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
|
ACCUM |
Catch |
kg m-2 s-1 |
tile |
Net ice accumulation rate
|
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_DP |
PChem |
kg m-2 s-1 |
xy |
Aerosol deposition
|
AERO |
GMIchem |
kg kg-1 |
xyz |
Aerosol mass mixing ratios
|
AICE |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
AIRDENS |
ChemEnv |
kg m-3 |
xyz |
Air density
|
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
|
AK |
DynCore |
1 |
z |
Hybrid sigma pressure a
|
ALBEDO |
Solar |
1 |
xy |
Surface albedo
|
ALBISCCP |
Satsim |
1 |
xy |
Isccp cloud albedo
|
ALBNF |
Solar |
1 |
xy |
Surface albedo for near infrared diffuse
|
ALBNR |
Solar |
1 |
xy |
Surface albedo for near infrared beam
|
ALBVF |
Solar |
1 |
xy |
Surface albedo for visible diffuse
|
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
|
AR1 |
Catch |
1 |
tile |
Areal fraction saturated zone
|
AR2 |
Catch |
1 |
tile |
Areal fraction transpiration zone
|
AREA |
DatmoDyn |
m+2 |
xy |
Agrid cell area
|
ASNOW |
Catch |
1 |
tile |
Fractional area of land snowcover
|
AUTZ |
Moist |
kg m-2 s-1 |
xy |
Autoconversion loss of cloud water
|
AUT |
Moist |
kg kg-1 s-1 |
xyz |
Autoconv sink of cloud liq
|
AVETSNOW |
Catch |
K |
tile |
Averaged snow temperature
|
BASEFLOW |
Catch |
kg m-2 s-1 |
tile |
Baseflow flux
|
BCOOL |
Saltwater |
m+2 s-3 |
tile |
Bouyancy generation in cool layer
|
BC |
PChem |
kg kg-1 |
xyz |
Black carbon aerosol mixing ratio
|
BKGERR |
Gwd |
W m-2 |
xy |
Vertically integrated kinetic energy residual for BKG energy conservation
|
BK |
DynCore |
1 |
z |
Hybrid sigma pressure b
|
BLW |
Radiation |
W m-2 K-1 |
xy |
Linearization of surface upwelling longwave flux
|
BSTAR |
Surface |
m s-2 |
xy |
Surface bouyancy scale
|
BYNCY |
Moist |
m s-2 |
xyz |
Buoyancy of surface parcel
|
CAPAC |
Surface |
kg m-2 |
xy |
Interception reservoir capac
|
CAPE |
Moist |
J m-2 |
xy |
Cape for surface parcel
|
CCWP |
Moist |
kg m-2 |
xy |
Grid mean conv cond water path diagnostic
|
CDCR2 |
Surface |
kg m-2 |
xy |
Max water content
|
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
|
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
|
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
|
CFPDFX |
Moist |
1 |
xyz |
Cloud fraction internal in PDF scheme
|
CFPDF |
Moist |
1 |
xyz |
Cloud fraction after PDF
|
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
|
CHEM_TRACERS |
Chem |
X |
xy |
Chemistry friendly tracers
|
CHIS |
Turbulence |
1 |
xy |
Optimal mixture fraction for BRV
|
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
|
CLCALIPSO2 |
Satsim |
1 |
xyz |
Calipsonocloudsat cloud fraction
|
CLCALIPSO |
Satsim |
1 |
xyz |
Calipso total cloud fraction
|
CLCNX0 |
Moist |
1 |
xyz |
Convective cloud area fraction
|
CLCN |
Moist |
1 |
xyz |
Convective cloud area fraction
|
CLDHILW |
Irrad |
1 |
xy |
Total cloud area fraction lw
|
CLDHI |
Solar |
1 |
xy |
Cloud area fraction for high clouds
|
CLDLOLW |
Irrad |
1 |
xy |
Total cloud area fraction lw
|
CLDLO |
Solar |
1 |
xy |
Cloud area fraction for low clouds
|
CLDMDLW |
Irrad |
1 |
xy |
Total cloud area fraction lw
|
CLDMD |
Solar |
1 |
xy |
Cloud area fraction for middle clouds
|
CLDNCCN |
Moist |
m-3 |
xyz |
Number concentration of cloud particles
|
CLDPRS |
Irrad |
Pa |
xy |
Cloud top pressure
|
CLDRF |
Turbulence |
W m-2 |
xy |
Cloud top radiative forcing
|
CLDSTD |
Gwd |
m |
xy |
Gravity wave drag standard deviation due to clouds
|
CLDTMP |
Irrad |
K |
xy |
Cloud top temperature
|
CLDTTLW |
Irrad |
1 |
xy |
Total cloud area fraction lw
|
CLDTT |
Solar |
1 |
xy |
Total cloud area fraction
|
CLHCALIPSO |
Satsim |
1 |
xy |
Calipso high level cloud fraction
|
CLLCALIPSO |
Satsim |
1 |
xy |
Calipso low level cloud fraction
|
CLLSX0 |
Moist |
1 |
xyz |
Large scale cloud area fraction
|
CLLS |
Moist |
1 |
xyz |
Large scale cloud area fraction
|
CLMCALIPSO |
Satsim |
1 |
xy |
Calipso mid level cloud fraction
|
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
|
CMT |
Saltwater |
kg m-2 s-1 |
tile |
Surface momentum exchange coefficient
|
CNT |
Saltwater |
1 |
tile |
Neutral drag coefficient
|
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_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_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
|
CNV |
ARIESg3 |
W m-2 |
xy |
Generation of atmosphere kinetic energy content
|
CN_ARF |
Moist |
1 |
xy |
Areal fraction of convective showers
|
CN_PRCP |
Moist |
kg m-2 s-1 |
xy |
Convective precipitation
|
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
|
CONGEL |
Surface |
m s-1 |
xy |
Congelation ice growth
|
CONVCPT |
ARIESg3 |
W m-2 |
xy |
Vertically integrated enthalpy convergence
|
CONVKE |
ARIESg3 |
W m-2 |
xy |
Vertically integrated kinetic energy convergence
|
CONVPHI |
ARIESg3 |
W m-2 |
xy |
Vertically integrated geopotential convergence
|
CONVTHV |
ARIESg3 |
W m-2 |
xy |
Vertically integrated thetav convergence
|
COSZ |
Solar |
1 |
xy |
Cosine of the solar zenith angle
|
CPT |
Agcm |
J m-2 |
xy |
Vertically integrated enthalpy
|
CQATM |
Land |
kg m-2 s-1 |
tile |
Surface exchange coefficient for moisture
|
CQT |
Saltwater |
kg m-2 s-1 |
tile |
Surface moisture exchange coefficient
|
CTPISCCP |
Satsim |
1 |
xy |
Isccp air pressure at cloud top
|
CWP |
Moist |
kg m-2 |
xy |
Condensed water path
|
D0 |
Catch |
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
|
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 |
Saltwater |
m |
tile |
Depth of cool layer
|
DCPTE |
Moist |
J m-2 |
xy |
Total VI DcpT
|
DCPT |
ARIESg3 |
W m-2 |
xy |
Tendency of atmosphere dry energy content due to dynamics
|
DDELPDTANA |
ARIESg3 |
K sec-1 |
xyz |
Tendency of pressure thickness due to analysis
|
DDELPDTDYN |
ARIESg3 |
Pa sec-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
|
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
|
DELPTOP |
DynCore |
Pa |
xy |
Pressure thickness at model top
|
DELP |
ChemEnv |
Pa |
xyz |
Pressure thickness
|
DELQS |
Saltwater |
kg kg-1 |
tile |
Change of surface specific humidity
|
DELSH |
Catch |
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 |
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
|
DFNIRN |
Solar |
1 |
xy |
Normalized surface downwelling nearinfrared diffuse flux
|
DFNIR |
Solar |
W m-2 |
xy |
Surface downwelling nearinfrared diffuse flux
|
DFPARN |
Solar |
1 |
xy |
Normalized surface downwelling par diffuse flux
|
DFPAR |
Solar |
W m-2 |
xy |
Surface downwelling par diffuse flux
|
DFSTAR |
Turbulence |
kg m-2 s-1 |
xy |
Change of surface fluxes for unit change of surface value
|
DFUVRN |
Solar |
1 |
xy |
Normalized surface downwelling ultraviolet diffuse flux
|
DFUVR |
Solar |
W m-2 |
xy |
Surface downwelling ultraviolet diffuse flux
|
DHLAND |
Catch |
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_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
|
DISCHARGE |
Surface |
kg m-2 s-1 |
xy |
River discharge at ocean points
|
DIV |
DatmoDyn |
s-1 |
xyz |
Divergence
|
DKERESIN |
ARIESg3 |
W m-2 |
xy |
Vertically integrated kinetic energy residual from inertial terms
|
DKERESPG |
ARIESg3 |
W m-2 |
xy |
Vertically integrated kinetic energy residual from PG terms
|
DKE |
ARIESg3 |
W m-2 |
xy |
Tendency of atmosphere kinetic energy content due to dynamics
|
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
|
DMDTANA |
ARIESg3 |
kg m-2 s-1 |
xy |
Vertically integrated mass tendency due to analysis
|
DMDTDYN |
ARIESg3 |
kg m-2 s-1 |
xy |
Vertically integrated mass tendency due to dynamics
|
DNICFLX |
Landice |
W m-2 |
tile |
Downward heat flux in ice
|
DO3DT_ANA |
Agcm |
1e-6 s-1 |
xyz |
Total ozone analysis tendency in ppmv sec-1
|
DO3DT |
mkiau |
ppmv |
xyz |
Ozone analysis increment
|
DOCDT |
Moist |
kg m-2 s-1 |
xy |
Organic carbon tendency due to conv scav
|
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
|
DOXDTDYNINT |
ARIESg3 |
kg m-2 s-1 |
xy |
Vertically integrated ozone tendency due to dynamics
|
DOXDTDYN |
ARIESg3 |
kg/kg/sec |
xyz |
Tendency of ozone due to dynamics
|
DOXDTPHYINT |
Physics |
kg m-2 s-1 |
xy |
Vertically integrated odd oxygen tendency due to physics
|
DPEDT_ANA |
Agcm |
Pa s-1 |
xyz |
Total edge pressure analysis tendency
|
DPEDT |
mkiau |
Pa |
xyz |
Edge pressure analysis increment
|
DPET |
ARIESg3 |
W m-2 |
xy |
Tendency of atmosphere topographic potential energy due to dynamics
|
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
|
DQICNDTDYN |
DatmoDyn |
kg/kg/sec |
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 |
DatmoDyn |
kg m-2 s-1 |
xy |
Vertically integrated ice water tendency due to analysis
|
DQIDTDYNINT |
ARIESg3 |
kg m-2 s-1 |
xy |
Vertically integrated ice water tendency due to dynamics
|
DQIDTDYN |
ARIESg3 |
kg/kg/sec |
xyz |
Tendency of ice water 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
|
DQILSDTDYN |
DatmoDyn |
kg/kg/sec |
xyz |
Tendency of large scale cloud ice due to dynamics
|
DQI |
ARIESg3 |
kg m-2 s-1 |
xy |
Tendency of atmosphere ice content due to dynamics
|
DQLCNDTDYN |
DatmoDyn |
kg/kg/sec |
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 |
DatmoDyn |
kg m-2 s-1 |
xy |
Vertically integrated liquid water tendency due to analysis
|
DQLDTDYNINT |
ARIESg3 |
kg m-2 s-1 |
xy |
Vertically integrated liquid water tendency due to dynamics
|
DQLDTDYN |
ARIESg3 |
kg/kg/sec |
xyz |
Tendency of liquid water 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
|
DQLLSDTDYN |
DatmoDyn |
kg/kg/sec |
xyz |
Tendency of large scale cloud water due to dynamics
|
DQL |
ARIESg3 |
kg m-2 s-1 |
xy |
Tendency of atmosphere liquid water content 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
|
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
|
DQVDTDYNINT |
DatmoDyn |
kg m-2 s-1 |
xy |
Vertically integrated water vapor tendency due to dynamics
|
DQVDTDYN |
DatmoDyn |
kg/kg/sec |
xyz |
Tendency of specific humidity 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
|
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 analysis tendency
|
DQVDT |
mkiau |
kg kg-1 |
xyz |
Specific humidity analysis increment
|
DQV |
ARIESg3 |
kg m-2 s-1 |
xy |
Tendency of atmosphere water vapor content due to dynamics
|
DRAINAGE |
Surface |
kg m-2 s-1 |
xy |
River drainage at ocean points
|
DRNIRN |
Solar |
1 |
xy |
Normalized surface downwelling nearinfrared beam flux
|
DRNIR |
Solar |
W m-2 |
xy |
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
|
DRPARN |
Solar |
1 |
xy |
Normalized surface downwelling par beam flux
|
DRPAR |
Solar |
W m-2 |
xy |
Surface downwelling par beam flux
|
DRUVRN |
Solar |
1 |
xy |
Normalized surface downwelling ultraviolet beam flux
|
DRUVR |
Solar |
W m-2 |
xy |
Surface downwelling ultraviolet beam flux
|
DSFDTS0 |
Irrad |
W m-2 K-1 |
xy |
Sensitivity of longwave flux emitted from surface to surface temperature at reference time
|
DSFDTS |
Irrad |
W m-2 K-1 |
xy |
Sensitivity of longwave flux emitted from surface to surface temperature
|
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
|
DTDTANA |
ARIESg3 |
K sec-1 |
xyz |
Tendency of air temperature due to analysis
|
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 |
mkiau |
K |
xyz |
Temperature analysis increment
|
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 |
DatmoDyn |
K kg m-2 s-1 |
xy |
Vertically integrated THV tendency due to analysis
|
DTHVDTCONSV |
ARIESg3 |
K kg m-2 s-1 |
xy |
Vertically integrated THV tendency due to TE conservation
|
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 |
DatmoDyn |
K kg m-2 s-1 |
xy |
Vertically integrated THV tendency due to physics
|
DTHVDTREMAP |
ARIESg3 |
K kg m-2 s-1 |
xy |
Vertically integrated THV tendency due to vertical remapping
|
DTSDT_ANA |
Agcm |
K s-1 |
xy |
Total skin temperature tendency
|
DTSDT |
mkiau |
K |
xy |
Skin temparature increment
|
DUDT |
Moist |
m s-2 |
xyz |
Zonal wind tendency due to moist
|
DUDTANA |
ARIESg3 |
m/sec/sec |
xyz |
Tendency of eastward wind due to analysis
|
DUDTDYN |
ARIESg3 |
m/sec/sec |
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
|
DUDT |
mkiau |
m s-1 |
xyz |
Eastward wind analysis increment
|
DUST |
PChem |
kg kg-1 |
xyz |
Mineral dust mixing ratio
|
DU |
Turbulence |
s-1 |
xyz |
Bulk shear from Louis
|
DVDT |
Moist |
m s-2 |
xyz |
Meridional wind tendency due to moist
|
DVDTANA |
ARIESg3 |
m/sec/sec |
xyz |
Tendency of northward wind due to analysis
|
DVDTDYN |
ARIESg3 |
m/sec/sec |
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
|
DVDT |
mkiau |
m s-1 |
xyz |
Northward wind analysis increment
|
DVIDTD |
Surface |
cm day-1 |
xy |
Ice volume tendency dueto dynamics
|
DVIDTT |
Surface |
cm day-1 |
xy |
Ice volume tendency dueto thermodynamics
|
DWARM |
Saltwater |
m |
tile |
Depth at base of warm layer
|
DWLAND |
Catch |
kg m-2 s-1 |
tile |
Rate of change of total land water
|
DZ |
DatmoDyn |
m |
xy |
Surface layer 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
|
EMIS |
Saltwater |
1 |
tile |
Surface emissivity
|
ENTLAM |
Moist |
kg m-2 s-1 |
xyz |
Entrainment parameter
|
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
|
EVAPC |
Moist |
kg kg-1 s-1 |
xyz |
Evaporation of cloud liq
|
EVAPOUT |
Saltwater |
kg m-2 s-1 |
tile |
Evaporation
|
EVAP |
Surface |
kg m-2 s-1 |
xy |
Evaporation from turbulence
|
EVLAND |
Catch |
kg m-2 s-1 |
tile |
Evaporation land
|
EVPCZ |
Moist |
kg m-2 s-1 |
xy |
Evaporation loss of cloud water
|
EVPICE |
Catch |
W m-2 |
tile |
Snow ice evaporation energy flux
|
EVPINT |
Catch |
W m-2 |
tile |
Interception loss energy flux
|
EVPPZ |
Moist |
kg m-2 s-1 |
xy |
Evaporation loss of precip water
|
EVPSNO |
Catch |
W m-2 |
tile |
Snowpack evaporation energy flux
|
EVPSOI |
Catch |
W m-2 |
tile |
Baresoil evap energy flux
|
EVPVEG |
Catch |
W m-2 |
tile |
Transpiration energy flux
|
FBOT |
Surface |
W m-2 |
xy |
Net downward heat flux from ice to ocean
|
FCLD |
Solar |
1 |
xyz |
Cloud area fraction
|
FHOCN |
Surface |
W m-2 |
xy |
Actual ocean ice flux
|
FILLNQV |
Moist |
kg m-2 s-1 |
xy |
Filling of negative Q
|
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
|
FLA |
Irrad |
W m-2 |
xyz |
Net downward longwave flux in air assuming clear sky and no aerosol
|
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
|
FLC |
Irrad |
W m-2 |
xyz |
Net downward longwave flux in air assuming clear sky
|
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
|
FLNS |
Irrad |
W m-2 |
xy |
Surface net downward longwave flux
|
FLXD |
Irrad |
W m-2 |
xyz |
Downward longwave flux in air
|
FLXU |
Irrad |
W m-2 |
xyz |
Upward longwave flux in air
|
FLX |
Irrad |
W m-2 |
xyz |
Net downward longwave flux in air
|
FRACICE |
DataSeaIce |
1 |
xy |
Fractional cover of seaice
|
FRACI |
Saltwater |
1 |
tile |
Ice covered fraction of tile
|
FRAZIL |
Surface |
m s-1 |
xy |
Frazil ice growth
|
FRLAKE |
Surface |
1 |
xy |
Fraction of lake
|
FRLANDICE |
Surface |
1 |
xy |
Fraction of land ice
|
FRLANDX0 |
Moist |
1 |
xy |
Areal land fraction
|
FRLAND |
Surface |
1 |
xy |
Fraction of land
|
FROCEAN |
Orad |
1 |
xy |
Ocean fraction of grid cell
|
FRSAT |
Catch |
1 |
tile |
Fractional area of saturated zone
|
FRUST |
Catch |
1 |
tile |
Fractional area of unsaturated zone
|
FRWLT |
Catch |
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
|
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
|
FSCDNA |
Solar |
W m-2 |
xyz |
Downward shortwave flux in air assuming clear sky and no aerosol
|
FSCD |
Solar |
W m-2 |
xyz |
Downward shortwave flux in air assuming clear sky
|
FSCNA |
Solar |
W m-2 |
xyz |
Net downward shortwave flux in air assuming clear sky and no aerosol
|
FSCUNA |
Solar |
W m-2 |
xyz |
Upward shortwave flux in air assuming clear sky and no aerosol
|
FSCU |
Solar |
W m-2 |
xyz |
Upward shortwave flux in air assuming clear sky
|
FSC |
Solar |
W m-2 |
xyz |
Net downward shortwave flux in air assuming clear sky
|
FSTAR |
Turbulence |
X kg m-2 s-1 |
xy |
Surface fluxes
|
FSWABS |
Surface |
W m-2 |
xy |
SW flux absorbed by skin layer
|
FSWBANDNA |
Solar |
W m-2 |
xy |
Net surface downward shortwave flux per band in air assuming no aerosol
|
FSWBAND |
Solar |
W m-2 |
xy |
Net surface downward shortwave flux per band in air
|
FSWDNA |
Solar |
W m-2 |
xyz |
Downward shortwave flux in air assuming no aerosol
|
FSWD |
Solar |
W m-2 |
xyz |
Downward shortwave flux in air
|
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
|
FSWUNA |
Solar |
W m-2 |
xyz |
Upward shortwave flux in air assuming no aerosol
|
FSWU |
Solar |
W m-2 |
xyz |
Upward shortwave flux in air
|
FSW |
Solar |
W m-2 |
xyz |
Net downward shortwave flux in air
|
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
|
GHFLX |
Catch |
W m-2 |
tile |
Ground energy flux
|
GHLAND |
Catch |
W m-2 |
tile |
Ground heating land
|
GRN |
Vegdyn |
1 |
tile |
Greeness fraction
|
GUST |
Saltwater |
m s-1 |
tile |
Gustiness
|
GWDVARXY |
Agcm |
m+2 |
xy |
SW-NE variance of GWD topography
|
GWDVARX |
Agcm |
m+2 |
xy |
East-west variance of GWD topography
|
GWDVARYX |
Agcm |
m+2 |
xy |
NW-SE variance of GWD topography
|
GWDVARY |
Agcm |
m+2 |
xy |
North-south variance of GWD topography
|
H1000 |
ARIESg3 |
m |
xy |
Height at 1000 mb
|
H250 |
ARIESg3 |
m |
xy |
Height at 250 hPa
|
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
|
H300 |
DynCore |
m |
xy |
Height at 300 hPa
|
H500 |
ARIESg3 |
m |
xy |
Height at 500 hPa
|
H700 |
DynCore |
m |
xy |
Height at 700 hPa
|
H850 |
ARIESg3 |
m |
xy |
Height at 850 hPa
|
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
|
HDQDTDYN |
DatmoDyn |
kg/kg/sec |
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
|
HICE |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
HLATICE |
Saltwater |
W m-2 |
tile |
Sea ice latent energy flux
|
HLATN |
Saltwater |
W m-2 |
tile |
Total latent energy flux
|
HLATWTR |
Saltwater |
W m-2 |
tile |
Open water latent energy flux
|
HLWUP |
Saltwater |
W m-2 |
tile |
Surface outgoing longwave flux
|
HNO3CONDsad |
GMIchem |
mixing_ratio |
xyz |
Condensed phase hno3
|
HNO3GASsad |
GMIchem |
mixing_ratio |
xyz |
Gas phase-hno3
|
HSNO |
Surface |
m |
xy |
Grid cell mean snow thickness
|
H |
Orad |
dyn-m |
xyz |
Layer mass
|
ICESOI |
Catch |
kg m-2 |
tile |
Soil frozen water content
|
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 output 0 180 hPa
|
ISCCP2 |
Satsim |
1 |
xy |
Isccp output 180 310 hPa
|
ISCCP3 |
Satsim |
1 |
xy |
Isccp output 310 440 hPa
|
ISCCP4 |
Satsim |
1 |
xy |
Isccp output 440 560 hPa
|
ISCCP5 |
Satsim |
1 |
xy |
Isccp output 560 680 hPa
|
ISCCP6 |
Satsim |
1 |
xy |
Isccp output 680 800 hPa
|
ISCCP7 |
Satsim |
1 |
xy |
Isccp output 800 SFC hPa
|
ISCCP_ACU_OA |
Satsim |
1 |
xy |
Fraction of thin higher altocumulus
|
ISCCP_ACU_OB |
Satsim |
1 |
xy |
Fraction of thick higher altocumulus
|
ISCCP_ACU_UA |
Satsim |
1 |
xy |
Fraction of thin lower altocumulus
|
ISCCP_ACU_UB |
Satsim |
1 |
xy |
Fraction of thick lower altocumulus
|
ISCCP_AST_OA |
Satsim |
1 |
xy |
Fraction of thin higher altostratus
|
ISCCP_AST_OB |
Satsim |
1 |
xy |
Fraction of thick higher altostratus
|
ISCCP_AST_UA |
Satsim |
1 |
xy |
Fraction of thin lower altostratus
|
ISCCP_AST_UB |
Satsim |
1 |
xy |
Fraction of thick lower altostratus
|
ISCCP_CB_MA |
Satsim |
1 |
xy |
Fraction of thin middle cumulonimbus
|
ISCCP_CB_MB |
Satsim |
1 |
xy |
Fraction of thick middle cumulonimbus
|
ISCCP_CB_OA |
Satsim |
1 |
xy |
Fraction of thin higher cumulonimbus
|
ISCCP_CB_OB |
Satsim |
1 |
xy |
Fraction of thick higher cumulonimbus
|
ISCCP_CB_UA |
Satsim |
1 |
xy |
Fraction of thin lower cumulonimbus
|
ISCCP_CB_UB |
Satsim |
1 |
xy |
Fraction of thick lower cumulonimbus
|
ISCCP_CIST_MA |
Satsim |
1 |
xy |
Fraction of thin middle cirrostratus
|
ISCCP_CIST_MB |
Satsim |
1 |
xy |
Fraction of thick middle cirrostratus
|
ISCCP_CIST_OA |
Satsim |
1 |
xy |
Fraction of thin higher cirrostratus
|
ISCCP_CIST_OB |
Satsim |
1 |
xy |
Fraction of thick higher cirrostratus
|
ISCCP_CIST_UA |
Satsim |
1 |
xy |
Fraction of thin lower cirrostratus
|
ISCCP_CIST_UB |
Satsim |
1 |
xy |
Fraction of thick lower cirrostratus
|
ISCCP_CI_MA |
Satsim |
1 |
xy |
Fraction of thin middle cirrus
|
ISCCP_CI_MB |
Satsim |
1 |
xy |
Fraction of thick middle cirrus
|
ISCCP_CI_OA |
Satsim |
1 |
xy |
Fraction of thin higher cirrus
|
ISCCP_CI_OB |
Satsim |
1 |
xy |
Fraction of thick higher cirrus
|
ISCCP_CI_UA |
Satsim |
1 |
xy |
Fraction of thin lower cirrus
|
ISCCP_CI_UB |
Satsim |
1 |
xy |
Fraction of thick lower cirrus
|
ISCCP_CU_OA |
Satsim |
1 |
xy |
Fraction of thin higher cumulus
|
ISCCP_CU_OB |
Satsim |
1 |
xy |
Fraction of thick higher cumulus
|
ISCCP_CU_UA |
Satsim |
1 |
xy |
Fraction of thin lower cumulus
|
ISCCP_CU_UB |
Satsim |
1 |
xy |
Fraction of thick lower cumulus
|
ISCCP_NST_OA |
Satsim |
1 |
xy |
Fraction of thin higher nimbostratus
|
ISCCP_NST_OB |
Satsim |
1 |
xy |
Fraction of thick higher nimbostratus
|
ISCCP_NST_UA |
Satsim |
1 |
xy |
Fraction of thin lower nimbostratus
|
ISCCP_NST_UB |
Satsim |
1 |
xy |
Fraction of thick lower nimbostratus
|
ISCCP_STCU_OA |
Satsim |
1 |
xy |
Fraction of thin higher stratocumulus
|
ISCCP_STCU_OB |
Satsim |
1 |
xy |
Fraction of thick higher stratocumulus
|
ISCCP_STCU_UA |
Satsim |
1 |
xy |
Fraction of thin lower stratocumulus
|
ISCCP_STCU_UB |
Satsim |
1 |
xy |
Fraction of thick lower stratocumulus
|
ISCCP_ST_OA |
Satsim |
1 |
xy |
Fraction of thin higher stratus
|
ISCCP_ST_OB |
Satsim |
1 |
xy |
Fraction of thick higher stratus
|
ISCCP_ST_UA |
Satsim |
1 |
xy |
Fraction of thin lower stratus
|
ISCCP_ST_UB |
Satsim |
1 |
xy |
Fraction of thick lower stratus
|
ISCCP_SUBV1 |
Satsim |
1 |
xy |
Fraction of subvisible cloud 0 180 hPa
|
ISCCP_SUBV2 |
Satsim |
1 |
xy |
Fraction of subvisible cloud 180 310 hPa
|
ISCCP_SUBV3 |
Satsim |
1 |
xy |
Fraction of subvisible cloud 310 440 hPa
|
ISCCP_SUBV4 |
Satsim |
1 |
xy |
Fraction of subvisible cloud 440 560 hPa
|
ISCCP_SUBV5 |
Satsim |
1 |
xy |
Fraction of subvisible cloud 560 680 hPa
|
ISCCP_SUBV6 |
Satsim |
1 |
xy |
Fraction of subvisible cloud 680 800 hPa
|
ISCCP_SUBV7 |
Satsim |
1 |
xy |
Fraction of subvisible cloud 800 SFC hPa
|
ISTSFC |
Surface |
C |
xy |
Snow or ice surface temperature
|
ITY |
Catch |
1 |
tile |
Vegetation type
|
IWP |
Moist |
kg m-2 |
xy |
Ice water path
|
KCBLI |
Moist |
1 |
xy |
Cloud base layer before ras
|
KEADV |
ARIESg3 |
W m-2 |
xy |
Vertically integrated kinetic energy tendency due to dynamics advection
|
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 |
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 |
ARIESg3 |
W m-2 |
xy |
Vertically integrated kinetic energy tendency due to pressure change
|
KEDYN |
ARIESg3 |
W m-2 |
xy |
Vertically integrated kinetic energy tendency due to dynamics
|
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 |
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
|
KEMST2 |
Moist |
W m-2 |
xy |
Vertically integrated KE dissipation in RAS
|
KEMST |
Moist |
W m-2 |
xy |
Vertically integrated kinetic energy tendency across moist
|
KEORO |
Gwd |
W m-2 |
xy |
Vertically integrated kinetic energy dissipation due to orographic gravity waves
|
KEPG |
ARIESg3 |
W m-2 |
xy |
Vertically integrated kinetic energy tendency due to pressure gradient
|
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 |
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
|
KE |
ARIESg3 |
J m-2 |
xy |
Vertically integrated kinetic energy
|
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
|
KH |
Turbulence |
m+2 s-1 |
xyz |
Total scalar diffusivity
|
KMLS |
Turbulence |
m+2 s-1 |
xyz |
Momentum diffusivity from Louis
|
KM |
Turbulence |
m+2 s-1 |
xyz |
Total momentum diffusivity
|
KPAR |
Orad |
m-1 |
xy |
PAR extinction coefficient
|
LAI |
Vegdyn |
1 |
tile |
Leaf area index
|
LAS |
Irrad |
W m-2 |
xy |
Surface absorbed longwave radiation assuming clear sky and no aerosol
|
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 |
Catch |
W m-2 |
tile |
Latent heat flux land
|
LHOBS |
DatmoDyn |
W m-2 |
xy |
Obs. latent heat flux (surface)
|
LIDARPMOL |
Satsim |
m-1 sr-1 |
xyz |
Molecular attenuated backscatter lidar signal power
|
LIDARPTOT |
Satsim |
m-1 sr-1 |
xyz |
Total attenuated backscatter lidar signal power
|
LIDARTAUTOT |
Satsim |
1 |
xyz |
Optical thickess integrated from top to level z
|
LST |
Catch |
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
|
LWCRT |
Turbulence |
K s-1 |
xyz |
Cloudy LW radiation tendency used by Lock scheme
|
LWI |
Surface |
1 |
xy |
Land(1) water(0) ice(2) flag
|
LWLAND |
Catch |
W m-2 |
tile |
Net longwave land
|
LWNDICE |
Saltwater |
W m-2 |
tile |
Sea ice net downward longwave flux
|
LWNDSRF |
Saltwater |
W m-2 |
tile |
Surface 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 |
Irrad |
W m-2 |
xy |
Surface absorbed longwave radiation
|
MASS |
Agcm |
kg m-2 |
xy |
Atmospheric mass
|
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
|
MDSOPTHCKH2OLG |
Satsim |
1 |
xy |
Modis optical thickness water logmean
|
MDSOPTHCKH2O |
Satsim |
1 |
xy |
Modis optical thickness water mean
|
MDSOPTHCKICELG |
Satsim |
1 |
xy |
Modis optical thickness ice logmean
|
MDSOPTHCKICE |
Satsim |
1 |
xy |
Modis optical thickness ice mean
|
MDSOPTHCKTTLLG |
Satsim |
1 |
xy |
Modis optical thickness total logmean
|
MDSOPTHCKTTL |
Satsim |
1 |
xy |
Modis optical thickness total mean
|
MDSOPTHCKWTRLG |
Satsim |
1 |
xy |
Modis optical thickness water logmean
|
MDSOPTHCKWTR |
Satsim |
1 |
xy |
Modis optical thickness water mean
|
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
|
MELTB |
Surface |
m s-1 |
xy |
Basal ice melt
|
MELTL |
Surface |
m s-1 |
xy |
Lateral ice melt
|
MELTQ |
DataSeaIce |
W m-2 |
xy |
Heat of melting or freezing
|
MELTS |
Surface |
m s-1 |
xy |
Snow melt
|
MELTT |
Surface |
m s-1 |
xy |
Top ice melt
|
MFX_A |
ARIESg3 |
Pa m+2 s-1 |
xyz |
Zonal mass flux
|
MFX_UR |
ARIESg3 |
Pa m+2 s-1 |
xyz |
Pressure weighted eastward wind unremapped
|
MFX |
ARIESg3 |
Pa m+2 s-1 |
xyz |
Pressure weighted eastward wind
|
MFY_A |
ARIESg3 |
Pa m+2 s-1 |
xyz |
Meridional mass flux
|
MFY_UR |
ARIESg3 |
Pa m+2 s-1 |
xyz |
Pressure weighted northward wind unremapped
|
MFY |
ARIESg3 |
Pa m+2 s-1 |
xyz |
Pressure weighted northward wind
|
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 layer top
|
MISRFQ12000 |
Satsim |
1 |
xy |
MISR layer top
|
MISRFQ1250 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ14000 |
Satsim |
1 |
xy |
MISR layer top
|
MISRFQ16000 |
Satsim |
1 |
xy |
MISR layer top
|
MISRFQ1750 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ18000 |
Satsim |
1 |
xy |
MISR layer top
|
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 layer top
|
MISRFQ4500 |
Satsim |
1 |
xy |
MISR layer top
|
MISRFQ6000 |
Satsim |
1 |
xy |
MISR layer top
|
MISRFQ750 |
Satsim |
1 |
xy |
MISR cloud area
|
MISRFQ8000 |
Satsim |
1 |
xy |
MISR layer top
|
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 |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
MOM_3D_MASK |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
MOQ10M |
Saltwater |
kg kg-1 |
tile |
Humidity 10m wind from MO sfc
|
MOQ2M |
Saltwater |
kg kg-1 |
tile |
Humidity 2m wind from MO sfc
|
MOT10M |
Saltwater |
K |
tile |
Temperature 10m wind from MO sfc
|
MOT2M |
Saltwater |
K |
tile |
Temperature 2m wind from MO sfc
|
MOU10M |
Saltwater |
m s-1 |
tile |
Zonal 10m wind from MO sfc
|
MOU2M |
Saltwater |
m s-1 |
tile |
Zonal 2m wind from MO sfc
|
MOU50M |
Saltwater |
m s-1 |
tile |
Zonal 50m wind from MO sfc
|
MOV10M |
Saltwater |
m s-1 |
tile |
Meridional 10m wind from MO sfc
|
MOV2M |
Saltwater |
m s-1 |
tile |
Meridional 2m 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
|
MXDIAM |
Moist |
m |
xy |
Diameter of largest RAS plume
|
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
|
NCN_PRCP |
ChemEnv |
kg m-2 s-1 |
xy |
Non-convective precipitation
|
NITY |
Surface |
1 |
xy |
NCEP vegetation type
|
O3PPMV |
PChem |
ppmv |
xyz |
Ozone volume mixing ratio
|
O3 |
PChem |
kg kg-1 |
xyz |
Ozone mass mixing ratio
|
OC |
PChem |
kg kg-1 |
xyz |
Organic carbon aerosol mixing ratio
|
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
|
OMEGA10 |
DynCore |
Pa s-1 |
xy |
Omega at 10 hPa
|
OMEGA200 |
DynCore |
Pa s-1 |
xy |
Omega at 200 hPa
|
OMEGA500 |
ARIESg3 |
Pa s-1 |
xy |
Omega at 500 hPa
|
OMEGA850 |
DynCore |
Pa s-1 |
xy |
Omega at 850 hPa
|
OMEGA |
DatmoDyn |
Pa/s |
xyz |
Pressure velocity
|
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
|
OSR |
Solar |
W m-2 |
xy |
Toa outgoing shortwave flux
|
OUSTAR3 |
Saltwater |
m+3 s-3 |
tile |
Ocean ustar cubed
|
OXFILL |
Agcm |
kg m-2 s-1 |
xy |
Vertically integrated ox adjustment from filling
|
OXIM |
Physics |
kg kg-1 s-1 |
xyz |
Tendency of odd oxygen due to moist processes
|
OXIT |
Physics |
kg kg-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_TEND |
PChem |
mol mol-1 s-1 |
xyz |
Tendency of odd oxygen mixing ratio due to chemistry
|
OX |
Physics |
kg m-2 s-1 |
xy |
Vertically integrated odd oxygen tendency due to physics
|
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
|
PCPOBS |
DatmoDyn |
mm/d |
xy |
Obs. precipitation rate
|
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
|
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 |
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 |
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 |
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 |
Orad |
W m-2 |
xy |
Net downward penetrating diffuse PAR flux
|
PENPAR |
Orad |
W m-2 |
xy |
Net downward penetrating direct PAR flux
|
PENUVF |
Orad |
W m-2 |
xy |
Net downward penetrating diffuse UV flux
|
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 |
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 |
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
|
PE |
DynCore |
Pa |
xyz |
Air pressure
|
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_LSAN |
Moist |
kg m-2 s-1 |
xyz |
3D flux of ice nonconvective precipitation
|
PFI_LS |
Moist |
kg m-2 s-1 |
xyz |
3D flux of ice nonanvil large scale 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_LSAN |
Moist |
kg m-2 s-1 |
xyz |
3D flux of liquid nonconvective precipitation
|
PFL_LS |
Moist |
kg m-2 s-1 |
xyz |
3D flux of liquid nonanvil large scale precipitation
|
PGENTOT |
Moist |
kg m-2 s-1 |
xy |
Total column production of precipitation
|
PHIS |
DatmoDyn |
K |
xy |
Obs skin temperature
|
PLEI |
Moist |
Pa |
xyz |
Air pressure before ras
|
PLE |
Gwd |
Pa |
xyz |
Air pressure
|
PLK |
DatmoDyn |
J kg-1 |
xyz |
Exner quantity
|
PLS |
Surface |
kg m-2 s-1 |
xy |
Liquid water large scale precipitation
|
PL |
DatmoDyn |
Pa |
xyz |
Midlevel pressures
|
PPBL |
Turbulence |
Pa |
xy |
Pbltop pressure
|
PREF |
Gwd |
Pa |
z |
Reference air pressure
|
PREVTOT |
Moist |
kg m-2 s-1 |
xy |
Total column re-evap/subl of precipitation
|
PSFCOBS |
DatmoDyn |
[Pa |
xy |
Obs. Sfc. Pressure
|
PSI |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
PS |
Saltwater |
Pa |
tile |
Surface pressure
|
PTFX |
ARIESg3 |
K Pa m+2 s-1 |
xyz |
Pressure weighted eastward potential temperature flux unremapped
|
PTFY |
ARIESg3 |
K Pa m+2 s-1 |
xyz |
Pressure weighted northward potential temperature flux unremapped
|
PT |
DynCore |
K Pa$^{-\kappa}$ |
xyz |
Scaled potential temperature
|
PV |
DatmoDyn |
m+2 kg-1 sec-1 |
xyz |
Ertels isentropic potential vorticity
|
Q10M |
Surface |
kg kg-1 |
xy |
10-meter specific humidity
|
Q250 |
ARIESg3 |
kg kg-1 |
xy |
Specific humidity at 250 hPa
|
Q2M |
Surface |
kg kg-1 |
xy |
2-meter specific humidity
|
Q500 |
ARIESg3 |
kg kg-1 |
xy |
Specific humidity at 500 hPa
|
Q850 |
ARIESg3 |
kg kg-1 |
xy |
Specific humidity at 850 hPa
|
QA |
Surface |
kg kg-1 |
xy |
Surface air specific humidity
|
QCOOL |
Saltwater |
W m-2 |
tile |
Net cooling in cool layer
|
QCTOT |
Moist |
kg kg-1 |
xyz |
Mass fraction of total cloud water
|
QDWL |
Surface |
kg kg-1 |
xy |
Surface liquid condensate
|
QFIXER |
ARIESg3 |
W m-2 |
xy |
Vertically integrated potential energy tendency due to CONSV
|
QFRL |
Surface |
kg kg-1 |
xy |
Surface ice condensate
|
QHATOBS |
DatmoDyn |
K s-1 |
xyz |
Obs. Moisture Tendency H adv
|
QHOI |
Moist |
kg kg-1 |
xyz |
Specific humidity before ras
|
QH |
Saltwater |
kg kg-1 |
tile |
Turbulence surface specific humidity
|
QICNX0 |
Moist |
kg kg-1 |
xyz |
Mass fraction of convective cloud ice water
|
QICN |
Moist |
1 |
xyz |
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 |
Mass fraction of large scale cloud ice water
|
QINFIL |
Catch |
kg m-2 s-1 |
tile |
Rainwater infiltration flux
|
QIOBS |
DatmoDyn |
1 |
xyz |
Obs. Cloud ice
|
QITOT |
Moist |
kg kg-1 |
xyz |
Mass fraction of cloud ice water
|
QI |
Moist |
kg kg-1 |
xyz |
Cloud ice for radiation
|
QLCNX0 |
Moist |
kg kg-1 |
xyz |
Mass fraction of convective cloud liquid water
|
QLCN |
Moist |
1 |
xyz |
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 |
Mass fraction of large scale cloud liquid water
|
QLOBS |
DatmoDyn |
1 |
xyz |
Obs. Cloud liquid
|
QLTOT |
Moist |
kg kg-1 |
xyz |
Mass fraction of cloud liquid water
|
QL |
Moist |
kg kg-1 |
xyz |
Cloud liquid for radiation
|
QOBS |
DatmoDyn |
1 |
xyz |
Obs. Spec. Humidity
|
QRTOT |
Moist |
kg kg-1 |
xyz |
Mass fraction of falling rain
|
QR |
Moist |
kg kg-1 |
xyz |
Falling rain 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
|
QSTAR |
Surface |
kg kg-1 |
xy |
Surface moisture scale
|
QSTOT |
Moist |
kg kg-1 |
xyz |
Mass fraction of falling snow
|
QST |
Saltwater |
kg kg-1 |
tile |
Surface specific humidity
|
QS |
Moist |
kg kg-1 |
xyz |
Falling snow for radiation
|
QTEST |
DatmoDyn |
1 |
xyz |
Test tracer
|
QTFILL |
Agcm |
kg m-2 s-1 |
xy |
Vertically integrated total water adjustment from filling
|
QVATOBS |
DatmoDyn |
K s-1 |
xyz |
Obs. Moisture Tendency V adv
|
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
|
QV |
Turbulence |
kg kg-1 |
xyz |
Specific humidity
|
QX0 |
Moist |
kg kg-1 |
xyz |
Specific humidity
|
Q |
Gwd |
kg kg-1 |
xyz |
Specific humidity
|
RADARLTCC |
Satsim |
1 |
xy |
Radar and lidar total cloud amount
|
RADARZETOT |
Satsim |
1 |
xyz |
Radar output
|
RADLWCNA |
Radiation |
K s-1 |
xyz |
Air temperature tendency due to longwave for clear skies no aerosol
|
RADLWC |
Radiation |
K s-1 |
xyz |
Air temperature tendency due to longwave for clear skies
|
RADLW |
Radiation |
K s-1 |
xyz |
Air temperature tendency due to longwave
|
RADRCODE |
Turbulence |
1 |
xy |
Return codes for Lock top driven plume
|
RADSRF |
Radiation |
W m-2 |
xy |
Net downwelling radiation at surface
|
RADSWCNA |
Radiation |
K s-1 |
xyz |
Air temperature tendency due to shortwave for clear skies no aerosol
|
RADSWC |
Radiation |
K s-1 |
xyz |
Air temperature tendency due to shortwave for clear skies
|
RADSWNA |
Radiation |
K s-1 |
xyz |
Air temperature tendency due to shortwave no aerosol
|
RADSW |
Radiation |
K s-1 |
xyz |
Air temperature tendency due to shortwave
|
RAINOCN |
Saltwater |
kg m-2 s-1 |
tile |
Ocean rainfall
|
RASPBLQ |
Moist |
(m+3 s-1)+1/2 |
xy |
Sqrt of integral KH dz
|
RASTIME |
Moist |
s |
xy |
Timescale for deep RAS plumes
|
RCCODE |
Moist |
codes |
xyz |
Convection return codes
|
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
|
RE |
Surface |
1 |
xy |
Surface reynolds number
|
RH1 |
Moist |
1 |
xyz |
Relative humidity before moist
|
RH2MMAX |
Surface |
% |
xy |
Daily maximum near-surface relative humidity
|
RH2MMIN |
Surface |
% |
xy |
Daily minimum near-surface relative humidity
|
RH2M |
Surface |
% |
xy |
Near-surface relative humidity
|
RH2 |
Moist |
1 |
xyz |
Relative humidity after moist
|
RHCLR |
Moist |
1 |
xyz |
RH clear sky
|
RHO |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
RHX |
Moist |
1 |
xyz |
Relative humidity after PDF
|
RIT |
Saltwater |
1 |
tile |
Surface bulk richardson number
|
RI |
Turbulence |
1 |
xyz |
Richardson number from Louis
|
RL |
Moist |
m |
xyz |
Liquid cloud particle effective radius
|
ROOTL |
Vegdyn |
m+2 |
tile |
Root length density
|
RR |
Moist |
m |
xyz |
Falling rain particle effective radius
|
RSCNA |
Solar |
W m-2 |
xy |
Toa net downward shortwave flux assuming clear sky and no aerosol
|
RSCSNA |
Solar |
W m-2 |
xy |
Surface net downward shortwave flux assuming clear sky and no aerosol
|
RSCS |
Solar |
W m-2 |
xy |
Surface net downward shortwave flux assuming clear sky
|
RSC |
Solar |
W m-2 |
xy |
Toa net downward shortwave flux assuming clear sky
|
RSRNA |
Solar |
W m-2 |
xy |
Toa net downward shortwave flux assuming no aerosol
|
RSRSNA |
Solar |
W m-2 |
xy |
Surface net downward shortwave flux assuming no aerosol
|
RSRS |
Solar |
W m-2 |
xy |
Surface net downward shortwave flux
|
RSR |
Solar |
W m-2 |
xy |
Toa net downward shortwave flux
|
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
|
RS |
Moist |
m |
xyz |
Falling ice particle effective radius
|
RUNOFF |
Catch |
kg m-2 s-1 |
tile |
Runoff flux
|
RUNSURF |
Catch |
kg m-2 s-1 |
tile |
Surface runoff flux
|
RZEQ |
Catch |
kg m-2 |
tile |
Root zone equilibrium moisture
|
SALTFLUX |
Surface |
kg m-2 s-1 |
xy |
Salt flux bw saltwater ocean
|
SALT |
PChem |
kg kg-1 |
xyz |
Sea salt mixing ratio
|
SATORB |
Orb |
days |
xy |
Satellite orbits
|
SDMZ |
Moist |
kg m-2 s-1 |
xy |
Sedimentation loss of cloud ice
|
SDM |
Moist |
kg kg-1 s-1 |
xyz |
Sedimentation sink of cloud ice
|
SFCEM0 |
Irrad |
W m-2 |
xy |
Longwave flux emitted from surface at reference time
|
SFCEM |
Irrad |
W m-2 |
xy |
Longwave flux emitted from surface
|
SGFCLD |
Satsim |
1 |
xyz |
Summed subgrid cloud fraction from scops
|
SGH |
Gwd |
m |
xy |
Standard deviation of topography
|
SHAT |
Surface |
m+2 s-2 |
xy |
Effective surface dry static energy
|
SHICE |
Saltwater |
W m-2 |
tile |
Sea ice upward sensible heat flux
|
SHLAND |
Catch |
W m-2 |
tile |
Sensible heat flux land
|
SHOBS |
DatmoDyn |
W m-2 |
xy |
Obs. sensible heat flux (surface)
|
SHOUT |
Saltwater |
W m-2 |
tile |
Upward sensible heat flux
|
SHSNOW |
Catch |
W m-2 |
tile |
Downward heat flux into snow
|
SHWTR |
Saltwater |
W m-2 |
tile |
Open water upward sensible heat flux
|
SH |
Surface |
W m-2 |
xy |
Sensible heat flux from turbulence
|
SIT |
Physics |
Pa m+2 s-3 |
xyz |
Pressure weighted tendency of dry static energy due to turbulence
|
SLP |
ARIESg3 |
Pa |
xy |
Sea level pressure
|
SLRSFCNA |
Solar |
W m-2 |
xy |
Surface incoming shortwave flux assuming clear clean sky
|
SLRSFC |
Solar |
W m-2 |
xy |
Surface incoming shortwave flux assuming clear sky
|
SLRSFNA |
Solar |
W m-2 |
xy |
Surface incoming shortwave flux assuming clean sky
|
SLRSF |
Solar |
W m-2 |
xy |
Surface incoming shortwave flux
|
SLRSUFCNA |
Solar |
W m-2 |
xy |
Surface outgoing shortwave flux assuming clear clean sky
|
SLRSUFC |
Solar |
W m-2 |
xy |
Surface outgoing shortwave flux assuming clear sky
|
SLRSUFNA |
Solar |
W m-2 |
xy |
Surface outgoing shortwave flux assuming clean sky
|
SLRSUF |
Solar |
W m-2 |
xy |
Surface outgoing shortwave flux
|
SLRTP |
Solar |
W m-2 |
xy |
Toa incoming shortwave flux
|
SMELT |
Catch |
kg m-2 s-1 |
tile |
Snowmelt flux
|
SMIXT |
Turbulence |
J kg-1 |
xy |
S of optimal mixture for BRV
|
SMLAND |
Catch |
kg m-2 s-1 |
tile |
Snowmelt flux land
|
SNOICE |
Surface |
m s-1 |
xy |
Snow-ice formation
|
SNOMAS |
Surface |
kg m-2 |
xy |
Snow mass
|
SNOWDP |
Catch |
m |
tile |
Snow depth
|
SNOWMASS |
Catch |
kg m-2 |
tile |
Snow mass
|
SNOWOCN |
Saltwater |
kg m-2 s-1 |
tile |
Ocean snowfall
|
SNO |
Surface |
kg m-2 s-1 |
xy |
Snowfall
|
SO4 |
PChem |
kg kg-1 |
xyz |
Sulfate aerosol mixing ratio
|
SPEED |
DatmoDyn |
m s-1 |
xy |
Surface wind speed
|
SPLAND |
Catch |
W m-2 |
tile |
Rate of spurious land energy source
|
SPSNOW |
Catch |
W m-2 |
tile |
Rate of spurious snow energy
|
SPWATR |
Catch |
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
|
SSH |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
SSKINW |
Surface |
psu |
xy |
Sea skin layer salinity
|
SUBCZ |
Moist |
kg m-2 s-1 |
xy |
Sumblimation loss of cloud ice
|
SUBLC |
Moist |
kg kg-1 s-1 |
xyz |
Sublimation of cloud ice
|
SUBLIM |
Saltwater |
kg m-2 s-1 |
tile |
Sublimation
|
SUBPZ |
Moist |
kg m-2 s-1 |
xy |
Sumblimation loss of precip ice
|
SWCOOL |
Saltwater |
W m-2 |
tile |
Solar heating in cool layer
|
SWHEAT |
Orad |
W m-2 |
xyz |
Solar heating rate
|
SWLAND |
Catch |
W m-2 |
tile |
Net shortwave land
|
SWNDICE |
Saltwater |
W m-2 |
tile |
Sea ice net downward shortwave flux
|
SWNDSRF |
Saltwater |
W m-2 |
tile |
Surface net downward shortwave flux
|
SWNDWTR |
Saltwater |
W m-2 |
tile |
Open water net downward shortwave flux
|
S |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
T |
DatmoDyn |
K |
xyz |
Air temperature
|
T10M |
Surface |
K |
xy |
10-meter air temperature
|
T250 |
ARIESg3 |
K |
xy |
Air temperature at 250 hPa
|
T2MMAX |
Surface |
K |
xy |
Daily maximum near-surface air temperature
|
T2MMIN |
Surface |
K |
xy |
Daily minimum near-surface air temperature
|
T2M |
Surface |
K |
xy |
2-meter air temperature
|
T300 |
DynCore |
K |
xy |
Air temperature at 300 hPa
|
T500 |
ARIESg3 |
K |
xy |
Air temperature at 500 hPa
|
T700 |
DynCore |
K |
xy |
Air temperature at 700 hPa
|
T850 |
ARIESg3 |
K |
xy |
Air temperature at 850 hPa
|
TAUA1 |
Solar |
1 |
xyz |
Aerosol optical thickness in 0.225-0.285 band
|
TAUA2 |
Solar |
1 |
xyz |
Aerosol optical thickness in 0.175-0.225 0.285-0.300 band
|
TAUA3 |
Solar |
1 |
xyz |
Aerosol optical thickness in 0.300-0.325 band
|
TAUA4 |
Solar |
1 |
xyz |
Aerosol optical thickness in 0.325-0.4 band
|
TAUA5 |
Solar |
1 |
xyz |
Aerosol optical thickness in 0.4-0.690 band
|
TAUA6 |
Solar |
1 |
xyz |
Aerosol optical thickness in 0.690-1.220 band
|
TAUA7 |
Solar |
1 |
xyz |
Aerosol optical thickness in 1.220-2.270 band
|
TAUA8 |
Solar |
1 |
xyz |
Aerosol optical thickness in 2.270-3.850 band
|
TAUBC |
Solar |
1 |
xyz |
Black carbon optical thickness in 0.4-0.690 band
|
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 |
Solar |
1 |
xyz |
Optical thickness for ice clouds
|
TAUCLR |
Solar |
1 |
xyz |
Optical thickness for falling rain
|
TAUCLS |
Solar |
1 |
xyz |
Optical thickness for falling snow
|
TAUCLW |
Solar |
1 |
xyz |
Optical thickness for liquid clouds
|
TAUDU |
Solar |
1 |
xyz |
Dust optical thickness in 0.4-0.690 band
|
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 |
Optical thickness of high clouds(EXPORT)
|
TAUIR |
Irrad |
W m-2 |
xyz |
Longwave cloud optical thickness at 800 cm-1
|
TAULO |
Solar |
1 |
xy |
Optical thickness of low clouds
|
TAUMD |
Solar |
1 |
xy |
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
|
TAUOC |
Solar |
1 |
xyz |
Organic carbon optical thickness in 0.4-0.690 band
|
TAUOROX |
Gwd |
N m-2 |
xy |
Surface eastward orographic gravity wave stress
|
TAUOROY |
Gwd |
N m-2 |
xy |
Surface northward orographic gravity wave stress
|
TAUSO |
Solar |
1 |
xyz |
Sulfate optical thickness in 0.4-0.690 band
|
TAUSS |
Solar |
1 |
xyz |
Salt optical thickness in 0.4-0.690 band
|
TAUTT |
Solar |
1 |
xy |
Optical thickness of all clouds
|
TAUXIBOT |
Ogcm |
N m-2 |
tile |
Eastward stress at base of ice
|
TAUXI |
Saltwater |
N m-2 |
tile |
Eastward stress over ice
|
TAUXO |
Saltwater |
N m-2 |
tile |
Eastward stress on ocean
|
TAUXW |
Saltwater |
N m-2 |
tile |
Eastward stress over water
|
TAUX |
Surface |
N m-2 |
xy |
Eastward surface stress
|
TAUYIBOT |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
TAUYI |
Saltwater |
N m-2 |
tile |
Northward stress over ice
|
TAUYO |
Saltwater |
N m-2 |
tile |
Northward stress on ocean
|
TAUYW |
Saltwater |
N m-2 |
tile |
Northward stress over water
|
TAUY |
Surface |
N m-2 |
xy |
Northward surface stress
|
TAVE |
ARIESg3 |
K |
xy |
Vertically averaged dry temperature
|
TA |
Surface |
K |
xy |
Surface air temperature
|
TBAR |
Saltwater |
K |
tile |
Mean temperature of interface layer
|
TBC |
Solar |
kg m-2 |
xy |
Total black carbon aerosol loading
|
TCLISCCP |
Satsim |
1 |
xy |
Isccp total cloud area fraction
|
TCZPBL |
Turbulence |
m |
xy |
Transcom planetary boundary layer height
|
TDEL |
Saltwater |
K |
tile |
Temperature at base of cool layer
|
TDROP |
Saltwater |
K |
tile |
Temperature drop across cool layer
|
TDUST |
Solar |
kg m-2 |
xy |
Total dust aerosol loading
|
TEANA |
ARIESg3 |
W m-2 |
xy |
Mountain work tendency due to analysis
|
TECDCOR |
ARIESg3 |
W m-2 |
xy |
Mountain work tendency due to cdcore
|
TEDYN |
ARIESg3 |
W m-2 |
xy |
Mountain work tendency due to dynamics
|
TELAND |
Catch |
J m-2 |
tile |
Total energy storage land
|
TEPHY |
ARIESg3 |
W m-2 |
xy |
Mountain work tendency due to physics
|
TEREMAP |
ARIESg3 |
W m-2 |
xy |
Mountain work tendency due to remap
|
TGSOILOBS |
DatmoDyn |
K |
xy |
Obs. Soil Temp.
|
TH |
DatmoDyn |
K |
xyz |
Potential 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
|
THOI |
Moist |
K |
xyz |
Potential temperature before ras
|
THRAS |
Moist |
K |
xyz |
Potential temperature after ras
|
THV |
ARIESg3 |
K/Pa**kappa |
xyz |
Scaled virtual potential temperature
|
THX0 |
Moist |
K |
xyz |
Potential temperature
|
TH |
Saltwater |
K |
tile |
Turbulence surface temperature
|
TIF |
Physics |
K s-1 |
xyz |
Tendency of air temperature due to friction
|
TILELATS |
Ogcm |
degrees |
tile |
Latitude
|
TILELONS |
Ogcm |
degrees |
tile |
Longitude
|
TIMFRIC |
Physics |
K s-1 |
xyz |
Tendency of air temperature due to moist processes friction
|
TIM |
Physics |
K s-1 |
xyz |
Tendency of air temperature due to moist processes
|
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
|
TOC |
Solar |
kg m-2 |
xy |
Total organic carbon aerosol loading
|
TOPDIS |
Turbulence |
K s-1 Pa |
xyz |
P-weighted frictional heating rate from orographic drag
|
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]
|
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]
|
TOTSCATFM |
GOCART |
1 |
xy |
Total Aerosol Scattering AOT [550 nm] - PM1.0
|
TOX |
Agcm |
kg m-2 |
xy |
Total column odd oxygen
|
TP1 |
Catch |
C |
tile |
Soil temperatures layer 1
|
TP2 |
Catch |
C |
tile |
Soil temperatures layer 2
|
TP3 |
Catch |
C |
tile |
Soil temperatures layer 3
|
TP4 |
Catch |
C |
tile |
Soil temperatures layer 4
|
TP5 |
Catch |
C |
tile |
Soil temperatures layer 5
|
TP6 |
Catch |
C |
tile |
Soil temperatures layer 6
|
TPERTI |
Moist |
K |
xy |
Temperature perturbation before ras
|
TPREC |
Moist |
kg m-2 s-1 |
xy |
Total precipitation
|
TPSAT |
Catch |
K |
tile |
Temperature saturated zone
|
TPSNOW |
Catch |
K |
tile |
Temperature top snow layer
|
TPSURF |
Catch |
K |
tile |
Ave catchment temp incl snw
|
TPUNST |
Catch |
K |
tile |
Temperature unsaturated zone
|
TPWLT |
Catch |
K |
tile |
Temperature wilted zone
|
TPW |
Moist |
kg m-2 |
xy |
Total precipitable water
|
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 |
Physics |
X |
xyz |
Analyzed quantities
|
TRBVAR |
Agcm |
m+2 |
xy |
Isotropic variance of TRB topography
|
TRIEDLV |
Moist |
0 or 1 |
xyz |
Tested for convection at this level
|
TRIM(myTracer) |
DynCore |
1 |
xyz |
TRIM(myTracer)
|
TRI |
Turbulence |
X kg m-2 s-1 |
xyz |
Diffusion tendencies
|
TROPP_BLENDED |
DatmoDyn |
Pa |
xy |
Tropopause pressure based on blended estimate
|
TROPP_EPV |
ARIESg3 |
Pa |
xy |
Tropopause pressure based on EPV estimate
|
TROPP_THERMAL |
ARIESg3 |
Pa |
xy |
Tropopause pressure based on thermal estimate
|
TROPQ |
ARIESg3 |
kg/kg |
xy |
Tropopause specific humidity using blended TROPP estimate
|
TROPT |
ARIESg3 |
K |
xy |
Tropopause temperature using blended TROPP estimate
|
TSAIROBS |
DatmoDyn |
K |
xy |
Obs. sfc(2m?) air temp.
|
TSALT |
Solar |
kg m-2 |
xy |
Total sea salt aerosol loading
|
TSKINOBS |
DatmoDyn |
K |
xy |
Obs skin temperature
|
TSKINWCICE |
Surface |
K |
xy |
CICE water skin temperature
|
TSKINW |
Surface |
K |
xy |
Open water skin temperature
|
TSLAND |
Catch |
kg m-2 |
tile |
Total snow storage land
|
TSO4 |
Solar |
kg m-2 |
xy |
Total sulfate aerosol loading
|
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
|
TSTAR |
Surface |
K |
xy |
Surface temperature scale
|
TST |
Saltwater |
K |
tile |
Surface skin temperature
|
TSX0 |
Moist |
K |
xy |
Surface temperature
|
TS_FOUND |
DataSea |
K |
xy |
Foundation temperature for interface layer
|
TS |
Physics |
kg m-2 s-1 |
xy |
Vertically integrated odd oxygen tendency due to physics
|
TTAUBC |
Solar |
1 |
xy |
Total black carbon optical thickness in 0.4-0.690 band
|
TTAUDU |
Solar |
1 |
xy |
Total dust optical thickness in 0.4-0.690 band
|
TTAUOC |
Solar |
1 |
xy |
Total organic carbon optical thickness in 0.4-0.690 band
|
TTAUSO |
Solar |
1 |
xy |
Total sulfate optical thickness in 0.4-0.690 band
|
TTAUSS |
Solar |
1 |
xy |
Total salt optical thickness in 0.4-0.690 band
|
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 |
Oceanbioge |
m-1 |
xy |
Water turbidity
|
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
|
TV |
DatmoDyn |
K |
xyz |
Air virtual temperature
|
TWLAND |
Catch |
kg m-2 |
tile |
Avail water storage land
|
TX |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
TY |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
T |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
U |
DatmoDyn |
m/s |
xyz |
Zonal wind
|
U10M |
Surface |
m s-1 |
xy |
10-meter eastward wind
|
U10N |
Surface |
m s-1 |
xy |
Equivalent neutral 10-meter eastward wind
|
U200 |
DynCore |
m s-1 |
xy |
Eastward wind at 200 hPa
|
U250 |
ARIESg3 |
m s-1 |
xy |
Eastward wind at 250 hPa
|
U2M |
Surface |
m s-1 |
xy |
2-meter eastward wind
|
U500 |
ARIESg3 |
m s-1 |
xy |
Eastward wind at 500 hPa
|
U50M |
Surface |
m s-1 |
xy |
50-meter eastward wind
|
U700 |
DynCore |
m s-1 |
xy |
Eastward wind at 700 hPa
|
U850 |
ARIESg3 |
m s-1 |
xy |
Eastward wind at 850 hPa
|
UAVE |
ARIESg3 |
m sec-1 |
xy |
Vertically averaged zonal wind
|
UA |
Surface |
m s-1 |
xy |
Surface eastward 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
|
UCOOL |
Saltwater |
m s-1 |
tile |
Ustarw at cool layer
|
UCPT |
ARIESg3 |
J m-1 s-1 |
xy |
Eastward flux of atmospheric enthalpy
|
UE |
DatmoDyn |
m s-1 |
xyz |
Diagnosed Edge Winds
|
UH |
Saltwater |
m s-1 |
tile |
Turbulence surface zonal velocity
|
UIT |
Physics |
m s-2 |
xyz |
Tendency of eastward wind due to turbulence
|
UI |
DataSeaIce |
m s-1 |
xy |
Zonal velocity of surface seaice
|
UKE |
ARIESg3 |
J m-1 s-1 |
xy |
Eastward flux of atmospheric kinetic energy
|
UPHI |
ARIESg3 |
J m-1 s-1 |
xy |
Eastward flux of atmospheric potential energy
|
UQI |
ARIESg3 |
kg m-1 s-1 |
xy |
Eastward flux of atmospheric ice
|
UQL |
ARIESg3 |
kg m-1 s-1 |
xy |
Eastward flux of atmospheric liquid water
|
UQV |
ARIESg3 |
kg m-1 s-1 |
xy |
Eastward flux of atmospheric water vapor
|
URAS |
Moist |
m s-1 |
xyz |
Eastward wind after ras
|
USTARI |
Surface |
m s-1 |
xy |
Ice ocean friction velocity
|
USTAR |
Surface |
m s-1 |
xy |
Surface velocity scale
|
US |
ARIESg3 |
m s-1 |
xy |
Surface eastward wind
|
UTOP |
DynCore |
m s-1 |
xy |
Eastward wind at model top
|
UU10MMAX |
Surface |
m s-1 |
xy |
Daily maximum near-surface wind speed
|
UU10M |
Surface |
m s-1 |
xy |
Near-surface wind speed
|
UW |
DataSea |
m s-1 |
xy |
Zonal velocity of surface water
|
UX0 |
Moist |
m s-1 |
xyz |
Eastward wind
|
U_CGRID |
ARIESg3 |
m s-1 |
xyz |
Eastward wind on C-Grid
|
U_DGRID |
ARIESg3 |
m s-1 |
xyz |
Eastward wind on native D-Grid
|
U |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
V10M |
Surface |
m s-1 |
xy |
10-meter northward wind
|
V10N |
Surface |
m s-1 |
xy |
Equivalent neutral 10-meter northward wind
|
V200 |
DynCore |
m s-1 |
xy |
Northward wind at 200 hPa
|
V250 |
ARIESg3 |
m s-1 |
xy |
Northward wind at 250 hPa
|
V2M |
Surface |
m s-1 |
xy |
2-meter northward wind
|
V500 |
ARIESg3 |
m s-1 |
xy |
Northward wind at 500 hPa
|
V50M |
Surface |
m s-1 |
xy |
50-meter northward wind
|
V700 |
DynCore |
m s-1 |
xy |
Northward wind at 700 hPa
|
V850 |
ARIESg3 |
m s-1 |
xy |
Northward wind at 850 hPa
|
VARFLT |
DatmoDyn |
K |
xy |
Obs skin temperature
|
VA |
Surface |
m s-1 |
xy |
Surface northward wind
|
VBAR |
Gwd |
m s-1 |
xy |
Northward component of mean level wind
|
VBASE |
Gwd |
m s-1 |
xy |
Northward component of base level wind
|
VCPT |
ARIESg3 |
J m-1 s-1 |
xy |
Northward flux of atmospheric enthalpy
|
VDQDTDYN |
DatmoDyn |
kg/kg/sec |
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 |
Saltwater |
m s-1 |
tile |
Surface ventilation 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 |
Saltwater |
m s-1 |
tile |
Turbulence surface meridional velocity
|
VIT |
Physics |
m s-2 |
xyz |
Tendency of northward wind due to turbulence
|
VI |
DataSeaIce |
m s-1 |
xy |
Meridional velocity of surface seaice
|
VKE |
ARIESg3 |
J m-1 s-1 |
xy |
Northward flux of atmospheric kinetic energy
|
VORT200 |
DynCore |
m s-1 |
xy |
Vorticity at 200 hPa
|
VORT700 |
DynCore |
m s-1 |
xy |
Vorticity at 700 hPa
|
VORT850 |
DynCore |
m s-1 |
xy |
Vorticity at 850 hPa
|
VORT |
DynCore |
s-1 |
xyz |
Vorticity
|
VPHI |
ARIESg3 |
J m-1 s-1 |
xy |
Northward flux of atmospheric potential energy
|
VQI |
ARIESg3 |
kg m-1 s-1 |
xy |
Northward flux of atmospheric ice
|
VQL |
ARIESg3 |
kg m-1 s-1 |
xy |
Northward flux of atmospheric liquid water
|
VQV |
ARIESg3 |
kg m-1 s-1 |
xy |
Northward flux of atmospheric water vapor
|
VRAS |
Moist |
m s-1 |
xyz |
Northward wind after ras
|
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
|
VS |
ARIESg3 |
m s-1 |
xy |
Surface northward wind
|
VTOP |
DynCore |
m s-1 |
xy |
Northward wind at model top
|
VW |
DataSea |
m s-1 |
xy |
Meridional velocity of surface water
|
VX0 |
Moist |
m s-1 |
xyz |
Northward wind
|
V_CGRID |
ARIESg3 |
m s-1 |
xyz |
Northward wind on C-Grid
|
V_DGRID |
ARIESg3 |
m s-1 |
xyz |
Northward wind on native D-Grid
|
V |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
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 |
Catch |
kg m-2 |
tile |
Soil moisture in Upper 10cm
|
WATERFLUX |
Surface |
kg m-2 s-1 |
xy |
FRESHWATER flux bw saltwater ocean
|
WATSOI |
Catch |
kg m-2 |
tile |
Totoal soil moisture
|
WCPR |
Catch |
m3 m-3 |
tile |
Water ave prof
|
WCRZ |
Catch |
m3 m-3 |
tile |
Water root zone
|
WCSF |
Catch |
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
|
WESNN1 |
Surface |
kg m-2 |
xy |
Snow mass layer 1
|
WESNN2 |
Surface |
kg m-2 |
xy |
Snow mass layer 2
|
WESNN3 |
Surface |
kg m-2 |
xy |
Snow mass layer 3
|
WET1 |
Catch |
1 |
tile |
Surface soil wetness
|
WET2 |
Catch |
1 |
tile |
Root zone soil wetness
|
WET3 |
Catch |
1 |
tile |
Ave prof soil moisture
|
WRKT |
ARIESg3 |
W m-2 |
xy |
Work done by atmosphere at top
|
WTOT |
DatmoDyn |
m s-1 |
xyz |
Total vertical velocity
|
WWTG |
DatmoDyn |
m s-1 |
xyz |
Weak T-gradient compensating W
|
W |
DynCore |
m sec-1 |
xyz |
Vertical velocity
|
Z0H |
Saltwater |
m |
tile |
Surface roughness for heat
|
Z0 |
Saltwater |
m |
tile |
Surface roughness
|
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
|
ZCLDTOP |
Turbulence |
m |
xy |
Pbltop cloud top height LOCK
|
ZCLD |
Turbulence |
m |
xy |
Pbltop cloud depth LOCK
|
ZLCL |
Moist |
m |
xy |
Lifting condensation level
|
ZLE |
DatmoDyn |
m |
xyz |
Geop. height at the edges
|
ZLFC |
Moist |
m |
xy |
Level of free convection
|
ZL |
ARIESg3 |
m |
xyz |
Mid layer heights
|
ZPBLCN |
Moist |
m |
xy |
Boundary layer depth
|
ZRADBS |
Turbulence |
m |
xy |
Hght of base for rad/brv plume LOCK
|
ZRADML |
Turbulence |
m |
xy |
Depth for rad/brv plume LOCK
|
ZSML |
Turbulence |
m |
xy |
Pbltop height for sfc plume LOCK
|
Z |
Ogcm |
N m-2 |
tile |
Northward stress at base of ice
|
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^2/cm^3 |
xyz |
Surface area densities
|
gmiTAREA |
GMIchem |
cm^2/cm^3 |
xyz |
Surface area aerosol dust
|
jNO2val |
GMIchem |
s^-1 |
xy |
Photolysis rate constants for NO
|
surfEmissForChem |
GMIchem |
kg m-2 s-1 |
xy |
Surface emission for chemistry
|
trim(self%Instrument(i)) |
Orb |
days |
xy |
|