SUSD004volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Settling Bin 004 (Volcanic)
|
SUSV001 |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 001 ENSEMBLE
|
SUSV001anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 001 (Anthropogenic)
|
SUSV001strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 001 (Stratospheric)
|
SUSV001volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 001 (Volcanic)
|
SUSV002 |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 002 ENSEMBLE
|
SUSV002anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 002 (Anthropogenic)
|
SUSV002strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 002 (Stratospheric)
|
SUSV002volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 002 (Volcanic)
|
SUSV003 |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 003 ENSEMBLE
|
SUSV003anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 003 (Anthropogenic)
|
SUSV003strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 003 (Stratospheric)
|
SUSV003volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 003 (Volcanic)
|
SUSV004 |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 004 ENSEMBLE
|
SUSV004anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 004 (Anthropogenic)
|
SUSV004strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 004 (Stratospheric)
|
SUSV004volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Convective Scavenging Bin 004 (Volcanic)
|
SUWT001 |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 001 ENSEMBLE
|
SUWT001anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 001 (Anthropogenic)
|
SUWT001strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 001 (Stratospheric)
|
SUWT001volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 001 (Volcanic)
|
SUWT002 |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 002 ENSEMBLE
|
SUWT002anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 002 (Anthropogenic)
|
SUWT002strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 002 (Stratospheric)
|
SUWT002volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 002 (Volcanic)
|
SUWT003 |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 003 ENSEMBLE
|
SUWT003anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 003 (Anthropogenic)
|
SUWT003strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 003 (Stratospheric)
|
SUWT003volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 003 (Volcanic)
|
SUWT004 |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 004 ENSEMBLE
|
SUWT004anth |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 004 (Anthropogenic)
|
SUWT004strat |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 004 (Stratospheric)
|
SUWT004volc |
SU |
kg m-2 s-1 |
xy |
Sulfate Wet Deposition Bin 004 (Volcanic)
|
SWCOOL |
Surface |
W m-2 |
xy |
solar heating in cool layer
|
SWCOOL |
Saltwater |
W m-2 |
tile |
solar heating in cool layer
|
SWDOWNLAND |
Surface |
W m-2 |
xy |
Incident shortwave land
|
SWDOWNLAND |
Land |
|
|
|
SWDOWNLAND |
Catch |
W m-2 |
tile |
Incident shortwave land
|
SWDOWNLAND |
CatchCN |
W m-2 |
tile |
Incident shortwave land
|
SWHEAT |
Orad |
W m-2 |
xyz |
solar heating rate
|
SWLAND |
Surface |
W m-2 |
xy |
Net shortwave land
|
SWLAND |
Land |
|
|
|
SWLAND |
Catch |
W m-2 |
tile |
Net shortwave land
|
SWLAND |
CatchCN |
W m-2 |
tile |
Net shortwave land
|
SWNDICE |
Surface |
W m-2 |
xy |
sea ice net downward shortwave flux
|
SWNDICE |
Saltwater |
W m-2 |
tile |
sea ice net downward shortwave flux
|
SWNDSRF |
Surface |
W m-2 |
xy |
surface net downward shortwave flux
|
SWNDSRF |
Lake |
W m-2 |
tile |
surface net downward shortwave flux
|
SWNDSRF |
Landice |
W m-2 |
tile |
surface net downward shortwave flux
|
SWNDSRF |
Land |
|
|
|
SWNDSRF |
Catch |
W m-2 |
tile |
surface net downward shortwave flux
|
SWNDSRF |
CatchCN |
W m-2 |
tile |
surface net downward shortwave flux
|
SWNDSRF |
Saltwater |
W m-2 |
tile |
surface net downward shortwave flux
|
SWNDWTR |
Surface |
W m-2 |
xy |
open water net downward shortwave flux
|
SWNDWTR |
Saltwater |
W m-2 |
tile |
open water net downward shortwave flux
|
SWNETSNOW |
Surface |
W m-2 |
xy |
Net shortwave snow
|
SWNETSNOW |
Land |
|
|
|
SWNETSNOW |
Catch |
W m-2 |
tile |
Net shortwave snow
|
SWNETSNOW |
CatchCN |
W m-2 |
tile |
Net shortwave snow
|
SWWARM |
Surface |
W m-2 |
xy |
solar heating in warm layer
|
SWWARM |
Saltwater |
W m-2 |
tile |
solar heating in warm layer
|
SZAPHOT |
GMICHEM |
deg |
xy |
solar zenith angle for GMIchem photolysis
|
SZARAD |
StratChem |
rad |
xy |
solar zenith angle
|
T |
Gcm |
|
|
|
T |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
T |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
T |
FVdycore |
K |
xyz |
air temperature
|
T |
DynCore |
K |
xyz |
air temperature
|
T |
ARIESg3 |
K |
xyz |
air temperature
|
T |
DatmoDyn |
K |
xyz |
air temperature
|
T |
Turbulence |
K |
xyz |
air temperature
|
T |
Gwd |
K |
xyz |
air temperature
|
T |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
T10M |
Surface |
K |
xy |
10-meter air temperature
|
T250 |
FVdycore |
K |
xy |
air temperature at 250 hPa
|
T250 |
DynCore |
K |
xy |
air temperature at 250 hPa
|
T250 |
ARIESg3 |
K |
xy |
air temperature at 250 hPa
|
T2M |
Surface |
K |
xy |
2-meter air temperature
|
T2MDEW |
Surface |
K |
xy |
dew point temperature at 2 m
|
T2MWET |
Surface |
K |
xy |
wet bulb temperature at 2 m
|
T300 |
DynCore |
K |
xy |
air temperature at 300 hPa
|
T500 |
FVdycore |
K |
xy |
air temperature at 500 hPa
|
T500 |
DynCore |
K |
xy |
air temperature at 500 hPa
|
T500 |
ARIESg3 |
K |
xy |
air temperature at 500 hPa
|
T700 |
DynCore |
K |
xy |
air temperature at 700 hPa
|
T850 |
FVdycore |
K |
xy |
air temperature at 850 hPa
|
T850 |
DynCore |
K |
xy |
air temperature at 850 hPa
|
T850 |
ARIESg3 |
K |
xy |
air temperature at 850 hPa
|
TA |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
TA |
FVdycore |
K |
xy |
surface air temperature
|
TA |
DynCore |
K |
xy |
surface air temperature
|
TA |
ARIESg3 |
K |
xy |
surface air temperature
|
TA |
DatmoDyn |
K |
xy |
Surface air temperature
|
TA |
Surface |
K |
xy |
surface air temperature
|
TAUBKGX |
Gwd |
N m-2 |
xy |
surface eastward background gravity wave stress
|
TAUBKGY |
Gwd |
N m-2 |
xy |
surface northward background gravity wave stress
|
TAUCLI |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
TAUCLI |
Solar |
1 |
xyz |
in cloud optical thickness for ice clouds
|
TAUCLR |
Solar |
1 |
xyz |
in cloud optical thickness for falling rain
|
TAUCLS |
Solar |
1 |
xyz |
in cloud optical thickness for falling snow
|
TAUCLW |
Radiation |
W m-2 K-1 |
xy |
linearization of surface upwelling longwave flux
|
TAUCLW |
Solar |
1 |
xyz |
in cloud optical thickness for liquid clouds
|
TAUGWX |
Gwd |
N m-2 |
xy |
surface eastward gravity wave stress
|
TAUGWY |
Gwd |
N m-2 |
xy |
surface northward gravity wave stress
|
TAUHI |
Solar |
1 |
xy |
in cloud optical thickness of high clouds(EXPORT)
|
TAUIR |
Irrad |
W m-2 |
xyz |
longwave cloud optical thickness at 800 cm-1
|
TAULO |
Solar |
1 |
xy |
in cloud optical thickness of low clouds
|
TAUMD |
Solar |
1 |
xy |
in cloud optical thickness of middle clouds
|
TAUMSTX |
Gwd |
N m-2 |
xy |
surface eastward gravity wave stress due to Moist Processes
|
TAUMSTY |
Gwd |
N m-2 |
xy |
surface northward gravity wave stress due to Moist Processes
|
TAUOROX |
Gwd |
N m-2 |
xy |
surface eastward orographic gravity wave stress
|
TAUOROY |
Gwd |
N m-2 |
xy |
surface northward orographic gravity wave stress
|
TAUTT |
Solar |
1 |
xy |
in cloud optical thickness of all clouds
|
TAUTW |
Surface |
s |
xy |
relaxation time of TW to TS FOUND
|
TAUTW |
Saltwater |
s |
tile |
relaxation time of TW to TS FOUND
|
TAUX |
Surface |
N m-2 |
xy |
eastward surface stress
|
TAUXI |
Surface |
N m-2 |
xy |
eastward stress over ice
|
TAUXI |
Saltwater |
N m-2 |
tile |
eastward stress over ice
|
TAUXIBOT |
Ogcm |
N m-2 |
tile |
eastward stress at base of ice
|
TAUXO |
Saltwater |
N m-2 |
tile |
eastward stress on ocean
|
TAUXW |
Surface |
N m-2 |
xy |
eastward stress over water
|
TAUXW |
Saltwater |
N m-2 |
tile |
eastward stress over water
|
TAUY |
Surface |
N m-2 |
xy |
northward surface stress
|
TAUYBOT |
DataSeaIce |
N m-2 |
xy |
northward stress at base of ice
|
TAUYI |
Surface |
N m-2 |
xy |
northward stress over ice
|
TAUYI |
Saltwater |
N m-2 |
tile |
northward stress over ice
|
TAUYIBOT |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
TAUYO |
Saltwater |
N m-2 |
tile |
northward stress on ocean
|
TAUYW |
Surface |
N m-2 |
xy |
northward stress over water
|
TAUYW |
Saltwater |
N m-2 |
tile |
northward stress over water
|
TAVE |
FVdycore |
K |
xy |
vertically averaged dry temperature
|
TAVE |
DynCore |
K |
xy |
vertically averaged dry temperature
|
TAVE |
ARIESg3 |
K |
xy |
vertically averaged dry temperature
|
TBAR |
Surface |
K |
xy |
mean temperature of interface layer
|
TBAR |
Saltwater |
K |
tile |
mean temperature of interface layer
|
TBISCCP |
Satsim |
K |
xy |
isccp mean all sky 10.5 micron brightness temp
|
TBKG |
mkiau |
K |
xyz |
air temperature of background
|
TCLISCCP |
Satsim |
1 |
xy |
isccp cloud area fraction
|
TCSORIG |
Surface |
K |
xy |
Input tc for snow
|
TCSORIG |
Land |
|
|
|
TCSORIG |
Catch |
K |
tile |
Input tc for snow
|
TCSORIG |
CatchCN |
K |
tile |
Input tc for snow
|
TCZPBL |
Turbulence |
m |
xy |
transcom planetary boundary layer height
|
TDEL |
Surface |
K |
xy |
temperature at base of cool layer
|
TDEL |
Saltwater |
K |
tile |
temperature at base of cool layer
|
TDROP |
Surface |
K |
xy |
temperature drop across cool layer
|
TDROP |
Saltwater |
K |
tile |
temperature drop across cool layer
|
TEANA |
FVdycore |
W m-2 |
xy |
mountain work tendency due to analysis
|
TEANA |
DynCore |
W m-2 |
xy |
mountain work tendency due to analysis
|
TEANA |
ARIESg3 |
W m-2 |
xy |
mountain work tendency due to analysis
|
TECDCOR |
FVdycore |
W m-2 |
xy |
mountain work tendency due to cdcore
|
TECDCOR |
DynCore |
W m-2 |
xy |
mountain work tendency due to cdcore
|
TECDCOR |
ARIESg3 |
W m-2 |
xy |
mountain work tendency due to cdcore
|
TEDYN |
FVdycore |
W m-2 |
xy |
mountain work tendency due to dynamics
|
TEDYN |
DynCore |
W m-2 |
xy |
mountain work tendency due to dynamics
|
TEDYN |
ARIESg3 |
W m-2 |
xy |
mountain work tendency due to dynamics
|
TELAND |
Surface |
J m-2 |
xy |
Total energy storage land
|
TELAND |
Land |
|
|
|
TELAND |
Catch |
J m-2 |
tile |
Total energy storage land
|
TELAND |
CatchCN |
J m-2 |
tile |
Total energy storage land
|
TEPHY |
FVdycore |
W m-2 |
xy |
mountain work tendency due to physics
|
TEPHY |
DynCore |
W m-2 |
xy |
mountain work tendency due to physics
|
TEPHY |
ARIESg3 |
W m-2 |
xy |
mountain work tendency due to physics
|
TEREMAP |
FVdycore |
W m-2 |
xy |
mountain work tendency due to remap
|
TEREMAP |
DynCore |
W m-2 |
xy |
mountain work tendency due to remap
|
TEREMAP |
ARIESg3 |
W m-2 |
xy |
mountain work tendency due to remap
|
TGSOILOBS |
DatmoDyn |
K |
xy |
Obs. Soil Temp.
|
TH |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
TH |
FVdycore |
K |
xyz |
potential temperature
|
TH |
DynCore |
K |
xyz |
potential temperature
|
TH |
ARIESg3 |
K |
xyz |
potential temperature
|
TH |
DatmoDyn |
K |
xyz |
potential temperature
|
TH |
Lake |
K |
tile |
turbulence surface skin temperature
|
TH |
Landice |
K |
tile |
turbulence surface skin temperature
|
TH |
Land |
|
|
|
TH |
Catch |
K |
tile |
turbulence surface skin temperature
|
TH |
CatchCN |
K |
tile |
turbulence surface skin temperature
|
TH |
Saltwater |
K |
tile |
turbulence surface temperature
|
THATOBS |
DatmoDyn |
K s-1 |
xyz |
Obs. Temperature Tendency H adv
|
THIM |
Physics |
Pa K s-1 |
xyz |
pressure weighted tendency of potential temperature due to moist processes
|
THMOIST |
Moist |
K |
xyz |
potential temperature after all of moist
|
THOI |
Moist |
K |
xyz |
potential temperature before ras
|
THRAS |
Moist |
K |
xyz |
potential temperature after ras
|
THV |
Agcm |
K |
xy |
vertically integrated virtual potential temperature
|
THV |
FVdycore |
KPa$^\kappa$ |
xyz |
scaled virtual potential temperature
|
THV |
DynCore |
KPa$^\kappa$ |
xyz |
scaled virtual potential temperature
|
THV |
ARIESg3 |
KPa$^\kappa$ |
xyz |
scaled virtual potential temperature
|
THX0 |
Moist |
K |
xyz |
potential temperature
|
TH_moist |
Moist |
K |
xyz |
potential temp before moist
|
TICE0 |
Landice |
deg C |
tile |
aggregated ice layer temperature
|
TIF |
Physics |
K s-1 |
xyz |
tendency of air temperature due to friction
|
TILELATS |
Ogcm |
degrees |
tile |
latitude
|
TILELONS |
Ogcm |
degrees |
tile |
longitude
|
TIM |
Physics |
K s-1 |
xyz |
tendency of air temperature due to moist processes
|
TIMFRIC |
Physics |
K s-1 |
xyz |
tendency of air temperature due to moist processes friction
|
TINZ |
Saltwater |
degC |
tile |
internal ice temperature over ice categories
|
TIT |
Physics |
K s-1 |
xyz |
tendency of air temperature due to turbulence
|
TO3 |
PChem |
Dobsons |
xy |
total column ozone
|
TOBS |
DatmoDyn |
K |
xyz |
Obs. Temperature
|
TOPDIS |
Turbulence |
K s-1 Pa |
xyz |
p-weighted frictional heating rate from orographic drag
|
TOTAL_BC |
MATRIXchem |
ug m-3 |
xyz |
|
TOTAL_DU |
MATRIXchem |
ug m-3 |
xyz |
|
TOTAL_OC |
MATRIXchem |
ug m-3 |
xyz |
|
TOTAL_SS |
MATRIXchem |
ug m-3 |
xyz |
|
TOTAL_SU |
MATRIXchem |
ug m-3 |
xyz |
|
TOTANGSTR |
GOCART |
1 |
xy |
Total Aerosol Angstrom parameter [470-870 nm]
|
TOTEXTT25 |
GOCART |
1 |
xy |
Total Aerosol Exinction AOT [550 nm] - PM2.5
|
TOTEXTTAU |
GOCART |
1 |
xy |
Total Aerosol Extinction AOT [550 nm]
|
TOTEXTTAU |
MAMchem |
1 |
xy |
Aerosol Optical Thickness
|
TOTEXTTFM |
GOCART |
1 |
xy |
Total Aerosol Exinction AOT [550 nm] - PM1.0
|
TOTSCAT25 |
GOCART |
1 |
xy |
Total Aerosol Scattering AOT [550 nm] - PM2.5
|
TOTSCATAU |
GOCART |
1 |
xy |
Total Aerosol Scattering AOT [550 nm]
|
TOTSCATAU |
MAMchem |
1 |
xy |
Aerosol Scattering Optical Thickness
|
TOTSCATFM |
GOCART |
1 |
xy |
Total Aerosol Scattering AOT [550 nm] - PM1.0
|
TOX |
Agcm |
kg m-2 |
xy |
total column odd oxygen
|
TP1 |
Land |
|
|
|
TP1 |
Catch |
C |
tile |
soil temperatures layer 1
|
TP1 |
CatchCN |
C |
tile |
soil temperatures layer 1
|
TP2 |
Land |
|
|
|
TP2 |
Catch |
C |
tile |
soil temperatures layer 2
|
TP2 |
CatchCN |
C |
tile |
soil temperatures layer 2
|
TP3 |
Land |
|
|
|
TP3 |
Catch |
C |
tile |
soil temperatures layer 3
|
TP3 |
CatchCN |
C |
tile |
soil temperatures layer 3
|
TP4 |
Land |
|
|
|
TP4 |
Catch |
C |
tile |
soil temperatures layer 4
|
TP4 |
CatchCN |
C |
tile |
soil temperatures layer 4
|
TP5 |
Land |
|
|
|
TP5 |
Catch |
C |
tile |
soil temperatures layer 5
|
TP5 |
CatchCN |
C |
tile |
soil temperatures layer 5
|
TP6 |
Land |
|
|
|
TP6 |
Catch |
C |
tile |
soil temperatures layer 6
|
TP6 |
CatchCN |
C |
tile |
soil temperatures layer 6
|
TPERTI |
Moist |
K |
xy |
temperature perturbation before ras
|
TPREC |
ChemEnv |
kg m-2 s-1 |
xy |
total precipitation
|
TPREC |
Moist |
kg m-2 s-1 |
xy |
total precipitation
|
TPSAT |
Surface |
K |
xy |
surface temperature of saturated zone
|
TPSAT |
Land |
|
|
|
TPSAT |
Catch |
K |
tile |
temperature saturated zone
|
TPSAT |
CatchCN |
K |
tile |
temperature saturated zone
|
TPSN1IN |
Surface |
K |
xy |
Input temp of top snow lev
|
TPSN1IN |
Land |
|
|
|
TPSN1IN |
Catch |
K |
tile |
Input temp of top snow lev
|
TPSN1IN |
CatchCN |
K |
tile |
Input temp of top snow lev
|
TPSN1OUT |
Surface |
K |
xy |
Output temp of top snow lev
|
TPSN1OUT |
Land |
|
|
|
TPSN1OUT |
Catch |
K |
tile |
Output temp of top snow lev
|
TPSN1OUT |
CatchCN |
K |
tile |
Output temp of top snow lev
|
TPSNOW |
Surface |
K |
xy |
surface temperature of snow
|
TPSNOW |
Land |
|
|
|
TPSNOW |
Catch |
K |
tile |
temperature top snow layer
|
TPSNOW |
CatchCN |
K |
tile |
temperature top snow layer
|
TPSURF |
Surface |
K |
xy |
surface temperature of land incl snow
|
TPSURF |
Land |
|
|
|
TPSURF |
Catch |
K |
tile |
ave catchment temp incl snw
|
TPSURF |
CatchCN |
K |
tile |
ave catchment temp incl snw
|
TPUNST |
Surface |
K |
xy |
surface temperature of unsaturated zone
|
TPUNST |
Land |
|
|
|
TPUNST |
Catch |
K |
tile |
temperature unsaturated zone
|
TPUNST |
CatchCN |
K |
tile |
temperature unsaturated zone
|
TPW |
Moist |
kg m-2 |
xy |
total precipitable water
|
TPWLT |
Surface |
K |
xy |
surface temperature of wilted zone
|
TPWLT |
Land |
|
|
|
TPWLT |
Catch |
K |
tile |
temperature wilted zone
|
TPWLT |
CatchCN |
K |
tile |
temperature wilted zone
|
TQI |
Agcm |
kg m-2 |
xy |
total precipitable ice water
|
TQL |
Agcm |
kg m-2 |
xy |
total precipitable liquid water
|
TQV |
Agcm |
kg m-2 |
xy |
total precipitable water vapor
|
TRADV |
Physics |
X |
xyz |
advected quantities
|
TRANA |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
TRANA |
Physics |
X |
xyz |
analyzed quantities
|
TRBVAR |
Agcm |
m+2 |
xy |
isotropic variance of TRB topography
|
TRI |
Turbulence |
X kg m-2 s-1 |
xyz |
diffusion tendencies
|
TRIEDLV |
Moist |
0 or 1 |
xyz |
Tested for convection at this level
|
TROPP_BLENDED |
Agcm |
Pa |
xy |
tropopause pressure based on blended estimate
|
TROPP_BLENDED |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
TROPP_BLENDED |
FVdycore |
Pa |
xy |
tropopause pressure based on blended estimate
|
TROPP_BLENDED |
DynCore |
Pa |
xy |
tropopause pressure based on blended estimate
|
TROPP_BLENDED |
ARIESg3 |
Pa |
xy |
tropopause pressure based on blended estimate
|
TROPP_BLENDED |
DatmoDyn |
Pa |
xy |
tropopause pressure based on blended estimate
|
TROPP_EPV |
Agcm |
Pa |
xy |
tropopause pressure based on EPV estimate
|
TROPP_EPV |
FVdycore |
Pa |
xy |
tropopause pressure based on EPV estimate
|
TROPP_EPV |
DynCore |
Pa |
xy |
tropopause pressure based on EPV estimate
|
TROPP_EPV |
ARIESg3 |
Pa |
xy |
tropopause pressure based on EPV estimate
|
TROPP_THERMAL |
Agcm |
Pa |
xy |
tropopause pressure based on thermal estimate
|
TROPP_THERMAL |
FVdycore |
Pa |
xy |
tropopause pressure based on thermal estimate
|
TROPP_THERMAL |
DynCore |
Pa |
xy |
tropopause pressure based on thermal estimate
|
TROPP_THERMAL |
ARIESg3 |
Pa |
xy |
tropopause pressure based on thermal estimate
|
TROPQ |
Agcm |
kg kg-1 |
xy |
tropopause specific humidity using blended TROPP estimate
|
TROPQ |
FVdycore |
kg kg-1 |
xy |
tropopause specific humidity using blended TROPP estimate
|
TROPQ |
DynCore |
kgkg |
xy |
tropopause specific humidity using blended TROPP estimate
|
TROPQ |
ARIESg3 |
kg kg-1 |
xy |
tropopause specific humidity using blended TROPP estimate
|
TROPT |
Agcm |
K |
xy |
tropopause temperature using blended TROPP estimate
|
TROPT |
FVdycore |
K |
xy |
tropopause temperature using blended TROPP estimate
|
TROPT |
DynCore |
K |
xy |
tropopause temperature using blended TROPP estimate
|
TROPT |
ARIESg3 |
K |
xy |
tropopause temperature using blended TROPP estimate
|
TS |
Gcm |
|
|
|
TS |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
TS |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
TSAIROBS |
DatmoDyn |
K |
xy |
Obs. sfc(2m?) air temp.
|
TSBKG |
mkiau |
K |
xy |
skin temperature of background
|
TSCALE |
DataSea |
sec |
xy |
relaxation time scale
|
TSKINI |
Surface |
K |
xy |
sea ice skin temperature
|
TSKINOBS |
DatmoDyn |
K |
xy |
obs skin temperature
|
TSKINW |
Surface |
K |
xy |
open water skin temperature
|
TSKINWCICE |
Surface |
K |
xy |
CICE water skin temperature
|
TSKINWCICE |
Saltwater |
K |
tile |
CICE water skin temperature
|
TSKINWinc1 |
Saltwater |
K |
tile |
DTS for step 1
|
TSKINWinc2 |
Saltwater |
K |
tile |
DTS for step 2
|
TSKINWinc3 |
Saltwater |
K |
tile |
DTS for step 3
|
TSKINWinctotal |
Saltwater |
K |
tile |
DTS for complete step
|
TSLAND |
Surface |
kg m-2 |
xy |
Total snow storage land
|
TSLAND |
Land |
|
|
|
TSLAND |
Catch |
kg m-2 |
tile |
Total snow storage land
|
TSLAND |
CatchCN |
kg m-2 |
tile |
Total snow storage land
|
TSNOW |
Landice |
deg C |
tile |
snow layer temperature
|
TSOIL1 |
Gcm |
|
|
|
TSOIL1 |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
TSOIL1 |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
TSOIL1 |
Surface |
K |
xy |
soil temperatures layer 1
|
TSOIL2 |
Surface |
K |
xy |
soil temperatures layer 2
|
TSOIL3 |
Surface |
K |
xy |
soil temperatures layer 3
|
TSOIL4 |
Surface |
K |
xy |
soil temperatures layer 4
|
TSOIL5 |
Surface |
K |
xy |
soil temperatures layer 5
|
TSOIL6 |
Surface |
K |
xy |
soil temperatures layer 6
|
TSREFF |
Irrad |
K |
xy |
surface temperature
|
TST |
Lake |
K |
tile |
surface skin temperature
|
TST |
Landice |
K |
tile |
surface skin temperature
|
TST |
Land |
|
|
|
TST |
Catch |
K |
tile |
surface skin temperature
|
TST |
CatchCN |
K |
tile |
surface skin temperature
|
TST |
Saltwater |
K |
tile |
surface skin temperature
|
TSTAR |
Surface |
K |
xy |
surface temperature scale
|
TSX0 |
Moist |
K |
xy |
surface temperature
|
TS_FOUND |
Surface |
K |
xy |
foundation temperature for interface layer
|
TS_FOUND |
Saltwater |
K |
tile |
foundation temperature for interface layer
|
TS_FOUND |
Ogcm |
K |
tile |
foundation temperature for interface layer
|
TS_FOUND |
DataSea |
K |
xy |
foundation temperature for interface layer
|
TS_moist |
Moist |
K |
xy |
surface temp before moist
|
TTMGW |
Gwd |
K s-1 |
xyz |
air temperature tendency due to GWD
|
TTO3 |
PChem |
Dobsons |
xy |
tropospheric column ozone
|
TTOP |
DynCore |
K |
xy |
air temperature at model top
|
TURB |
Oceanbiogeochem |
m-1 |
xy |
water turbidity
|
TV |
Gcm |
|
|
|
TV |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
TV |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
TV |
FVdycore |
K |
xyz |
air virtual temperature
|
TV |
DynCore |
K |
xyz |
air virtual temperature
|
TV |
ARIESg3 |
K |
xyz |
air virtual temperature
|
TV |
DatmoDyn |
K |
xyz |
air virtual temperature
|
TVATOBS |
DatmoDyn |
K s-1 |
xyz |
Obs. Temperature Tendency V adv
|
TVE0 |
Moist |
J m-2 |
xy |
Total VI MSE Before
|
TVE1 |
Moist |
J m-2 |
xy |
Total VI MSE After
|
TVEX |
Moist |
J m-2 |
xy |
Total VI MSE Somewhere
|
TVQ0 |
Moist |
kg m-2 |
xy |
Total Water Substance Before
|
TVQ1 |
Moist |
kg m-2 |
xy |
Total Water Substance After
|
TVQX1 |
Moist |
kg m-2 |
xy |
Total Water Substance bef macro
|
TVQX2 |
Moist |
kg m-2 |
xy |
Total Water Substance bef micro
|
TWLAND |
Surface |
kg m-2 |
xy |
Avail water storage land
|
TWLAND |
Land |
|
|
|
TWLAND |
Catch |
kg m-2 |
tile |
Avail water storage land
|
TWLAND |
CatchCN |
kg m-2 |
tile |
Avail water storage land
|
TX |
Gcm |
|
|
|
TX |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
TY |
Gcm |
|
|
|
TY |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
U |
Gcm |
|
|
|
U |
Gcm |
|
|
|
U |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
U |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
U |
FVdycore |
m s-1 |
xyz |
eastward wind
|
U |
DynCore |
m s-1 |
xyz |
eastward wind
|
U |
ARIESg3 |
m s-1 |
xyz |
eastward wind
|
U |
DatmoDyn |
ms |
xyz |
Zonal wind
|
U |
Turbulence |
m s-1 |
xyz |
eastward wind
|
U |
Gwd |
m s-1 |
xyz |
eastward wind
|
U |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
U |
DynVec |
m s-1 |
xyz |
eastward wind
|
U10M |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
U10M |
Surface |
m s-1 |
xy |
10-meter eastward wind
|
U10N |
Gcm |
|
|
|
U10N |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
U10N |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
U10N |
Surface |
m s-1 |
xy |
equivalent neutral 10-meter eastward wind
|
U200 |
DynCore |
m s-1 |
xy |
eastward wind at 200 hPa
|
U250 |
FVdycore |
m s-1 |
xy |
eastward wind at 250 hPa
|
U250 |
DynCore |
m s-1 |
xy |
eastward wind at 250 hPa
|
U250 |
ARIESg3 |
m s-1 |
xy |
eastward wind at 250 hPa
|
U2M |
Surface |
m s-1 |
xy |
2-meter eastward wind
|
U500 |
FVdycore |
m s-1 |
xy |
eastward wind at 500 hPa
|
U500 |
DynCore |
m s-1 |
xy |
eastward wind at 500 hPa
|
U500 |
ARIESg3 |
m s-1 |
xy |
eastward wind at 500 hPa
|
U50M |
FVdycore |
m s-1 |
xy |
eastward wind at 50 meters
|
U50M |
DynCore |
m s-1 |
xy |
eastward wind at 50 meters
|
U50M |
ARIESg3 |
m s-1 |
xy |
eastward wind at 50 meters
|
U50M |
Surface |
m s-1 |
xy |
50-meter eastward wind
|
U700 |
DynCore |
m s-1 |
xy |
eastward wind at 700 hPa
|
U850 |
FVdycore |
m s-1 |
xy |
eastward wind at 850 hPa
|
U850 |
DynCore |
m s-1 |
xy |
eastward wind at 850 hPa
|
U850 |
ARIESg3 |
m s-1 |
xy |
eastward wind at 850 hPa
|
UA |
Surface |
m s-1 |
xy |
surface eastward wind
|
UAVE |
FVdycore |
m sec-1 |
xy |
vertically averaged zonal wind
|
UAVE |
DynCore |
m sec-1 |
xy |
vertically averaged zonal wind
|
UAVE |
ARIESg3 |
m s-1 |
xy |
vertically averaged zonal wind
|
UBAR |
Gwd |
m s-1 |
xy |
eastward component of mean level wind
|
UBASE |
Gwd |
m s-1 |
xy |
eastward component of base level wind
|
UBKG |
mkiau |
m s-1 |
xyz |
eastward wind of background
|
UCPT |
FVdycore |
J m-1 s-1 |
xy |
eastward flux of atmospheric enthalpy
|
UCPT |
DynCore |
J m-1 s-1 |
xy |
eastward flux of atmospheric enthalpy
|
UCPT |
ARIESg3 |
J m-1 s-1 |
xy |
eastward flux of atmospheric enthalpy
|
UE |
DatmoDyn |
m s-1 |
xyz |
Diagnosed Edge Winds
|
UH |
Lake |
m s-1 |
tile |
turbulence surface zonal velocity
|
UH |
Saltwater |
m s-1 |
tile |
turbulence surface zonal velocity
|
UI |
Ogcm |
m s-1 |
tile |
zonal velocity of surface seaice
|
UI |
DataSeaIce |
m s-1 |
xy |
zonal velocity of surface seaice
|
UIT |
Physics |
m s-2 |
xyz |
tendency of eastward wind due to turbulence
|
UKE |
FVdycore |
J m-1 s-1 |
xy |
eastward flux of atmospheric kinetic energy
|
UKE |
DynCore |
J m-1 s-1 |
xy |
eastward flux of atmospheric kinetic energy
|
UKE |
ARIESg3 |
J m-1 s-1 |
xy |
eastward flux of atmospheric kinetic energy
|
UNKNOWN |
AdvCore |
1 |
xyz |
UNKNOWN
|
UNKNOWN |
DynCore |
1 |
xy |
UNKNOWN
|
UNKNOWN |
DynCore |
1 |
xyz |
UNKNOWN
|
UPHI |
FVdycore |
J m-1 s-1 |
xy |
eastward flux of atmospheric potential energy
|
UPHI |
DynCore |
J m-1 s-1 |
xy |
eastward flux of atmospheric potential energy
|
UPHI |
ARIESg3 |
J m-1 s-1 |
xy |
eastward flux of atmospheric potential energy
|
UQI |
FVdycore |
kg m-1 s-1 |
xy |
eastward flux of atmospheric ice
|
UQI |
DynCore |
kg m-1 s-1 |
xy |
eastward flux of atmospheric ice
|
UQI |
ARIESg3 |
kg m-1 s-1 |
xy |
eastward flux of atmospheric ice
|
UQL |
FVdycore |
kg m-1 s-1 |
xy |
eastward flux of atmospheric liquid water
|
UQL |
DynCore |
kg m-1 s-1 |
xy |
eastward flux of atmospheric liquid water
|
UQL |
ARIESg3 |
kg m-1 s-1 |
xy |
eastward flux of atmospheric liquid water
|
UQV |
FVdycore |
kg m-1 s-1 |
xy |
eastward flux of atmospheric water vapor
|
UQV |
DynCore |
kg m-1 s-1 |
xy |
eastward flux of atmospheric water vapor
|
UQV |
ARIESg3 |
kg m-1 s-1 |
xy |
eastward flux of atmospheric water vapor
|
URAS |
Moist |
m s-1 |
xyz |
eastward wind after ras
|
US |
FVdycore |
m s-1 |
xy |
surface eastward wind
|
US |
DynCore |
m s-1 |
xy |
surface eastward wind
|
US |
ARIESg3 |
m s-1 |
xy |
surface eastward wind
|
USTAR |
Surface |
m s-1 |
xy |
surface velocity scale
|
USTARI |
Surface |
m s-1 |
xy |
ice ocean friction velocity
|
USTARI |
Saltwater |
m s-1 |
tile |
ice ocean friction velocity
|
USTARW |
Surface |
m s-1 |
xy |
ustar over water layer
|
USTARW |
Saltwater |
m s-1 |
tile |
ustar over water
|
USTAR_w |
DataSea |
m s-1 |
xy |
ustar over water
|
UTOP |
DynCore |
m s-1 |
xy |
eastward wind at model top
|
UU10M |
Surface |
m s-1 |
xy |
near-surface wind speed
|
UW |
Ogcm |
m s-1 |
tile |
zonal velocity of surface water
|
UW |
DataSea |
m s-1 |
xy |
zonal velocity of surface water
|
UX0 |
Moist |
m s-1 |
xyz |
eastward wind
|
U_AGRID |
DynCore |
m s-1 |
xyz |
eastward wind on A-Grid
|
U_CGRID |
FVdycore |
m s-1 |
xyz |
eastward wind on C-Grid
|
U_CGRID |
DynCore |
m s-1 |
xyz |
eastward wind on C-Grid
|
U_CGRID |
ARIESg3 |
m s-1 |
xyz |
eastward wind on C-Grid
|
U_CGRID |
DatmoDyn |
m s-1 |
xyz |
eastward wind on C-Grid
|
U_DGRID |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
U_DGRID |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
U_DGRID |
FVdycore |
m s-1 |
xyz |
eastward wind on native D-Grid
|
U_DGRID |
DynCore |
m s-1 |
xyz |
eastward wind on native D-Grid
|
U_DGRID |
ARIESg3 |
m s-1 |
xyz |
eastward wind on native D-Grid
|
U_DGRID |
DatmoDyn |
m s-1 |
xyz |
eastward wind on native D-Grid
|
V |
Gcm |
|
|
|
V |
Gcm |
|
|
|
V |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
V |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
V |
FVdycore |
m s-1 |
xyz |
northward wind
|
V |
DynCore |
m s-1 |
xyz |
northward wind
|
V |
ARIESg3 |
m s-1 |
xyz |
northward wind
|
V |
DatmoDyn |
ms |
xyz |
meridional wind
|
V |
Turbulence |
m s-1 |
xyz |
northward wind
|
V |
Gwd |
m s-1 |
xyz |
northward wind
|
V |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
V |
DynVec |
m s-1 |
xyz |
northward wind
|
V10M |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
V10M |
Surface |
m s-1 |
xy |
10-meter northward wind
|
V10N |
Gcm |
|
|
|
V10N |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
V10N |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
V10N |
Surface |
m s-1 |
xy |
equivalent neutral 10-meter northward wind
|
V200 |
DynCore |
m s-1 |
xy |
northward wind at 200 hPa
|
V250 |
FVdycore |
m s-1 |
xy |
northward wind at 250 hPa
|
V250 |
DynCore |
m s-1 |
xy |
northward wind at 250 hPa
|
V250 |
ARIESg3 |
m s-1 |
xy |
northward wind at 250 hPa
|
V2M |
Surface |
m s-1 |
xy |
2-meter northward wind
|
V500 |
FVdycore |
m s-1 |
xy |
northward wind at 500 hPa
|
V500 |
DynCore |
m s-1 |
xy |
northward wind at 500 hPa
|
V500 |
ARIESg3 |
m s-1 |
xy |
northward wind at 500 hPa
|
V50M |
FVdycore |
m s-1 |
xy |
northward wind at 50 meters
|
V50M |
DynCore |
m s-1 |
xy |
northward wind at 50 meters
|
V50M |
ARIESg3 |
m s-1 |
xy |
northward wind at 50 meters
|
V50M |
Surface |
m s-1 |
xy |
50-meter northward wind
|
V700 |
DynCore |
m s-1 |
xy |
northward wind at 700 hPa
|
V850 |
FVdycore |
m s-1 |
xy |
northward wind at 850 hPa
|
V850 |
DynCore |
m s-1 |
xy |
northward wind at 850 hPa
|
V850 |
ARIESg3 |
m s-1 |
xy |
northward wind at 850 hPa
|
VA |
Surface |
m s-1 |
xy |
surface northward wind
|
VARFLT |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
VARFLT |
DatmoDyn |
K |
xy |
obs skin temperature
|
VBAR |
Gwd |
m s-1 |
xy |
northward component of mean level wind
|
VBASE |
Gwd |
m s-1 |
xy |
northward component of base level wind
|
VBKG |
mkiau |
m s-1 |
xyz |
northward wind of background
|
VCPT |
FVdycore |
J m-1 s-1 |
xy |
northward flux of atmospheric enthalpy
|
VCPT |
DynCore |
J m-1 s-1 |
xy |
northward flux of atmospheric enthalpy
|
VCPT |
ARIESg3 |
J m-1 s-1 |
xy |
northward flux of atmospheric enthalpy
|
VDQDTDYN |
DatmoDyn |
kgkgsec |
xyz |
vertical tendency of specific humidity due to dynamics
|
VDTDTDYN |
DatmoDyn |
K sec-1 |
xyz |
vertical tendency of air temperature due to dynamics
|
VDTHDTDYN |
DatmoDyn |
K sec-1 |
xyz |
vertical tendency of air pot temp due to dynamics
|
VENT |
Surface |
m s-1 |
xy |
surface ventilation velocity
|
VENT |
Lake |
m s-1 |
tile |
surface ventilation velocity
|
VENT |
Landice |
m s-1 |
tile |
surface ventilation velocity
|
VENT |
Land |
|
|
|
VENT |
Catch |
m s-1 |
tile |
surface ventilation velocity
|
VENT |
CatchCN |
m s-1 |
tile |
surface ventilation velocity
|
VENT |
Saltwater |
m s-1 |
tile |
surface ventilation velocity
|
VFALL |
GMICHEM |
cm s-1 |
xyz |
effective aerosol fall velocity
|
VFALLICE_AN |
Moist |
m s-1 |
xyz |
autoconversion fall velocity of anvil snow
|
VFALLICE_LS |
Moist |
m s-1 |
xyz |
autoconversion fall velocity of largescale snow
|
VFALLRN_AN |
Moist |
m s-1 |
xyz |
reevaporation fall velocity of anvil rain
|
VFALLRN_CN |
Moist |
m s-1 |
xyz |
reevaporation fall velocity of convective rain
|
VFALLRN_LS |
Moist |
m s-1 |
xyz |
reevaporation fall velocity of largescale rain
|
VFALLSN_AN |
Moist |
m s-1 |
xyz |
reevaporation fall velocity of anvil snow
|
VFALLSN_CN |
Moist |
m s-1 |
xyz |
reevaporation fall velocity of convective snow
|
VFALLSN_LS |
Moist |
m s-1 |
xyz |
reevaporation fall velocity of largescale snow
|
VFALLWAT_AN |
Moist |
m s-1 |
xyz |
autoconversion fall velocity of anvil rain
|
VFALLWAT_LS |
Moist |
m s-1 |
xyz |
autoconversion fall velocity of largescale rain
|
VH |
Lake |
m s-1 |
tile |
turbulence surface meridional velocity
|
VH |
Saltwater |
m s-1 |
tile |
turbulence surface meridional velocity
|
VI |
Ogcm |
m s-1 |
tile |
meridional velocity of surface seaice
|
VI |
DataSeaIce |
m s-1 |
xy |
meridional velocity of surface seaice
|
VINTDIV_ANA |
mkiau |
Pa s-1 |
xy |
vertically integrated mass divergence increment from analysis
|
VINTDIV_BKG |
mkiau |
Pa s-1 |
xy |
vertically integrated mass divergence increment from background
|
VINTDIV_COR |
mkiau |
Pa s-1 |
xy |
vertically integrated mass divergence increment from analysis corrected
|
VIT |
Physics |
m s-2 |
xyz |
tendency of northward wind due to turbulence
|
VKE |
FVdycore |
J m-1 s-1 |
xy |
northward flux of atmospheric kinetic energy
|
VKE |
DynCore |
J m-1 s-1 |
xy |
northward flux of atmospheric kinetic energy
|
VKE |
ARIESg3 |
J m-1 s-1 |
xy |
northward flux of atmospheric kinetic energy
|
VORT |
DynCore |
s-1 |
xyz |
vorticity at mid layer heights
|
VORT200 |
DynCore |
s-1 |
xy |
vorticity at 200 hPa
|
VORT700 |
DynCore |
s-1 |
xy |
vorticity at 700 hPa
|
VORT850 |
DynCore |
s-1 |
xy |
vorticity at 850 hPa
|
VPHI |
FVdycore |
J m-1 s-1 |
xy |
northward flux of atmospheric potential energy
|
VPHI |
DynCore |
J m-1 s-1 |
xy |
northward flux of atmospheric potential energy
|
VPHI |
ARIESg3 |
J m-1 s-1 |
xy |
northward flux of atmospheric potential energy
|
VQI |
FVdycore |
kg m-1 s-1 |
xy |
northward flux of atmospheric ice
|
VQI |
DynCore |
kg m-1 s-1 |
xy |
northward flux of atmospheric ice
|
VQI |
ARIESg3 |
kg m-1 s-1 |
xy |
northward flux of atmospheric ice
|
VQL |
FVdycore |
kg m-1 s-1 |
xy |
northward flux of atmospheric liquid water
|
VQL |
DynCore |
kg m-1 s-1 |
xy |
northward flux of atmospheric liquid water
|
VQL |
ARIESg3 |
kg m-1 s-1 |
xy |
northward flux of atmospheric liquid water
|
VQV |
FVdycore |
kg m-1 s-1 |
xy |
northward flux of atmospheric water vapor
|
VQV |
DynCore |
kg m-1 s-1 |
xy |
northward flux of atmospheric water vapor
|
VQV |
ARIESg3 |
kg m-1 s-1 |
xy |
northward flux of atmospheric water vapor
|
VRAS |
Moist |
m s-1 |
xyz |
northward wind after ras
|
VS |
FVdycore |
m s-1 |
xy |
surface northward wind
|
VS |
DynCore |
m s-1 |
xy |
surface northward wind
|
VS |
ARIESg3 |
m s-1 |
xy |
surface northward wind
|
VSCBRV |
Turbulence |
m s-1 |
xy |
turbulent velocity scale for buoy rev
|
VSCRAD |
Turbulence |
m s-1 |
xy |
turbulent velocity scale for cooling
|
VSCSFC |
Turbulence |
m s-1 |
xy |
turbulent velocity scale for sfc
|
VTOP |
DynCore |
m s-1 |
xy |
northward wind at model top
|
VW |
Ogcm |
m s-1 |
tile |
meridional velocity of surface water
|
VW |
DataSea |
m s-1 |
xy |
meridional velocity of surface water
|
VX0 |
Moist |
m s-1 |
xyz |
northward wind
|
V_AGRID |
DynCore |
m s-1 |
xyz |
northward wind on A-Grid
|
V_CGRID |
FVdycore |
m s-1 |
xyz |
northward wind on C-Grid
|
V_CGRID |
DynCore |
m s-1 |
xyz |
northward wind on C-Grid
|
V_CGRID |
ARIESg3 |
m s-1 |
xyz |
northward wind on C-Grid
|
V_CGRID |
DatmoDyn |
m s-1 |
xyz |
northward wind on C-Grid
|
V_DGRID |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
V_DGRID |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
V_DGRID |
FVdycore |
m s-1 |
xyz |
northward wind on native D-Grid
|
V_DGRID |
DynCore |
m s-1 |
xyz |
northward wind on native D-Grid
|
V_DGRID |
ARIESg3 |
m s-1 |
xyz |
northward wind on native D-Grid
|
V_DGRID |
DatmoDyn |
m s-1 |
xyz |
northward wind on native D-Grid
|
W |
DynCore |
m s-1 |
xyz |
vertical velocity
|
W |
DynVec |
m s-1 |
xyz |
vertical velocity
|
W10 |
DynCore |
m s-1 |
xy |
w at 10 hPa
|
W200 |
DynCore |
m s-1 |
xy |
w at 200 hPa
|
W500 |
DynCore |
m s-1 |
xy |
w at 500 hPa
|
W850 |
DynCore |
m s-1 |
xy |
w at 850 hPa
|
WAT10CM |
Surface |
kg m-2 |
xy |
soil moisture in Upper 10cm
|
WAT10CM |
Land |
|
|
|
WAT10CM |
Catch |
kg m-2 |
tile |
soil moisture in Upper 10cm
|
WAT10CM |
CatchCN |
kg m-2 |
tile |
soil moisture in Upper 10cm
|
WATERFLUX |
Surface |
kg m-2 s-1 |
xy |
FRESHWATER flux bw saltwater ocean
|
WATERFLUX |
Saltwater |
kg m-2 s-1 |
tile |
water flux bw saltwater ocean
|
WATSOI |
Surface |
kg m-2 |
xy |
total soil moisture
|
WATSOI |
Land |
|
|
|
WATSOI |
Catch |
kg m-2 |
tile |
totoal soil moisture
|
WATSOI |
CatchCN |
kg m-2 |
tile |
totoal soil moisture
|
WCPR |
Surface |
m-3 m-3 |
xy |
water profile
|
WCPR |
Land |
|
|
|
WCPR |
Catch |
m3 m-3 |
tile |
water ave prof
|
WCPR |
CatchCN |
m3 m-3 |
tile |
water ave prof
|
WCRZ |
Surface |
m-3 m-3 |
xy |
water root zone
|
WCRZ |
Land |
|
|
|
WCRZ |
Catch |
m3 m-3 |
tile |
water root zone
|
WCRZ |
CatchCN |
m3 m-3 |
tile |
water root zone
|
WCSF |
Surface |
m-3 m-3 |
xy |
water surface layer
|
WCSF |
Land |
|
|
|
WCSF |
Catch |
m3 m-3 |
tile |
water surface layer
|
WCSF |
CatchCN |
m3 m-3 |
tile |
water surface layer
|
WEBRV |
Turbulence |
m s-1 |
xy |
entrainment velocity from buoy rev
|
WERAD |
Turbulence |
m s-1 |
xy |
entrainment velocity from radiation
|
WESFC |
Turbulence |
m s-1 |
xy |
entrainment velocity from surface plume
|
WESNBOT |
Landice |
kg m-2 s-1 |
tile |
frozen runoff due to fixed max depth
|
WESNDENS |
Landice |
kg m-2 s-1 |
tile |
snow layer mass change due to densification
|
WESNEX |
Landice |
kg m-2 s-1 |
tile |
snow layer mass residual due to densification
|
WESNEXT |
Landice |
kg m-2 s-1 |
tile |
total snow mass residual due to densification
|
WESNN1 |
Surface |
kg m-2 |
xy |
snow mass layer 1
|
WESNN1 |
Land |
|
|
|
WESNN2 |
Surface |
kg m-2 |
xy |
snow mass layer 2
|
WESNN2 |
Land |
|
|
|
WESNN3 |
Surface |
kg m-2 |
xy |
snow mass layer 3
|
WESNN3 |
Land |
|
|
|
WESNPERC |
Landice |
kg m-2 s-1 |
tile |
snow layer mass change due to percolation
|
WESNPREC |
Landice |
kg m-2 s-1 |
tile |
top snow layer mass change due to precip
|
WESNREPAR |
Landice |
kg m-2 s-1 |
tile |
snow layer mass change due to repartition
|
WESNSC |
Landice |
kg m-2 s-1 |
tile |
top snow layer mass change due to sub con
|
WET1 |
Gcm |
|
|
|
WET1 |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
WET1 |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
WET1 |
Surface |
1 |
xy |
surface soil wetness
|
WET1 |
Land |
|
|
|
WET1 |
Catch |
1 |
tile |
surface soil wetness
|
WET1 |
CatchCN |
1 |
tile |
surface soil wetness
|
WET2 |
Surface |
1 |
xy |
root zone soil wetness
|
WET2 |
Land |
|
|
|
WET2 |
Catch |
1 |
tile |
root zone soil wetness
|
WET2 |
CatchCN |
1 |
tile |
root zone soil wetness
|
WET3 |
Surface |
1 |
xy |
ave prof soil moisture
|
WET3 |
Land |
|
|
|
WET3 |
Catch |
1 |
tile |
ave prof soil moisture
|
WET3 |
CatchCN |
1 |
tile |
ave prof soil moisture
|
WRKT |
FVdycore |
W m-2 |
xy |
work done by atmosphere at top
|
WRKT |
DynCore |
W m-2 |
xy |
work done by atmosphere at top
|
WRKT |
ARIESg3 |
W m-2 |
xy |
work done by atmosphere at top
|
WSNOW |
Landice |
kg m-2 |
tile |
snow layer water content
|
WSUB |
Moist |
m s-1 |
xyz |
Subgrid Scale in-cloud vertical velocity
|
WTOT |
DatmoDyn |
m s-1 |
xyz |
total vertical velocity
|
WWTG |
DatmoDyn |
m s-1 |
xyz |
weak T-gradient compensating W
|
Z |
Gcm |
|
|
|
Z |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
Z0 |
Gcm |
|
|
|
Z0 |
Agcm |
m+2 |
xy |
isotropic variance of filtered topography
|
Z0 |
Physics |
kg m-2 s-1 |
xyz |
tendency of cloud ice due to mass scaling
|
Z0 |
Surface |
m |
xy |
surface roughness
|
Z0 |
Lake |
m |
tile |
surface roughness
|
Z0 |
Landice |
m |
tile |
surface roughness
|
Z0 |
Land |
|
|
|
Z0 |
Catch |
m |
tile |
surface roughness
|
Z0 |
CatchCN |
m |
tile |
surface roughness
|
Z0 |
Saltwater |
m |
tile |
surface roughness
|
Z0H |
Surface |
m |
xy |
surface roughness for heat
|
Z0H |
Lake |
m |
tile |
surface roughness for heat
|
Z0H |
Landice |
m |
tile |
surface roughness for heat
|
Z0H |
Land |
|
|
|
Z0H |
Catch |
m |
tile |
surface roughness for heat
|
Z0H |
CatchCN |
m |
tile |
surface roughness for heat
|
Z0H |
Saltwater |
m |
tile |
surface roughness for heat
|
Z2CH |
Surface |
m |
xy |
canopy height
|
Z2CH |
Land |
|
|
|
Z2CH |
Vegdyn |
m |
tile |
canopy height
|
Z300 |
DynCore |
m |
xy |
geopotential height at 300 hPa
|
Z500 |
DynCore |
m |
xy |
geopotential height at 500 hPa
|
Z700 |
DynCore |
m |
xy |
geopotential height at 700 hPa
|
ZCBL |
Moist |
m |
xy |
height of cloud base layer
|
ZCLD |
Turbulence |
m |
xy |
pbltop cloud depth LOCK
|
ZCLDTOP |
Turbulence |
m |
xy |
pbltop cloud top height LOCK
|
ZETA_W |
Surface |
1 |
xy |
Stability parameter in Warm Layer
|
ZETA_W |
Saltwater |
1 |
tile |
Stability parameter in Warm Layer
|
ZL |
FVdycore |
m |
xyz |
mid layer heights
|
ZL |
DynCore |
m |
xyz |
mid layer heights
|
ZL |
ARIESg3 |
m |
xyz |
mid layer heights
|
ZLCL |
Moist |
m |
xy |
lifting condensation level
|
ZLE |
Superdyn |
Pa K s-1 |
xyz |
delta-p weighted temperature tendency
|
ZLE |
FVdycore |
m |
xyz |
edge heights
|
ZLE |
DynCore |
m |
xyz |
edge heights
|
ZLE |
ARIESg3 |
m |
xyz |
edge heights
|
ZLE |
DatmoDyn |
m |
xyz |
Geop. height at the edges
|
ZLFC |
Moist |
m |
xy |
level of free convection
|
ZPBL10p |
Turbulence |
m |
xy |
planetary boundary layer height threshold 10p
|
ZPBL2 |
Turbulence |
m |
xy |
planetary boundary layer height threshold 2
|
ZPBLCN |
Moist |
m |
xy |
boundary layer depth
|
ZPBLHTKE |
Turbulence |
m |
xy |
planetary boundary layer height horiz tke
|
ZPBLRI |
Turbulence |
m |
xy |
planetary boundary layer height rich 0
|
ZPBLRI2 |
Turbulence |
m |
xy |
planetary boundary layer height rich 02
|
ZPBLTHV |
Turbulence |
m |
xy |
planetary boundary layer height thetav
|
ZRADBS |
Turbulence |
m |
xy |
hght of base for radbrv plume LOCK
|
ZRADML |
Turbulence |
m |
xy |
depth for radbrv plume LOCK
|
ZSML |
Turbulence |
m |
xy |
pbltop height for sfc plume LOCK
|
ZSNOW |
Landice |
m |
tile |
snow layer thickness
|
_DMS_aq |
AChem |
mol mol-1 s-1 |
xyz |
Dimethyl sulfide (DMS gas) before aqueous phase chemistry
|
_DMS_gas |
AChem |
mol mol-1 s-1 |
xyz |
Dimethyl sulfide (DMS) before gas phase chemistry
|
_H2SO4_aq |
AChem |
mol mol-1 s-1 |
xyz |
Sulfuric acid (H2SO4 gas) before aqueous phase chemistry
|
_H2SO4_gas |
AChem |
mol mol-1 s-1 |
xyz |
Sulfuric acid (H2SO4 gas) before gas phase chemistry
|
_MSA_aq |
AChem |
mol mol-1 s-1 |
xyz |
Methanesulfonic acid (MSA gas) before aqueous phase chemistry
|
_MSA_gas |
AChem |
mol mol-1 s-1 |
xyz |
Methanesulfonic acid (MSA) befoe gas phase chemistry
|
_NH3_aq |
AChem |
mol mol-1 s-1 |
xyz |
Ammonia (NH3 gas) tendency before aqueous phase chemistry
|
_NH3_gas |
AChem |
mol mol-1 s-1 |
xyz |
Ammonia (NH3) before gas phase chemistry
|
_SO2_aq |
AChem |
mol mol-1 s-1 |
xyz |
Sulfur dioxide (SO2 gas) before aqueous phase chemistry
|
_SO2_gas |
AChem |
mol mol-1 s-1 |
xyz |
Sulfur dioxide (SO2) before gas phase chemistry
|
_SOAG_aq |
AChem |
mol mol-1 s-1 |
xyz |
Secondary Organic Aerosols (SOA gas) before aqueous phase chemistry
|
_SOAG_gas |
AChem |
mol mol-1 s-1 |
xyz |
Secondary Organic Aerosols (SOA gas) before gas phase chemistry
|
bmelt_CMIP5 |
Saltwater |
kg m-2 s-1 |
tile |
rate of melt at sea ice base
|
ctop_moist |
Moist |
1 |
xy |
ctop after ras
|
evap_CMIP5 |
Saltwater |
kg m-2 s-1 |
tile |
water evaporation flux
|
fsitherm_CMIP5 |
Saltwater |
kg m-2 s-1 |
tile |
water flux into sea water due to sea ice thermodynamics
|
gmiERADIUS |
GMIchem |
cm |
xyz |
Aerosol Dust Radii
|
gmiQJ |
GMIchem |
cm3 s-1 |
xyz |
photolysis rate constants
|
gmiQK |
GMIchem |
2-3body_varies |
xyz |
thermal rate constants
|
gmiQQJ |
GMIchem |
cm-3 s-1 |
xyz |
photolysis reaction rates
|
gmiQQK |
GMIchem |
cm-3 s-1 |
xyz |
thermal reaction rates
|
gmiSAD |
GMIchem |
cm^2cm^3 |
xyz |
surface area densities
|
gmiTAREA |
GMIchem |
cm^2cm^3 |
xyz |
surface area aerosol dust
|
grCongel_CMIP5 |
Saltwater |
kg m-2 s-1 |
tile |
congelation sea ice growth rate
|
grFrazil_CMIP5 |
Saltwater |
kg m-2 s-1 |
tile |
frazil sea ice growth rate
|
grLateral_CMIP5 |
Saltwater |
kg m-2 s-1 |
tile |
lateral sea ice growth rate
|
hfsifrazil_CMIP5 |
Saltwater |
W m-2 |
tile |
heat flux into sea water due to frazil ice formation
|
ialb_CMIP5 |
Saltwater |
1 |
tile |
bare sea ice albedo
|
jNO2val |
GMIchem |
s^-1 |
xy |
photolysis rate constants for NO
|
lOCS |
AChem |
cm-3 s-1 |
xyz |
Loss rate of OCS (molec cm-3 s-1)
|
lOCS_O3p |
AChem |
cm-3 s-1 |
xyz |
Loss rate of OCS from OCS+O3p(molec cm-3 s-1)
|
lOCS_OH |
AChem |
cm-3 s-1 |
xyz |
Loss rate of OCS from OCS+OH(molec cm-3 s-1)
|
lOCS_jOCS |
AChem |
cm-3 s-1 |
xyz |
Loss rate of OCS from photolysis (molec cm-3 s-1)
|
pNH4_aq |
AChem |
kg kg-1 s-1 |
xyz |
production rate of ammonium in aqueous phase
|
pNH4_aq_NH3 |
AChem |
kg kg-1 s-1 |
xyz |
production rate of ammonium from dissociation of ammonia (NH3) in aqueous phase
|
pSO2_OCS |
AChem |
kg kg-1 s-1 |
xyz |
Production of SO2 from OCS
|
pSO2_OCS_O3p |
AChem |
kg kg-1 s-1 |
xyz |
Production of SO2 from OCS+O3p
|
pSO2_OCS_OH |
AChem |
kg kg-1 s-1 |
xyz |
Production of SO2 from OCS+OH
|
pSO2_OCS_jOCS |
AChem |
kg kg-1 s-1 |
xyz |
Production of SO2 from OCS photolysis
|
pSO4_aq |
AChem |
kg kg-1 s-1 |
xyz |
production rate of sulfate in aqueous phase
|
pSO4_aq_H2SO4 |
AChem |
kg kg-1 s-1 |
xyz |
production rate of sulfate from irreversible uptake of sulfuric acid vapor (H2SO4) in aqueous phase
|
pSO4_aq_SO2 |
AChem |
kg kg-1 s-1 |
xyz |
production rate of sulfate from sulfur dioxide (SO2) in aqueous phase
|
pScl_OCS |
AChem |
kg m-2 |
xy |
Production of SO2 from OCS (column integrated)
|
pr_CMIP5 |
Saltwater |
kg m-2 s-1 |
tile |
surface rainfall rate into the sea ice portion of the grid cell
|
prsn_CMIP5 |
Saltwater |
kg m-2 s-1 |
tile |
surface snowfall rate into the sea ice portion of the grid cell
|
rsdssi_CMIP5 |
Saltwater |
W m-2 |
tile |
surface downwelling shortwave flux in air
|
rsussi_CMIP5 |
Saltwater |
W m-2 |
tile |
surface upwelling shortwave flux in air
|
self%newvar_name(m) |
Satsim |
units |
unk |
long name
|
self%newvar_name(m) |
Satsim |
units |
unk |
long name
|
sfdsi_CMIP5 |
Saltwater |
kg m-2 s-1 |
tile |
downward sea ice basal salt flux
|
skin_S |
Gcm |
|
|
|
skin_S |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
skin_T |
Gcm |
|
|
|
skin_T |
Ogcm |
N m-2 |
tile |
northward stress at base of ice
|
snoToIce_CMIP5 |
Saltwater |
kg m-2 s-1 |
tile |
snow ice formation rate
|
snomelt_CMIP5 |
Saltwater |
kg m-2 s-1 |
tile |
snow melt rate
|
surfEmissForChem |
GMIchem |
kg m-2 s-1 |
xy |
surface emission for chemistry
|
tmelt_CMIP5 |
Saltwater |
kg m-2 s-1 |
tile |
rate of melt at upper surface of sea ice
|