Les variables sorties dans le fichier histday.nc a l'aide du flag lev_histday = 1 , 2 , 3 , 4 ou 5

lev_histday=1

phis(lat, lon) "Surfacegeop.height" m2/s2
aire(lat, lon) "Gridarea" -
contfracATM(lat, lon) "%sfceter+lic" -
contfracOR(lat, lon) "%sfceterreOR" -
tsol(time_counter, lat, lon) "SurfaceTemperature" K
tsolreal(time_counter, lat, lon) "SurfaceTemperaturewithoutlim." K
t2m(time_counter, lat, lon) "Temperature2m" K
t2m_min(time_counter, lat, lon) "Temp.2mmin." K
t2m_max(time_counter, lat, lon) "Temp.2mmax." K
plul(time_counter, lat, lon) "Large-scalePrecip." kg/(s*m2)
pluc(time_counter, lat, lon) "ConvectivePrecip." kg/(s*m2)
snowl(time_counter, lat, lon) "SolidLarge-scalePrecip." kg/(m2*s)
flat(time_counter, lat, lon) "Latentheatflux" W/m2
sicf(time_counter, lat, lon) "Sea-icefraction" -
q2m(time_counter, lat, lon) "Specifichumidity" kg/kg
u10m(time_counter, lat, lon) "Ventzonal10m" m/s
v10m(time_counter, lat, lon) "Ventmeridien10m" m/s
wind10m(time_counter, lat, lon) "10-mwindspeed" m/s
wind10max(time_counter, lat, lon) "10-mwindspeedmax." m/s
psol(time_counter, lat, lon) "SurfacePressure" Pa
precip(time_counter, lat, lon) "PrecipitationTotaleliq+sol" kg/(s*m2)
snowf(time_counter, lat, lon) "Snowfall" kg/(m2*s)
evap(time_counter, lat, lon) "Evaporation" kg/(m2*s)
tops(time_counter, lat, lon) "Solarrad.atTOA" W/m2
topl(time_counter, lat, lon) "IRrad.atTOA" W/m2
sols(time_counter, lat, lon) "NetSolarrad.atsurf." W/m2
soll(time_counter, lat, lon) "NetIRrad.atsurface" W/m2
radsol(time_counter, lat, lon) "Rayonnementausol" W/m2
cldl(time_counter, lat, lon) "Low-levelcloudiness" -
cldm(time_counter, lat, lon) "Mid-levelcloudiness" -
cldh(time_counter, lat, lon) "High-levelcloudiness" -
cldt(time_counter, lat, lon) "Totalcloudiness" -
cldq(time_counter, lat, lon) "Cloudliquidwaterpath" kg/m2
prw(time_counter, lat, lon) "Precipitablewater" kg/m2
u850(time_counter, lat, lon) "Zonalwind850mb" m/s
v850(time_counter, lat, lon) "Meridionalwind850mb" m/s
u700(time_counter, lat, lon) "Zonalwind700mb" m/s
v700(time_counter, lat, lon) "Meridionalwind700mb" m/s
u500(time_counter, lat, lon) "Zonalwind500mb" m/s
v500(time_counter, lat, lon) "Meridionalwind500mb" m/s
w500(time_counter, lat, lon) "Verticalwind500mb" m/s
phi500(time_counter, lat, lon) "Geopotential500mb" m
u200(time_counter, lat, lon) "Zonalwind200mb" m/s
v200(time_counter, lat, lon) "Meridionalwind200mb" m/s
slp(time_counter, lat, lon) "SeaLevelPressure" Pa
cape_max(time_counter, lat, lon) "CAPEmax." J/kg
solldown(time_counter, lat, lon) "Down.IRrad.atsurface" W/m2
sens(time_counter, lat, lon) "Sensibleheatflux" W/m2
SWdnSFC(time_counter, lat, lon) "SWdnatsurface" W/m2
lmt_bils(time_counter, lat, lon) "Bilanausolatmosphereforcee" W/m2
fluxo(time_counter, lat, lon) "Fluxturbulentsocean-atmosphere" W/m2
fluxg(time_counter, lat, lon) "Fluxocean-glacedemer" W/m2

<-- debut description fichier histday.nc

lev_histday=2 : variables lev_histday=1 +


bils(time_counter, lat, lon) "Surf.totalheatflux" W/m2
fder(time_counter, lat, lon) "Heatfluxderivation" W/m2/K

<-- debut description fichier histday.nc

lev_histday=3 : variables lev_histday=2 +


temp(time_counter, presnivs, lat, lon) "Airtemperature" K
ovap(time_counter, presnivs, lat, lon) "Specifichumidity" kg/kg
geop(time_counter, presnivs, lat, lon) "Geopotentialheight" m2/s2
vitu(time_counter, presnivs, lat, lon) "Zonalwind" m/s
vitv(time_counter, presnivs, lat, lon) "Meridionalwind" m/s
vitw(time_counter, presnivs, lat, lon) "Verticalwind" m/s
pres(time_counter, presnivs, lat, lon) "Airpressure" Pa

<-- debut description fichier histday.nc

lev_histday=4 : variables lev_histday=3 +


SWupTOA(time_counter, lat, lon) "SWupatTOA" W/m2
SWupSFC(time_counter, lat, lon) "SWupatsurface" W/m2
SWdnTOA(time_counter, lat, lon) "SWdnatTOA" W/m2
SWupTOAclr(time_counter, lat, lon) "SWupclearskyatTOA" W/m2
SWupSFCclr(time_counter, lat, lon) "SWupclearskyatsurface" W/m2
SWdnTOAclr(time_counter, lat, lon) "SWdnclearskyatTOA" W/m2
SWdnSFCclr(time_counter, lat, lon) "SWdnclearskyatsurface" W/m2
LWdnSFC(time_counter, lat, lon) "LWdownatsurface" W/m2
LWupSFC(time_counter, lat, lon) "LWdownatsurface" W/m2
ptop(time_counter, lat, lon) "Cldtoppressure(cfISCCPsimulator)" Pa
tter(time_counter, lat, lon) "SurfaceTemperatureter" K
tlic(time_counter, lat, lon) "SurfaceTemperaturelic" K
toce(time_counter, lat, lon) "SurfaceTemperatureoce" K
tsic(time_counter, lat, lon) "SurfaceTemperaturesic" K
t2mter(time_counter, lat, lon) "Temp.tere2m" K
t2mlic(time_counter, lat, lon) "Temp.lic2m" K
t2moce(time_counter, lat, lon) "Temp.oce2m" K
t2msic(time_counter, lat, lon) "Temp.sic2m" K
t2mter_min(time_counter, lat, lon) "Temp.terre2mmin." K
t2mter_max(time_counter, lat, lon) "Temp.terre2mmax." K
u10mter(time_counter, lat, lon) "Ventzonalter10m" m/s
u10mlic(time_counter, lat, lon) "Ventzonallic10m" m/s
u10moce(time_counter, lat, lon) "Ventzonaloce10m" m/s
u10msic(time_counter, lat, lon) "Ventzonalsic10m" m/s
v10mter(time_counter, lat, lon) "Ventmeridienter10m" m/s
v10mlic(time_counter, lat, lon) "Ventmeridienlic10m" m/s
v10moce(time_counter, lat, lon) "Ventmeridienoce10m" m/s
v10msic(time_counter, lat, lon) "Ventmeridiensic10m" m/s
pourc_ter(time_counter, lat, lon) "%ter" %
fract_ter(time_counter, lat, lon) "Fractionter" 1
tsol_ter(time_counter, lat, lon) "Temperatureter" K
tsolreal_ter(time_counter, lat, lon) "TemperaturewithoutRTTlim.ter" K
sens_ter(time_counter, lat, lon) "Sensibleheatfluxter" W/m2
lat_ter(time_counter, lat, lon) "Latentheatfluxter" W/m2
taux_ter(time_counter, lat, lon) "Zonalwindstresster" Pa
tauy_ter(time_counter, lat, lon) "Meridionalwindstresster" Pa
albe_ter(time_counter, lat, lon) "Albedosurf.ter" -
rugs_ter(time_counter, lat, lon) "Rugositeter" m
pourc_lic(time_counter, lat, lon) "%lic" %
fract_lic(time_counter, lat, lon) "Fractionlic" 1
tsol_lic(time_counter, lat, lon) "Temperaturelic" K
tsolreal_lic(time_counter, lat, lon) "TemperaturewithoutRTTlim.lic" K
sens_lic(time_counter, lat, lon) "Sensibleheatfluxlic" W/m2
lat_lic(time_counter, lat, lon) "Latentheatfluxlic" W/m2
taux_lic(time_counter, lat, lon) "Zonalwindstresslic" Pa
tauy_lic(time_counter, lat, lon) "Meridionalwindstresslic" Pa
albe_lic(time_counter, lat, lon) "Albedosurf.lic" -
rugs_lic(time_counter, lat, lon) "Rugositelic" m
pourc_oce(time_counter, lat, lon) "%oce" %
fract_oce(time_counter, lat, lon) "Fractionoce" 1
tsol_oce(time_counter, lat, lon) "Temperatureoce" K
tsolreal_oce(time_counter, lat, lon) "TemperaturewithoutRTTlim.oce" K
sens_oce(time_counter, lat, lon) "Sensibleheatfluxoce" W/m2
lat_oce(time_counter, lat, lon) "Latentheatfluxoce" W/m2
taux_oce(time_counter, lat, lon) "Zonalwindstressoce" Pa
tauy_oce(time_counter, lat, lon) "Meridionalwindstressoce" Pa
albe_oce(time_counter, lat, lon) "Albedosurf.oce" -
rugs_oce(time_counter, lat, lon) "Rugositeoce" m
pourc_sic(time_counter, lat, lon) "%sic" %
fract_sic(time_counter, lat, lon) "Fractionsic" 1
tsol_sic(time_counter, lat, lon) "Temperaturesic" K
tsolreal_sic(time_counter, lat, lon) "TemperaturewithoutRTTlim.sic" K
sens_sic(time_counter, lat, lon) "Sensibleheatfluxsic" W/m2
lat_sic(time_counter, lat, lon) "Latentheatfluxsic" W/m2
taux_sic(time_counter, lat, lon) "Zonalwindstresssic" Pa
tauy_sic(time_counter, lat, lon) "Meridionalwindstresssic" Pa
albe_sic(time_counter, lat, lon) "Albedosurf.sic" -
rugs_sic(time_counter, lat, lon) "Rugositesic" m

<-- debut description fichier histday.nc

lev_histday=5 : variables lev_histday=4 +


tops0(time_counter, lat, lon) "CSSolarrad.atTOA" W/m2
topl0(time_counter, lat, lon) "CSIRrad.atTOA" W/m2
sols0(time_counter, lat, lon) "CSNetSolarrad.atsurf." W/m2
soll0(time_counter, lat, lon) "CSNetIRrad.atsurface" W/m2
rneb(time_counter, presnivs, lat, lon) "Cloudfraction" -
rnebcon(time_counter, presnivs, lat, lon) "ConvectiveCloudFraction" -
lwcon(time_counter, presnivs, lat, lon) "Cloudliquidwatercontent" kg/kg
iwcon(time_counter, presnivs, lat, lon) "Cloudicewatercontent" kg/kg
lwp(time_counter, lat, lon) "Cloudwaterpath" kg/m2
iwp(time_counter, lat, lon) "Cloudicewaterpath" kg/m2
meantaucld(time_counter, lat, lon) "ISCCPmeancloudopticalthickness" 1
cldtau(time_counter, presnivs, lat, lon) "Cloudopticalthickness" 1
cldemi(time_counter, presnivs, lat, lon) "Cloudopticalemissivity" 1
dtcon(time_counter, presnivs, lat, lon) "ConvectiondT" K/s
dqcon(time_counter, presnivs, lat, lon) "ConvectiondQ" (kg/kg)/s
rh2m(time_counter, lat, lon) "Relativehumidityat2m" %
qsat2m(time_counter, lat, lon) "Saturanthumidityat2m" %
tpot(time_counter, lat, lon) "Surfaceairpotentialtemperature" K
tpote(time_counter, lat, lon) "Surfaceairequivalentpotentialtemperature" K

<-- debut description fichier histday.nc