Skip to content
Snippets Groups Projects
Commit 78e929e7 authored by Aiko Voigt's avatar Aiko Voigt
Browse files

Add directories for i) cmorizing of TRACMIP data, ii) analysis of introduction...

Add directories for i) cmorizing of TRACMIP data, ii) analysis of introduction paper done with data on UMiama Ramadda server, iii) simulation protocol
parent aa395848
No related branches found
No related tags found
No related merge requests found
Showing
with 1422 additions and 0 deletions
#!/bin/bash
# set variables
expin=itczmip008
expout=Land4xCO2
model=echam6-1
year1=0133
year2=0135
level='100000,92500,85000,70000,60000,50000,40000,30000,25000,20000,15000,10000,7000,5000,3000,2000,1000'
# merge BOT and ATM daily files
cdo -O mergetime BOT_3hr_${expin}_013[345] BOT_3hr_${expin}_${year1}_${year2}
cdo -O mergetime ATM_3hr_${expin}_013[345] ATM_3hr_${expin}_${year1}_${year2}
############## 2d data #####################################
# tas
cdo -r -f nc -t echam6 -setname,tas -selvar,temp2 BOT_3hr_${expin}_${year1}_${year2} \
tas_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tas,o,c,air_temperature tas_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# ts
cdo -r -f nc -t echam6 -setname,ts -selvar,tsurf BOT_3hr_${expin}_${year1}_${year2} \
ts_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,ts,o,c,surface_temperature ts_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# tasmin
cdo -r -f nc -t echam6 -setname,tasmin -selvar,t2min BOT_3hr_${expin}_${year1}_${year2} \
tasmin_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tasmin,o,c,air_temperature tasmin_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# tasmax
cdo -r -f nc -t echam6 -setname,tasmax -selvar,t2max BOT_3hr_${expin}_${year1}_${year2} \
tasmax_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tasmax,o,c,air_temperature tasmax_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# psl
cdo -r -f nc -t echam6 -setname,psl -selvar,slp BOT_3hr_${expin}_${year1}_${year2} \
psl_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,psl,o,c,air_pressure_at_sea_level psl_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# ps
cdo -r -f nc -t echam6 -setname,ps -selvar,aps BOT_3hr_${expin}_${year1}_${year2} \
ps_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,ps,o,c,surface_air_pressure ps_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# uas
cdo -r -f nc -t echam6 -setname,uas -selvar,u10 BOT_3hr_${expin}_${year1}_${year2} \
uas_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,uas,o,c,eastward_wind uas_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# vas
cdo -r -f nc -t echam6 -setname,vas -selvar,v10 BOT_3hr_${expin}_${year1}_${year2} \
vas_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,vas,o,c,northward_wind vas_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# sfcWind
cdo -r -f nc -t echam6 -setname,sfcWind -selvar,wind10 BOT_3hr_${expin}_${year1}_${year2} \
sfcWind_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,sfcWind,o,c,wind_speed sfcWind_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# pr
cdo -r -f nc -t echam6 -setname,pr -selvar,precip BOT_3hr_${expin}_${year1}_${year2} \
pr_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,pr,o,c,precipitation_flux pr_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# prsn
cdo -r -f nc -t echam6 -setname,prsn -selvar,aprs BOT_3hr_${expin}_${year1}_${year2} \
prsn_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,prsn,o,c,snowfall_flux prsn_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# prc
cdo -r -f nc -t echam6 -setname,prc -selvar,aprc BOT_3hr_${expin}_${year1}_${year2} \
prc_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,prc,o,c,convective_precipitation_flux prc_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# evspsbl
cdo -r -f nc -t echam6 -mulc,-1 -setname,evspsbl -selvar,evap BOT_3hr_${expin}_${year1}_${year2} \
evspsbl_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,evspsbl,o,c,water_evaporation_flux evspsbl_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# tauu
cdo -r -f nc -t echam6 -setname,tauu -selvar,ustr BOT_3hr_${expin}_${year1}_${year2} \
tauu_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tauu,o,c,surface_downward_eastward_stress tauu_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# tauv
cdo -r -f nc -t echam6 -setname,tauv -selvar,vstr BOT_3hr_${expin}_${year1}_${year2} \
tauv_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tauv,o,c,surface_downward_northward_stress tauv_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# hfls
cdo -r -f nc -t echam6 -mulc,-1 -setname,hfls -selvar,ahfl BOT_3hr_${expin}_${year1}_${year2} \
hfls_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,hfls,o,c,surface_upward_latent_heat_flux hfls_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# hfss
cdo -r -f nc -t echam6 -mulc,-1 -setname,hfss -selvar,ahfs BOT_3hr_${expin}_${year1}_${year2} \
hfss_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,hfss,o,c,surface_upward_sensible_heat_flux hfss_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rlds
cdo -r -f nc -t echam6 -setname,rlds -sub -selvar,trads BOT_3hr_${expin}_${year1}_${year2} \
-selvar,tradsu BOT_3hr_${expin}_${year1}_${year2} rlds_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rlds,o,c,surface_downwelling_longwave_flux_in_air rlds_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rlus
cdo -r -f nc -t echam6 -mulc,-1 -setname,rlus -selvar,tradsu BOT_3hr_${expin}_${year1}_${year2} \
rlus_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rlus,o,c,surface_upwelling_longwave_flux_in_air rlus_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rsds
cdo -r -f nc -t echam6 -setname,rsds -sub -selvar,srads BOT_3hr_${expin}_${year1}_${year2} \
-selvar,sradsu BOT_3hr_${expin}_${year1}_${year2} rsds_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsds,o,c,surface_downwelling_shortwave_flux_in_air rsds_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rsus
cdo -r -f nc -t echam6 -mulc,-1 -setname,rsus -selvar,sradsu BOT_3hr_${expin}_${year1}_${year2} \
rsus_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsus,o,c,surface_upwelling_shortwave_flux_in_air rsus_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
########### clear-sky sw surface fluxes (start)
#need to calcule effective sfc albedo first
rm -f sfcalbedo
cdo div rsus_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc \
rsds_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc \
sfcalbedo
#rsdscs
cdo -r -f nc -t echam6 -setmisstoc,0 -setname,rsdscs -div -selvar,srafs BOT_3hr_${expin}_${year1}_${year2} \
-addc,1 -mulc,-1 sfcalbedo rsdscs_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsdscs,o,c,surface_downwelling_shortwave_flux_in_air_assuming_clear_sky rsdscs_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rsuscs
cdo -r -f nc -t echam6 -mulc,-1 -setname,rsuscs -sub -selvar,srafs BOT_3hr_${expin}_${year1}_${year2} \
rsdscs_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc \
rsuscs_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsuscs,o,c,surface_upwelling_shortwave_flux_in_air_assuming_clear_sky rsuscs_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
rm -f sfcalbedo
########### clear-sky sw surface fluxes (end)
#rldscs
cdo -r -f nc -t echam6 -setname,rldscs -sub -selvar,trafs BOT_3hr_${expin}_${year1}_${year2} \
-selvar,tradsu BOT_3hr_${expin}_${year1}_${year2} rldscs_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rldscs,o,c,surface_downwelling_longwave_flux_in_air_assuming_clear_sky rldscs_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rsdt
cdo -r -f nc -t echam6 -setname,rsdt -selvar,srad0d BOT_3hr_${expin}_${year1}_${year2} \
rsdt_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsdt,o,c,toa_incoming_shortwave_flux rsdt_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rsut
cdo -r -f nc -t echam6 -mulc,-1 -setname,rsut -selvar,srad0u BOT_3hr_${expin}_${year1}_${year2} \
rsut_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsut,o,c,toa_outgoing_shortwave_flux rsut_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rlut
cdo -r -f nc -t echam6 -mulc,-1 -setname,rlut -selvar,trad0 BOT_3hr_${expin}_${year1}_${year2} \
rlut_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rlut,o,c,toa_outgoing_longwave_flux rlut_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rlutcs
cdo -r -f nc -t echam6 -mulc,-1 -setname,rlutcs -selvar,traf0 BOT_3hr_${expin}_${year1}_${year2} \
rlutcs_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rlutcs,o,c,toa_outgoing_longwave_flux_assuming_clear_sky rlutcs_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rsutcs
cdo -r -f nc -t echam6 -mulc,-1 -setname,rsutcs -sub -selvar,sraf0 BOT_3hr_${expin}_${year1}_${year2} \
-selvar,srad0d BOT_3hr_${expin}_${year1}_${year2} rsutcs_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsutcs,o,c,toa_outgoing_shortwave_flux_assuming_clear_sky rsutcs_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# prw
cdo -r -f nc -t echam6 -setname,prw -selvar,qvi BOT_3hr_${expin}_${year1}_${year2} \
prw_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,prw,o,c,atmosphere_water_vapor_content prw_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# clt
cdo -r -f nc -t echam6 -mulc,100 -setname,clt -selvar,aclcov BOT_3hr_${expin}_${year1}_${year2} \
clt_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,clt,o,c,cloud_area_fraction clt_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# clwvi
cdo -r -f nc -t echam6 -setname,clwvi -selvar,xlvi BOT_3hr_${expin}_${year1}_${year2} \
clwvi_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,clwvi,o,c,atmosphere_cloud_condensed_water_content clwvi_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# clivi
cdo -r -f nc -t echam6 -setname,clivi -selvar,xivi BOT_3hr_${expin}_${year1}_${year2} \
clivi_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,clivi,o,c,atmosphere_cloud_ice_content clivi_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
############## 3d data #####################################
# cl
cdo -r -f nc -t echam6 -mulc,100 -setname,cl -selvar,aclcac -sellevel,${level} ATM_3hr_${expin}_${year1}_${year2} \
cl_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,cl,o,c,cloud_area_fraction_in_atmosphere_layer cl_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev cl_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# clw
cdo -r -f nc -t echam6 -mulc,100 -setname,clw -selvar,xl -sellevel,${level} ATM_3hr_${expin}_${year1}_${year2} \
clw_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,clw,o,c,mass_fraction_of_cloud_liquid_water_in_air clw_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev clw_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# cli
cdo -r -f nc -t echam6 -mulc,100 -setname,cli -selvar,xi -sellevel,${level} ATM_3hr_${expin}_${year1}_${year2} \
cli_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,cli,o,c,mass_fraction_of_cloud_ice_in_air cli_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev cli_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# ta
cdo -r -f nc -t echam6 -setname,ta -selvar,t -sellevel,${level} ATM_3hr_${expin}_${year1}_${year2} \
ta_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,ta,o,c,air_temperature ta_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev ta_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# ua
cdo -r -f nc -t echam6 -setname,ua -selvar,u -sellevel,${level} ATM_3hr_${expin}_${year1}_${year2} \
ua_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,ua,o,c,eastward_wind ua_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev ua_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# va
cdo -r -f nc -t echam6 -setname,va -selvar,v -sellevel,${level} ATM_3hr_${expin}_${year1}_${year2} \
va_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,va,o,c,northward_wind va_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev va_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# hus
cdo -r -f nc -t echam6 -setname,hus -selvar,q -sellevel,${level} ATM_3hr_${expin}_${year1}_${year2} \
hus_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,hus,o,c,specific_humidity hus_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev hus_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# hur
cdo -r -f nc -t echam6 -mulc,100 -setname,hur -selvar,rhumidity -sellevel,${level} ATM_3hr_${expin}_${year1}_${year2} \
hur_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,hur,o,c,relative_humidity hur_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev hur_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# wap
cdo -r -f nc -t echam6 -setname,wap -selvar,omega -sellevel,${level} ATM_3hr_${expin}_${year1}_${year2} \
wap_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,wap,o,c,lagrangian_tendency_or_air_pressure wap_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev wap_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# zg
cdo -r -f nc -t echam6 -setname,zg -selvar,geopoth -sellevel,${level} ATM_3hr_${expin}_${year1}_${year2} \
zg_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,zg,o,c,geopotential_height zg_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev zg_A3hr_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#!/bin/bash
# set variables
expin=itczmip008
expout=Land4xCO2
model=echam6-1
year1=0126
year2=0135
level='100000,92500,85000,70000,60000,50000,40000,30000,25000,20000,15000,10000,7000,5000,3000,2000,1000'
# merge BOT and ATM daily files
cdo -O mergetime BOT_dm_${expin}_012[6789] BOT_dm_${expin}_013[012345] BOT_dm_${expin}_${year1}_${year2}
cdo -O mergetime ATM_dm_${expin}_012[6789] ATM_dm_${expin}_013[012345] ATM_dm_${expin}_${year1}_${year2}
############## 2d data #####################################
# tas
cdo -r -f nc -t echam6 -setname,tas -selvar,temp2 BOT_dm_${expin}_${year1}_${year2} \
tas_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tas,o,c,air_temperature tas_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# ts
cdo -r -f nc -t echam6 -setname,ts -selvar,tsurf BOT_dm_${expin}_${year1}_${year2} \
ts_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,ts,o,c,surface_temperature ts_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# tasmin
cdo -r -f nc -t echam6 -setname,tasmin -selvar,t2min BOT_dm_${expin}_${year1}_${year2} \
tasmin_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tasmin,o,c,air_temperature tasmin_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# tasmax
cdo -r -f nc -t echam6 -setname,tasmax -selvar,t2max BOT_dm_${expin}_${year1}_${year2} \
tasmax_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tasmax,o,c,air_temperature tasmax_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# psl
cdo -r -f nc -t echam6 -setname,psl -selvar,slp BOT_dm_${expin}_${year1}_${year2} \
psl_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,psl,o,c,air_pressure_at_sea_level psl_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# ps
cdo -r -f nc -t echam6 -setname,ps -selvar,aps BOT_dm_${expin}_${year1}_${year2} \
ps_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,ps,o,c,surface_air_pressure ps_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# uas
cdo -r -f nc -t echam6 -setname,uas -selvar,u10 BOT_dm_${expin}_${year1}_${year2} \
uas_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,uas,o,c,eastward_wind uas_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# vas
cdo -r -f nc -t echam6 -setname,vas -selvar,v10 BOT_dm_${expin}_${year1}_${year2} \
vas_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,vas,o,c,northward_wind vas_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# sfcWind
cdo -r -f nc -t echam6 -setname,sfcWind -selvar,wind10 BOT_dm_${expin}_${year1}_${year2} \
sfcWind_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,sfcWind,o,c,wind_speed sfcWind_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# pr
cdo -r -f nc -t echam6 -setname,pr -selvar,precip BOT_dm_${expin}_${year1}_${year2} \
pr_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,pr,o,c,precipitation_flux pr_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# prsn
cdo -r -f nc -t echam6 -setname,prsn -selvar,aprs BOT_dm_${expin}_${year1}_${year2} \
prsn_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,prsn,o,c,snowfall_flux prsn_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# prc
cdo -r -f nc -t echam6 -setname,prc -selvar,aprc BOT_dm_${expin}_${year1}_${year2} \
prc_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,prc,o,c,convective_precipitation_flux prc_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# evspsbl
cdo -r -f nc -t echam6 -mulc,-1 -setname,evspsbl -selvar,evap BOT_dm_${expin}_${year1}_${year2} \
evspsbl_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,evspsbl,o,c,water_evaporation_flux evspsbl_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# tauu
cdo -r -f nc -t echam6 -setname,tauu -selvar,ustr BOT_dm_${expin}_${year1}_${year2} \
tauu_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tauu,o,c,surface_downward_eastward_stress tauu_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# tauv
cdo -r -f nc -t echam6 -setname,tauv -selvar,vstr BOT_dm_${expin}_${year1}_${year2} \
tauv_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tauv,o,c,surface_downward_northward_stress tauv_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# hfls
cdo -r -f nc -t echam6 -mulc,-1 -setname,hfls -selvar,ahfl BOT_dm_${expin}_${year1}_${year2} \
hfls_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,hfls,o,c,surface_upward_latent_heat_flux hfls_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# hfss
cdo -r -f nc -t echam6 -mulc,-1 -setname,hfss -selvar,ahfs BOT_dm_${expin}_${year1}_${year2} \
hfss_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,hfss,o,c,surface_upward_sensible_heat_flux hfss_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rlds
cdo -r -f nc -t echam6 -setname,rlds -sub -selvar,trads BOT_dm_${expin}_${year1}_${year2} \
-selvar,tradsu BOT_dm_${expin}_${year1}_${year2} rlds_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rlds,o,c,surface_downwelling_longwave_flux_in_air rlds_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rlus
cdo -r -f nc -t echam6 -mulc,-1 -setname,rlus -selvar,tradsu BOT_dm_${expin}_${year1}_${year2} \
rlus_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rlus,o,c,surface_upwelling_longwave_flux_in_air rlus_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rsds
cdo -r -f nc -t echam6 -setname,rsds -sub -selvar,srads BOT_dm_${expin}_${year1}_${year2} \
-selvar,sradsu BOT_dm_${expin}_${year1}_${year2} rsds_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsds,o,c,surface_downwelling_shortwave_flux_in_air rsds_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rsus
cdo -r -f nc -t echam6 -mulc,-1 -setname,rsus -selvar,sradsu BOT_dm_${expin}_${year1}_${year2} \
rsus_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsus,o,c,surface_upwelling_shortwave_flux_in_air rsus_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
########### clear-sky sw surface fluxes (start)
#need to calcule effective sfc albedo first
rm -f sfcalbedo
cdo div rsus_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc \
rsds_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc \
sfcalbedo
#rsdscs
cdo -r -f nc -t echam6 -setmisstoc,0 -setname,rsdscs -div -selvar,srafs BOT_dm_${expin}_${year1}_${year2} \
-addc,1 -mulc,-1 sfcalbedo rsdscs_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsdscs,o,c,surface_downwelling_shortwave_flux_in_air_assuming_clear_sky rsdscs_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rsuscs
cdo -r -f nc -t echam6 -mulc,-1 -setname,rsuscs -sub -selvar,srafs BOT_dm_${expin}_${year1}_${year2} \
rsdscs_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc \
rsuscs_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsuscs,o,c,surface_upwelling_shortwave_flux_in_air_assuming_clear_sky rsuscs_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
rm -f sfcalbedo
########### clear-sky sw surface fluxes (end)
#rldscs
cdo -r -f nc -t echam6 -setname,rldscs -sub -selvar,trafs BOT_dm_${expin}_${year1}_${year2} \
-selvar,tradsu BOT_dm_${expin}_${year1}_${year2} rldscs_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rldscs,o,c,surface_downwelling_longwave_flux_in_air_assuming_clear_sky rldscs_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rsdt
cdo -r -f nc -t echam6 -setname,rsdt -selvar,srad0d BOT_dm_${expin}_${year1}_${year2} \
rsdt_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsdt,o,c,toa_incoming_shortwave_flux rsdt_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rsut
cdo -r -f nc -t echam6 -mulc,-1 -setname,rsut -selvar,srad0u BOT_dm_${expin}_${year1}_${year2} \
rsut_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsut,o,c,toa_outgoing_shortwave_flux rsut_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rlut
cdo -r -f nc -t echam6 -mulc,-1 -setname,rlut -selvar,trad0 BOT_dm_${expin}_${year1}_${year2} \
rlut_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rlut,o,c,toa_outgoing_longwave_flux rlut_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rlutcs
cdo -r -f nc -t echam6 -mulc,-1 -setname,rlutcs -selvar,traf0 BOT_dm_${expin}_${year1}_${year2} \
rlutcs_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rlutcs,o,c,toa_outgoing_longwave_flux_assuming_clear_sky rlutcs_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rsutcs
cdo -r -f nc -t echam6 -mulc,-1 -setname,rsutcs -sub -selvar,sraf0 BOT_dm_${expin}_${year1}_${year2} \
-selvar,srad0d BOT_dm_${expin}_${year1}_${year2} rsutcs_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsutcs,o,c,toa_outgoing_shortwave_flux_assuming_clear_sky rsutcs_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# prw
cdo -r -f nc -t echam6 -setname,prw -selvar,qvi BOT_dm_${expin}_${year1}_${year2} \
prw_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,prw,o,c,atmosphere_water_vapor_content prw_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# clt
cdo -r -f nc -t echam6 -mulc,100 -setname,clt -selvar,aclcov BOT_dm_${expin}_${year1}_${year2} \
clt_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,clt,o,c,cloud_area_fraction clt_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# clwvi
cdo -r -f nc -t echam6 -setname,clwvi -selvar,xlvi BOT_dm_${expin}_${year1}_${year2} \
clwvi_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,clwvi,o,c,atmosphere_cloud_condensed_water_content clwvi_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# clivi
cdo -r -f nc -t echam6 -setname,clivi -selvar,xivi BOT_dm_${expin}_${year1}_${year2} \
clivi_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,clivi,o,c,atmosphere_cloud_ice_content clivi_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
############## 3d data #####################################
# cl
cdo -r -f nc -t echam6 -mulc,100 -setname,cl -selvar,aclcac -sellevel,${level} ATM_dm_${expin}_${year1}_${year2} \
cl_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,cl,o,c,cloud_area_fraction_in_atmosphere_layer cl_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev cl_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# clw
cdo -r -f nc -t echam6 -mulc,100 -setname,clw -selvar,xl -sellevel,${level} ATM_dm_${expin}_${year1}_${year2} \
clw_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,clw,o,c,mass_fraction_of_cloud_liquid_water_in_air clw_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev clw_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# cli
cdo -r -f nc -t echam6 -mulc,100 -setname,cli -selvar,xi -sellevel,${level} ATM_dm_${expin}_${year1}_${year2} \
cli_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,cli,o,c,mass_fraction_of_cloud_ice_in_air cli_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev cli_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# ta
cdo -r -f nc -t echam6 -setname,ta -selvar,t -sellevel,${level} ATM_dm_${expin}_${year1}_${year2} \
ta_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,ta,o,c,air_temperature ta_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev ta_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# ua
cdo -r -f nc -t echam6 -setname,ua -selvar,u -sellevel,${level} ATM_dm_${expin}_${year1}_${year2} \
ua_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,ua,o,c,eastward_wind ua_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev ua_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# va
cdo -r -f nc -t echam6 -setname,va -selvar,v -sellevel,${level} ATM_dm_${expin}_${year1}_${year2} \
va_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,va,o,c,northward_wind va_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev va_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# hus
cdo -r -f nc -t echam6 -setname,hus -selvar,q -sellevel,${level} ATM_dm_${expin}_${year1}_${year2} \
hus_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,hus,o,c,specific_humidity hus_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev hus_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# hur
cdo -r -f nc -t echam6 -mulc,100 -setname,hur -selvar,rhumidity -sellevel,${level} ATM_dm_${expin}_${year1}_${year2} \
hur_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,hur,o,c,relative_humidity hur_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev hur_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# wap
cdo -r -f nc -t echam6 -setname,wap -selvar,omega -sellevel,${level} ATM_dm_${expin}_${year1}_${year2} \
wap_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,wap,o,c,lagrangian_tendency_or_air_pressure wap_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev wap_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# zg
cdo -r -f nc -t echam6 -setname,zg -selvar,geopoth -sellevel,${level} ATM_dm_${expin}_${year1}_${year2} \
zg_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,zg,o,c,geopotential_height zg_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev zg_Aday_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#!/bin/bash
# set variables
expin=itczmip008
expout=Land4xCO2
model=echam6-1
year1=0091
year2=0135
level='100000,92500,85000,70000,60000,50000,40000,30000,25000,20000,15000,10000,7000,5000,3000,2000,1000'
# merge BOT and ATM montly files
cdo -O mergetime BOT_${expin}_009? BOT_${expin}_01?? BOT_${expin}_${year1}_${year2}
cdo -O mergetime ATM_${expin}_009? ATM_${expin}_01?? ATM_${expin}_${year1}_${year2}
############## 2d data #####################################
# tas
cdo -r -f nc -t echam6 -setname,tas -selvar,temp2 BOT_${expin}_${year1}_${year2} \
tas_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tas,o,c,air_temperature tas_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# ts
cdo -r -f nc -t echam6 -setname,ts -selvar,tsurf BOT_${expin}_${year1}_${year2} \
ts_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,ts,o,c,surface_temperature ts_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# tasmin
cdo -r -f nc -t echam6 -setname,tasmin -selvar,t2min BOT_${expin}_${year1}_${year2} \
tasmin_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tasmin,o,c,air_temperature tasmin_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# tasmax
cdo -r -f nc -t echam6 -setname,tasmax -selvar,t2max BOT_${expin}_${year1}_${year2} \
tasmax_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tasmax,o,c,air_temperature tasmax_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# psl
cdo -r -f nc -t echam6 -setname,psl -selvar,slp BOT_${expin}_${year1}_${year2} \
psl_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,psl,o,c,air_pressure_at_sea_level psl_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# ps
cdo -r -f nc -t echam6 -setname,ps -selvar,aps BOT_${expin}_${year1}_${year2} \
ps_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,ps,o,c,surface_air_pressure ps_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# uas
cdo -r -f nc -t echam6 -setname,uas -selvar,u10 BOT_${expin}_${year1}_${year2} \
uas_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,uas,o,c,eastward_wind uas_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# vas
cdo -r -f nc -t echam6 -setname,vas -selvar,v10 BOT_${expin}_${year1}_${year2} \
vas_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,vas,o,c,northward_wind vas_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# sfcWind
cdo -r -f nc -t echam6 -setname,sfcWind -selvar,wind10 BOT_${expin}_${year1}_${year2} \
sfcWind_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,sfcWind,o,c,wind_speed sfcWind_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# pr
cdo -r -f nc -t echam6 -setname,pr -selvar,precip BOT_${expin}_${year1}_${year2} \
pr_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,pr,o,c,precipitation_flux pr_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# prsn
cdo -r -f nc -t echam6 -setname,prsn -selvar,aprs BOT_${expin}_${year1}_${year2} \
prsn_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,prsn,o,c,snowfall_flux prsn_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# prc
cdo -r -f nc -t echam6 -setname,prc -selvar,aprc BOT_${expin}_${year1}_${year2} \
prc_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,prc,o,c,convective_precipitation_flux prc_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# evspsbl
cdo -r -f nc -t echam6 -mulc,-1 -setname,evspsbl -selvar,evap BOT_${expin}_${year1}_${year2} \
evspsbl_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,evspsbl,o,c,water_evaporation_flux evspsbl_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# tauu
cdo -r -f nc -t echam6 -setname,tauu -selvar,ustr BOT_${expin}_${year1}_${year2} \
tauu_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tauu,o,c,surface_downward_eastward_stress tauu_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# tauv
cdo -r -f nc -t echam6 -setname,tauv -selvar,vstr BOT_${expin}_${year1}_${year2} \
tauv_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,tauv,o,c,surface_downward_northward_stress tauv_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# hfls
cdo -r -f nc -t echam6 -mulc,-1 -setname,hfls -selvar,ahfl BOT_${expin}_${year1}_${year2} \
hfls_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,hfls,o,c,surface_upward_latent_heat_flux hfls_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# hfss
cdo -r -f nc -t echam6 -mulc,-1 -setname,hfss -selvar,ahfs BOT_${expin}_${year1}_${year2} \
hfss_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,hfss,o,c,surface_upward_sensible_heat_flux hfss_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rlds
cdo -r -f nc -t echam6 -setname,rlds -sub -selvar,trads BOT_${expin}_${year1}_${year2} \
-selvar,tradsu BOT_${expin}_${year1}_${year2} rlds_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rlds,o,c,surface_downwelling_longwave_flux_in_air rlds_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rlus
cdo -r -f nc -t echam6 -mulc,-1 -setname,rlus -selvar,tradsu BOT_${expin}_${year1}_${year2} \
rlus_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rlus,o,c,surface_upwelling_longwave_flux_in_air rlus_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rsds
cdo -r -f nc -t echam6 -setname,rsds -sub -selvar,srads BOT_${expin}_${year1}_${year2} \
-selvar,sradsu BOT_${expin}_${year1}_${year2} rsds_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsds,o,c,surface_downwelling_shortwave_flux_in_air rsds_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rsus
cdo -r -f nc -t echam6 -mulc,-1 -setname,rsus -selvar,sradsu BOT_${expin}_${year1}_${year2} \
rsus_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsus,o,c,surface_upwelling_shortwave_flux_in_air rsus_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
########### clear-sky sw surface fluxes (start)
#need to calcule effective sfc albedo first
rm -f sfcalbedo
cdo div rsus_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc \
rsds_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc \
sfcalbedo
#rsdscs
cdo -r -f nc -t echam6 -setmisstoc,0 -setname,rsdscs -div -selvar,srafs BOT_${expin}_${year1}_${year2} \
-addc,1 -mulc,-1 sfcalbedo rsdscs_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsdscs,o,c,surface_downwelling_shortwave_flux_in_air_assuming_clear_sky rsdscs_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
#rsuscs
cdo -r -f nc -t echam6 -mulc,-1 -setname,rsuscs -sub -selvar,srafs BOT_${expin}_${year1}_${year2} \
rsdscs_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc \
rsuscs_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsuscs,o,c,surface_upwelling_shortwave_flux_in_air_assuming_clear_sky rsuscs_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
rm -f sfcalbedo
########### clear-sky sw surface fluxes (end)
#rldscs
cdo -r -f nc -t echam6 -setname,rldscs -sub -selvar,trafs BOT_${expin}_${year1}_${year2} \
-selvar,tradsu BOT_${expin}_${year1}_${year2} rldscs_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rldscs,o,c,surface_downwelling_longwave_flux_in_air_assuming_clear_sky rldscs_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rsdt
cdo -r -f nc -t echam6 -setname,rsdt -selvar,srad0d BOT_${expin}_${year1}_${year2} \
rsdt_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsdt,o,c,toa_incoming_shortwave_flux rsdt_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rsut
cdo -r -f nc -t echam6 -mulc,-1 -setname,rsut -selvar,srad0u BOT_${expin}_${year1}_${year2} \
rsut_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsut,o,c,toa_outgoing_shortwave_flux rsut_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rlut
cdo -r -f nc -t echam6 -mulc,-1 -setname,rlut -selvar,trad0 BOT_${expin}_${year1}_${year2} \
rlut_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rlut,o,c,toa_outgoing_longwave_flux rlut_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rlutcs
cdo -r -f nc -t echam6 -mulc,-1 -setname,rlutcs -selvar,traf0 BOT_${expin}_${year1}_${year2} \
rlutcs_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rlutcs,o,c,toa_outgoing_longwave_flux_assuming_clear_sky rlutcs_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# rsutcs
cdo -r -f nc -t echam6 -mulc,-1 -setname,rsutcs -sub -selvar,sraf0 BOT_${expin}_${year1}_${year2} \
-selvar,srad0d BOT_${expin}_${year1}_${year2} rsutcs_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,rsutcs,o,c,toa_outgoing_shortwave_flux_assuming_clear_sky rsutcs_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# prw
cdo -r -f nc -t echam6 -setname,prw -selvar,qvi BOT_${expin}_${year1}_${year2} \
prw_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,prw,o,c,atmosphere_water_vapor_content prw_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# clt
cdo -r -f nc -t echam6 -mulc,100 -setname,clt -selvar,aclcov BOT_${expin}_${year1}_${year2} \
clt_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,clt,o,c,cloud_area_fraction clt_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# clwvi
cdo -r -f nc -t echam6 -setname,clwvi -selvar,xlvi BOT_${expin}_${year1}_${year2} \
clwvi_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,clwvi,o,c,atmosphere_cloud_condensed_water_content clwvi_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# clivi
cdo -r -f nc -t echam6 -setname,clivi -selvar,xivi BOT_${expin}_${year1}_${year2} \
clivi_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,clivi,o,c,atmosphere_cloud_ice_content clivi_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
############## 3d data #####################################
# cl
cdo -r -f nc -t echam6 -mulc,100 -setname,cl -selvar,aclcac -sellevel,${level} ATM_${expin}_${year1}_${year2} \
cl_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,cl,o,c,cloud_area_fraction_in_atmosphere_layer cl_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev cl_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# clw
cdo -r -f nc -t echam6 -mulc,100 -setname,clw -selvar,xl -sellevel,${level} ATM_${expin}_${year1}_${year2} \
clw_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,clw,o,c,mass_fraction_of_cloud_liquid_water_in_air clw_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev clw_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# cli
cdo -r -f nc -t echam6 -mulc,100 -setname,cli -selvar,xi -sellevel,${level} ATM_${expin}_${year1}_${year2} \
cli_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,cli,o,c,mass_fraction_of_cloud_ice_in_air cli_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev cli_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# ta
cdo -r -f nc -t echam6 -setname,ta -selvar,t -sellevel,${level} ATM_${expin}_${year1}_${year2} \
ta_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,ta,o,c,air_temperature ta_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev ta_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# ua
cdo -r -f nc -t echam6 -setname,ua -selvar,u -sellevel,${level} ATM_${expin}_${year1}_${year2} \
ua_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,ua,o,c,eastward_wind ua_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev ua_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# va
cdo -r -f nc -t echam6 -setname,va -selvar,v -sellevel,${level} ATM_${expin}_${year1}_${year2} \
va_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,va,o,c,northward_wind va_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev va_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# hus
cdo -r -f nc -t echam6 -setname,hus -selvar,q -sellevel,${level} ATM_${expin}_${year1}_${year2} \
hus_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,hus,o,c,specific_humidity hus_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev hus_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# hur
cdo -r -f nc -t echam6 -mulc,100 -setname,hur -selvar,rhumidity -sellevel,${level} ATM_${expin}_${year1}_${year2} \
hur_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,hur,o,c,relative_humidity hur_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev hur_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# wap
cdo -r -f nc -t echam6 -setname,wap -selvar,omega -sellevel,${level} ATM_${expin}_${year1}_${year2} \
wap_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,wap,o,c,lagrangian_tendency_or_air_pressure wap_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev wap_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
# zg
cdo -r -f nc -t echam6 -setname,zg -selvar,geopoth -sellevel,${level} ATM_${expin}_${year1}_${year2} \
zg_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncatted -O -a long_name,zg,o,c,geopotential_height zg_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
ncrename -d lev,plev -v lev,plev zg_Amon_${model}_${expout}_r1i1p1_${year1}01-${year2}12.nc
README for TRACMIP dataset hosted on the University of Miami OpenDap server
Written by Aiko Voigt, aiko.voigt@kit.edu
Tracmip reference:
A. Voigt, M. Biasutti et al., The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, revised for JAMES.
Model names in the Tracmip reference paper are different from those used on the server. The following table allows to translate the two.
Model name in Tracmip paper Model name on server
AM2.1 AM2
CAM3 CAM3
CAM4 CAM4
CAM5Nor NorESM2
CNRM-AM5 CNRM-AM6-DIA-v2
ECHAM6.1 ECHAM61
ECHAM6.3 ECHAM63
LMDZ5A IPSL-CM5A
MetUM-CTL MetUM-GA6-CTL
MetUM-ENT MetUM-GA6-ENT
MIROC5 MIROC5
MPAS MPAS
GISS ModelE2 GISS_ModelE
CALTECH CaltechGrayi
There is also data from the CNRM-AM6-DIA model; these are not used in the paper.
For the CALTECH model, the Abs1.5 simulations are taken as the analogue for the 4xCO2 simulations with the comprehensive models (remember that CALTECH has a gray atmosphere for which absorptivity is prescribed).
#
# gridID 1
#
gridtype = lonlat
gridsize = 12960
xname = lon
xlongname = longitude
xunits = degrees_east
yname = lat
ylongname = latitude
yunits = degrees_north
xsize = 144
ysize = 90
xfirst = 1.25
xinc = 2.5
yvals = -89.49438 -87.97753 -85.95506 -83.93259 -81.91011 -79.88764
-77.86517 -75.8427 -73.82022 -71.79775 -69.77528 -67.75281
-65.73034 -63.70787 -61.68539 -59.66292 -57.64045 -55.61798
-53.5955 -51.57303 -49.55056 -47.52809 -45.50562 -43.48315
-41.46067 -39.4382 -37.41573 -35.39326 -33.37078 -31.34831
-29.32584 -27.30337 -25.2809 -23.25843 -21.23595 -19.21348
-17.19101 -15.16854 -13.14607 -11.1236 -9.101124 -7.078652
-5.05618 -3.033708 -1.011236 1.011236 3.033708 5.05618 7.078652
9.101124 11.1236 13.14607 15.16854 17.19101 19.21348 21.23595
23.25843 25.2809 27.30337 29.32584 31.34831 33.37078 35.39326
37.41573 39.4382 41.46067 43.48315 45.50562 47.52809 49.55056
51.57303 53.5955 55.61798 57.64045 59.66292 61.68539 63.70787
65.73034 67.75281 69.77528 71.79775 73.82022 75.8427 77.86517
79.88764 81.91011 83.93259 85.95506 87.97753 89.49438
#
# zaxisID 1
#
zaxistype = pressure
size = 17
name = plev
longname = "pressure"
units = "Pa"
levels = 1000 2000 3000 5000 7000 10000 15000 20000 25000 30000 40000 50000 60000 70000 85000 92500 100000
# experiment info:
#
# none of these can be set in the command line
#
EXPERIMENT_ID="aqua4xCO2TRACMIP"
MEMBER=r1i1p1
PROJECT_ID=TRACMIP
PRODUCT=output
COMMENT="aqua planet with 4xco2 of TRACMIP; for TRACMIP see Voigt et al., 2016, The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, 9, 1868–1891, doi:10.1002/2016MS000748"
HISTORY="N/A"
PARENT_EXPERIMENT="aquaControlTRACMIP"
PARENT_EXPERIMENT_RIP="r1i1p1"
PARENT_EXPERIMENT_ID="aquaControlTRACMIP"
FORCING="CO2"
BRANCH_TIME="0046-01-01"
REQUIRED_TIME_UNITS="days since 0001-1-1 00:00:00"
#model info:
#
# only variable MAPPING_TABLE and model GRID_FILE can be set in the command line
#
MODEL_ID=AM21
REFERENCES="AM21: Atmosphere component of GFDL-CM2.1;Anderson, J., et al. (2004), The new GFDL global atmosphere and land model AM2-LM2: Evaluation with prescribed SST simulations, J. Clim., 17(24), 4641–4673; Delworth, T. L., et al. (2006), GFDL’s CM2 global coupled climate models. Part I: Formulation and simulation characteristics, J. Clim., 19(5), 643–674, doi:10.1175/JCLI3629.1; Lin, S.-J. (2004), A vertically Lagrangian finite-volume dynamical core for global models, Mon. Weather Rev., 132(10), 2293–2307, doi:10.1175/1520-0493(2004)132h2293:AVLFDCi2.0.CO;2;"
SOURCE="AM21, 2.0 deg lat x 2.5 deg lon, 24 levels;"
CALENDAR=360_day
# institution and contact info:
#
# none of these can be set in the command line
#
INSTITUTE_ID="ULSAN"
INSTITUTION="School of Urban and Environmental Engineering, Ulsan National Institute of Science and Technology, Ulsan, South Korea"
CONTACT="Sarah Kang, skang.unist.ac.kr; Elizabeth Maroon, elizabeth.maroon@colorado.edu"
# experiment info:
#
# none of these can be set in the command line
#
EXPERIMENT_ID="aquaControlTRACMIP"
MEMBER=r1i1p1
PROJECT_ID=TRACMIP
PRODUCT=output
COMMENT="aqua planet control of TRACMIP; for TRACMIP see Voigt et al., 2016, The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, 9, 1868–1891, doi:10.1002/2016MS000748"
HISTORY="N/A"
PARENT_EXPERIMENT="N/A"
PARENT_EXPERIMENT_RIP="N/A"
PARENT_EXPERIMENT_ID="N/A"
FORCING="CTRL"
BRANCH_TIME="N/A"
REQUIRED_TIME_UNITS="days since 0001-1-1 00:00:00"
#model info:
#
# only variable MAPPING_TABLE and model GRID_FILE can be set in the command line
#
MODEL_ID=AM21
REFERENCES="AM21: Atmosphere component of GFDL-CM2.1;Anderson, J., et al. (2004), The new GFDL global atmosphere and land model AM2-LM2: Evaluation with prescribed SST simulations, J. Clim., 17(24), 4641–4673; Delworth, T. L., et al. (2006), GFDL’s CM2 global coupled climate models. Part I: Formulation and simulation characteristics, J. Clim., 19(5), 643–674, doi:10.1175/JCLI3629.1; Lin, S.-J. (2004), A vertically Lagrangian finite-volume dynamical core for global models, Mon. Weather Rev., 132(10), 2293–2307, doi:10.1175/1520-0493(2004)132h2293:AVLFDCi2.0.CO;2;"
SOURCE="AM21, 2.0 deg lat x 2.5 deg lon, 24 levels;"
CALENDAR=360_day
# institution and contact info:
#
# none of these can be set in the command line
#
INSTITUTE_ID="ULSAN"
INSTITUTION="School of Urban and Environmental Engineering, Ulsan National Institute of Science and Technology, Ulsan, South Korea"
CONTACT="Sarah Kang, skang.unist.ac.kr; Elizabeth Maroon, elizabeth.maroon@colorado.edu"
# experiment info:
#
# none of these can be set in the command line
#
EXPERIMENT_ID="land4xCO2TRACMIP"
MEMBER=r1i1p1
PROJECT_ID=TRACMIP
PRODUCT=output
COMMENT="idealized land with 4xco2 of TRACMIP; note: it appears that evaporation was not reduced over land, different from what was demanded in the simulation protocol; for TRACMIP see Voigt et al., 2016, The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, 9, 1868–1891, doi:10.1002/2016MS000748"
HISTORY="N/A"
PARENT_EXPERIMENT="landControlTRACMIP"
PARENT_EXPERIMENT_RIP="r1i1p1"
PARENT_EXPERIMENT_ID="landControlTRACMIP"
FORCING="CO2"
BRANCH_TIME="0086-01-01"
REQUIRED_TIME_UNITS="days since 0001-1-1 00:00:00"
#model info:
#
# only variable MAPPING_TABLE and model GRID_FILE can be set in the command line
#
MODEL_ID=AM21
REFERENCES="AM21: Atmosphere component of GFDL-CM2.1;Anderson, J., et al. (2004), The new GFDL global atmosphere and land model AM2-LM2: Evaluation with prescribed SST simulations, J. Clim., 17(24), 4641–4673; Delworth, T. L., et al. (2006), GFDL’s CM2 global coupled climate models. Part I: Formulation and simulation characteristics, J. Clim., 19(5), 643–674, doi:10.1175/JCLI3629.1; Lin, S.-J. (2004), A vertically Lagrangian finite-volume dynamical core for global models, Mon. Weather Rev., 132(10), 2293–2307, doi:10.1175/1520-0493(2004)132h2293:AVLFDCi2.0.CO;2;"
SOURCE="AM21, 2.0 deg lat x 2.5 deg lon, 24 levels;"
CALENDAR=360_day
# institution and contact info:
#
# none of these can be set in the command line
#
INSTITUTE_ID="ULSAN"
INSTITUTION="School of Urban and Environmental Engineering, Ulsan National Institute of Science and Technology, Ulsan, South Korea"
CONTACT="Sarah Kang, skang.unist.ac.kr; Elizabeth Maroon, elizabeth.maroon@colorado.edu"
# experiment info:
#
# none of these can be set in the command line
#
EXPERIMENT_ID="landControlTRACMIP"
MEMBER=r1i1p1
PROJECT_ID=TRACMIP
PRODUCT=output
COMMENT="idealized land control of TRACMIP; note: it appears that evaporation was not reduced over land, different from what was demanded in the simulation protocol; for TRACMIP see Voigt et al., 2016, The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, 9, 1868–1891, doi:10.1002/2016MS000748"
HISTORY="N/A"
PARENT_EXPERIMENT="aquaControlTRACMIP"
PARENT_EXPERIMENT_RIP="r1i1p1"
PARENT_EXPERIMENT_ID="aquaControlTRACMIP"
FORCING="CTRL"
BRANCH_TIME="0046-01-01"
REQUIRED_TIME_UNITS="days since 0001-1-1 00:00:00"
#model info:
#
# only variable MAPPING_TABLE and model GRID_FILE can be set in the command line
#
MODEL_ID=AM21
REFERENCES="AM21: Atmosphere component of GFDL-CM2.1;Anderson, J., et al. (2004), The new GFDL global atmosphere and land model AM2-LM2: Evaluation with prescribed SST simulations, J. Clim., 17(24), 4641–4673; Delworth, T. L., et al. (2006), GFDL’s CM2 global coupled climate models. Part I: Formulation and simulation characteristics, J. Clim., 19(5), 643–674, doi:10.1175/JCLI3629.1; Lin, S.-J. (2004), A vertically Lagrangian finite-volume dynamical core for global models, Mon. Weather Rev., 132(10), 2293–2307, doi:10.1175/1520-0493(2004)132h2293:AVLFDCi2.0.CO;2;"
SOURCE="AM21, 2.0 deg lat x 2.5 deg lon, 24 levels;"
CALENDAR=360_day
# institution and contact info:
#
# none of these can be set in the command line
#
INSTITUTE_ID="ULSAN"
INSTITUTION="School of Urban and Environmental Engineering, Ulsan National Institute of Science and Technology, Ulsan, South Korea"
CONTACT="Sarah Kang, skang.unist.ac.kr; Elizabeth Maroon, elizabeth.maroon@colorado.edu"
! This table may contain information that has to be provided with the data files in order to use the CDO cmor operator.
! E.g. if your data are GRIB formatted the information is needed which code number corresponds to the short name
! required to be given to a requested variable. The keyword has to be 'code'.
! The table format:
! Each line has to start with &!parameter '
! Each line has to end with ' /' (Note the blank!)
! The keyword-assignments may appear at any place
! There must be at least 1 space between assignments
! Any keyword-value may be written with double-quotes
! If a keyword-values contains spaces, it must be delimited by double-quotes
! Keywords interpreted by cdo cmor,... are :
!
!Entry Type Description
!----------------------------------------------------------------------------------------
!name WORD Name of the variable
!cmor_name/cn WORD CMIP/CMOR variable name (CV)
! Note: This is the name that has to be passed to the CMOR functions.
! It is not necessarily the variable name in the NetCDF output file
! nor the 1st DRS element of the file name. Short form: 'cn'
!param WORD Parameter identifier (GRIB1: code[.tabnum]; GRIB2: num[.cat[.dis]])
!units STRING units of the variable
!comment STRING Information concerning the variable
!cell_methods STRING Information concerning the time:cell_methods
!
! Other keywords may be interpreted by other cdo-operators or tools
!
! AM21 mapping table for TRACMIP, derived from ECHAM61 mapping table
!
!! Amon
&parameter name=cl cmor_name=cl units="%" cell_methods="m" project_mip_table=Amon /
&parameter name=cli cmor_name=cli units="kg/kg" cell_methods="m" project_mip_table=Amon /
&parameter name=clivi cmor_name=clivi units="kg m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=clt cmor_name=clt units="%" cell_methods="m" project_mip_table=Amon /
&parameter name=clw cmor_name=clw units="kg/kg" cell_methods="m" project_mip_table=Amon /
&parameter name=clwvi cmor_name=clwvi units="kg m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=evspsbl cmor_name=evspsbl units="kg m-2 s-1" cell_methods="m" project_mip_table=Amon /
&parameter name=hfls cmor_name=hfls p="u" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=hfss cmor_name=hfss p="u" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=hur cmor_name=hur units="%" cell_methods="m" project_mip_table=Amon /
&parameter name=hus cmor_name=hus units="kg/kg" cell_methods="m" project_mip_table=Amon /
&parameter name=pr cmor_name=pr units="kg m-2 s-1" cell_methods="m" project_mip_table=Amon /
&parameter name=prc cmor_name=prc units="kg m-2 s-1" cell_methods="m" project_mip_table=Amon /
&parameter name=prsn cmor_name=prsn units="kg m-2 s-1" cell_methods="m" project_mip_table=Amon /
&parameter name=prw cmor_name=prw units="kg m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=ps cmor_name=ps units="Pa" cell_methods="m" project_mip_table=Amon /
&parameter name=psl cmor_name=psl units="Pa" cell_methods="m" project_mip_table=Amon /
&parameter name=rlds cmor_name=rlds p="d" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=rldscs cmor_name=rldscs p="d" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=rlus cmor_name=rlus p="u" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=rlut cmor_name=rlut p="u" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=rlutcs cmor_name=rlutcs p="u" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=rsds cmor_name=rsds p="d" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=rsdscs cmor_name=rsdscs p="d" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=rsdt cmor_name=rsdt p="d" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=rsus cmor_name=rsus p="u" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=rsuscs cmor_name=rsuscs p="u" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=rsut cmor_name=rsut p="u" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=rsutcs cmor_name=rsutcs p="u" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=rtmt cmor_name=rtmt p="d" units="W m-2" cell_methods="m" project_mip_table=Amon /
&parameter name=sfcWind cmor_name=sfcWind units="m/s" cell_methods="m" project_mip_table=Amon /
&parameter name=ta cmor_name=ta units="K" cell_methods="m" project_mip_table=Amon /
&parameter name=tas cmor_name=tas units="K" cell_methods="m" project_mip_table=Amon /
&parameter name=tasmax cmor_name=tasmax units="K" cell_methods="m" project_mip_table=Amon /
&parameter name=tasmin cmor_name=tasmin units="K" cell_methods="m" project_mip_table=Amon /
&parameter name=tauu cmor_name=tauu p="d" units="Pa" cell_methods="m" project_mip_table=Amon /
&parameter name=tauv cmor_name=tauv p="d" units="Pa" cell_methods="m" project_mip_table=Amon /
&parameter name=ts cmor_name=ts units="K" cell_methods="m" project_mip_table=Amon /
&parameter name=ua cmor_name=ua units="m/s" cell_methods="m" project_mip_table=Amon /
&parameter name=uas cmor_name=uas units="m/s" cell_methods="m" project_mip_table=Amon /
&parameter name=va cmor_name=va units="m/s" cell_methods="m" project_mip_table=Amon /
&parameter name=vas cmor_name=vas units="m/s" cell_methods="m" project_mip_table=Amon /
&parameter name=wap cmor_name=wap units="Pa/s" cell_methods="m" project_mip_table=Amon /
&parameter name=zg cmor_name=zg units="m" cell_methods="m" project_mip_table=Amon /
!! day
&parameter name=cl cmor_name=cl units="%" cell_methods="m" project_mip_table=Aday /
&parameter name=cli cmor_name=cli units="kg/kg" cell_methods="m" project_mip_table=Aday /
&parameter name=clivi cmor_name=clivi units="kg m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=clt cmor_name=clt units="%" cell_methods="m" project_mip_table=Aday /
&parameter name=clw cmor_name=clw units="kg/kg" cell_methods="m" project_mip_table=Aday /
&parameter name=clwvi cmor_name=clwvi units="kg m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=evspsbl cmor_name=evspsbl units="kg m-2 s-1" cell_methods="m" project_mip_table=Aday /
&parameter name=hfls cmor_name=hfls p="u" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=hfss cmor_name=hfss p="u" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=hur cmor_name=hur units="%" cell_methods="m" project_mip_table=Aday /
&parameter name=hus cmor_name=hus units="kg/kg" cell_methods="m" project_mip_table=Aday /
&parameter name=pr cmor_name=pr units="kg m-2 s-1" cell_methods="m" project_mip_table=Aday /
&parameter name=prc cmor_name=prc units="kg m-2 s-1" cell_methods="m" project_mip_table=Aday /
&parameter name=prsn cmor_name=prsn units="kg m-2 s-1" cell_methods="m" project_mip_table=Aday /
&parameter name=prw cmor_name=prw units="kg m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=ps cmor_name=ps units="Pa" cell_methods="m" project_mip_table=Aday /
&parameter name=psl cmor_name=psl units="Pa" cell_methods="m" project_mip_table=Aday /
&parameter name=rlds cmor_name=rlds p="d" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=rldscs cmor_name=rldscs p="d" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=rlus cmor_name=rlus p="u" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=rlut cmor_name=rlut p="u" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=rlutcs cmor_name=rlutcs p="u" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=rsds cmor_name=rsds p="d" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=rsdscs cmor_name=rsdscs p="d" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=rsdt cmor_name=rsdt p="d" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=rsus cmor_name=rsus p="u" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=rsuscs cmor_name=rsuscs p="u" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=rsut cmor_name=rsut p="u" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=rsutcs cmor_name=rsutcs p="u" units="W m-2" cell_methods="m" project_mip_table=Aday /
&parameter name=sfcWind cmor_name=sfcWind units="m/s" cell_methods="m" project_mip_table=Aday /
&parameter name=ta cmor_name=ta units="K" cell_methods="m" project_mip_table=Aday /
&parameter name=tas cmor_name=tas units="K" cell_methods="m" project_mip_table=Aday /
&parameter name=tasmax cmor_name=tasmax units="K" cell_methods="m" project_mip_table=Aday /
&parameter name=tasmin cmor_name=tasmin units="K" cell_methods="m" project_mip_table=Aday /
&parameter name=tauu cmor_name=tauu p="d" units="Pa" cell_methods="m" project_mip_table=Aday /
&parameter name=tauv cmor_name=tauv p="d" units="Pa" cell_methods="m" project_mip_table=Aday /
&parameter name=ts cmor_name=ts units="K" cell_methods="m" project_mip_table=Aday /
&parameter name=ua cmor_name=ua units="m/s" cell_methods="m" project_mip_table=Aday /
&parameter name=uas cmor_name=uas units="m/s" cell_methods="m" project_mip_table=Aday /
&parameter name=va cmor_name=va units="m/s" cell_methods="m" project_mip_table=Aday /
&parameter name=vas cmor_name=vas units="m/s" cell_methods="m" project_mip_table=Aday /
&parameter name=wap cmor_name=wap units="Pa/s" cell_methods="m" project_mip_table=Aday /
&parameter name=zg cmor_name=zg units="m" cell_methods="m" project_mip_table=Aday /
!! 3hr
&parameter name=cl cmor_name=cl units="%" cell_methods="m" project_mip_table=A3hr /
&parameter name=cli cmor_name=cli units="kg/kg" cell_methods="m" project_mip_table=A3hr /
&parameter name=clivi cmor_name=clivi units="kg m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=clt cmor_name=clt units="%" cell_methods="m" project_mip_table=A3hr /
&parameter name=clw cmor_name=clw units="kg/kg" cell_methods="m" project_mip_table=A3hr /
&parameter name=clwvi cmor_name=clwvi units="kg m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=evspsbl cmor_name=evspsbl units="kg m-2 s-1" cell_methods="m" project_mip_table=A3hr /
&parameter name=hfls cmor_name=hfls p="u" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=hfss cmor_name=hfss p="u" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=hur cmor_name=hur units="%" cell_methods="p" project_mip_table=A3hr /
&parameter name=hus cmor_name=hus units="kg/kg" cell_methods="p" project_mip_table=A3hr /
&parameter name=pr cmor_name=pr units="kg m-2 s-1" cell_methods="m" project_mip_table=A3hr /
&parameter name=prc cmor_name=prc units="kg m-2 s-1" cell_methods="m" project_mip_table=A3hr /
&parameter name=prsn cmor_name=prsn units="kg m-2 s-1" cell_methods="m" project_mip_table=A3hr /
&parameter name=prw cmor_name=prw units="kg m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=ps cmor_name=ps units="Pa" cell_methods="m" project_mip_table=A3hr /
&parameter name=psl cmor_name=psl units="Pa" cell_methods="m" project_mip_table=A3hr /
&parameter name=rlds cmor_name=rlds p="d" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=rldscs cmor_name=rldscs p="d" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=rlus cmor_name=rlus p="u" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=rlut cmor_name=rlut p="u" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=rlutcs cmor_name=rlutcs p="u" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=rsds cmor_name=rsds p="d" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=rsdscs cmor_name=rsdscs p="d" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=rsdt cmor_name=rsdt p="d" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=rsus cmor_name=rsus p="u" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=rsuscs cmor_name=rsuscs p="u" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=rsut cmor_name=rsut p="u" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=rsutcs cmor_name=rsutcs p="u" units="W m-2" cell_methods="m" project_mip_table=A3hr /
&parameter name=sfcWind cmor_name=sfcWind units="m/s" cell_methods="m" project_mip_table=A3hr /
&parameter name=ta cmor_name=ta units="K" cell_methods="p" project_mip_table=A3hr /
&parameter name=tas cmor_name=tas units="K" cell_methods="p" project_mip_table=A3hr /
&parameter name=tasmax cmor_name=tasmax units="K" cell_methods="m" project_mip_table=A3hr /
&parameter name=tasmin cmor_name=tasmin units="K" cell_methods="m" project_mip_table=A3hr /
&parameter name=tauu cmor_name=tauu p="d" units="Pa" cell_methods="m" project_mip_table=A3hr /
&parameter name=tauv cmor_name=tauv p="d" units="Pa" cell_methods="m" project_mip_table=A3hr /
&parameter name=ts cmor_name=ts units="K" cell_methods="p" project_mip_table=A3hr /
&parameter name=ua cmor_name=ua units="m/s" cell_methods="p" project_mip_table=A3hr /
&parameter name=uas cmor_name=uas units="m/s" cell_methods="p" project_mip_table=A3hr /
&parameter name=va cmor_name=va units="m/s" cell_methods="p" project_mip_table=A3hr /
&parameter name=vas cmor_name=vas units="m/s" cell_methods="p" project_mip_table=A3hr /
&parameter name=wap cmor_name=wap units="Pa/s" cell_methods="p" project_mip_table=A3hr /
&parameter name=zg cmor_name=zg units="m" cell_methods="p" project_mip_table=A3hr /
# experiment info:
#
# none of these can be set in the command line
#
EXPERIMENT_ID="aquaAbs0.7TRACMIP"
MEMBER=r1i1p1
PROJECT_ID=TRACMIP
PRODUCT=output
COMMENT="aqua planet with 4xco2 of TRACMIP; for TRACMIP see Voigt et al., 2016, The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, 9, 1868–1891, doi:10.1002/2016MS000748"
HISTORY="N/A"
PARENT_EXPERIMENT="aquaControlTRACMIP"
PARENT_EXPERIMENT_RIP="r1i1p1"
PARENT_EXPERIMENT_ID="aquaControlTRACMIP"
FORCING="CO2"
BRANCH_TIME="0046-01-01"
REQUIRED_TIME_UNITS="days since 0000-0-0 00:00:00"
#model info:
#
# only variable MAPPING_TABLE and model GRID_FILE can be set in the command line
#
MODEL_ID=CALTECH
REFERENCES="CALTECH: O’Gorman and Schneider, 2008, The hydrological cycle over a wide range of climates simulated with an idealized GCM, J. Clim., 21, 3815–3832, doi:10.1175/2007JCLI2065.1; Bordoni and Schneider, 2008, Monsoons as eddy-mediated regime transitions of the tropical overturning circulation, Nat. Geosci., 1, 515–519, doi:10.1038/ngeo248"
SOURCE="CALTECH, T42, 30 levels;"
CALENDAR=360_day
# institution and contact info:
#
# none of these can be set in the command line
#
INSTITUTE_ID="CALTECH"
INSTITUTION="California Institute of Technology"
CONTACT="bordoni@gps.caltech.edu; hwei@caltech.edu"
# experiment info:
#
# none of these can be set in the command line
#
EXPERIMENT_ID="aquaAbs07TRACMIP"
MEMBER=r1i1p1
PROJECT_ID=TRACMIP
PRODUCT=output
COMMENT="aqua planet of TRACMIP with longwave optical thickness scaled by 0.7 compared to aquaControlTRACMIP; for TRACMIP see Voigt et al., 2016, The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, 9, 1868–1891, doi:10.1002/2016MS000748"
HISTORY="N/A"
PARENT_EXPERIMENT="aquaControlTRACMIP"
PARENT_EXPERIMENT_RIP="r1i1p1"
PARENT_EXPERIMENT_ID="aquaControlTRACMIP"
FORCING="CO2"
BRANCH_TIME="0046-01-01"
REQUIRED_TIME_UNITS="days since -0001-12-30 00:00:00"
#model info:
#
# only variable MAPPING_TABLE and model GRID_FILE can be set in the command line
#
MODEL_ID=CALTECH
REFERENCES="CALTECH: O’Gorman and Schneider, 2008, The hydrological cycle over a wide range of climates simulated with an idealized GCM, J. Clim., 21, 3815–3832, doi:10.1175/2007JCLI2065.1; Bordoni and Schneider, 2008, Monsoons as eddy-mediated regime transitions of the tropical overturning circulation, Nat. Geosci., 1, 515–519, doi:10.1038/ngeo248"
SOURCE="CALTECH, T42, 30 levels;"
CALENDAR=360_day
# institution and contact info:
#
# none of these can be set in the command line
#
INSTITUTE_ID="CALTECH"
INSTITUTION="California Institute of Technology"
CONTACT="bordoni@gps.caltech.edu; hwei@caltech.edu"
# experiment info:
#
# none of these can be set in the command line
#
EXPERIMENT_ID="aquaAbs1.5TRACMIP"
MEMBER=r1i1p1
PROJECT_ID=TRACMIP
PRODUCT=output
COMMENT="aqua planet with 4xco2 of TRACMIP; for TRACMIP see Voigt et al., 2016, The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, 9, 1868–1891, doi:10.1002/2016MS000748"
HISTORY="N/A"
PARENT_EXPERIMENT="aquaControlTRACMIP"
PARENT_EXPERIMENT_RIP="r1i1p1"
PARENT_EXPERIMENT_ID="aquaControlTRACMIP"
FORCING="CO2"
BRANCH_TIME="0046-01-01"
REQUIRED_TIME_UNITS="days since 0000-0-0 00:00:00"
#model info:
#
# only variable MAPPING_TABLE and model GRID_FILE can be set in the command line
#
MODEL_ID=CALTECH
REFERENCES="CALTECH: O’Gorman and Schneider, 2008, The hydrological cycle over a wide range of climates simulated with an idealized GCM, J. Clim., 21, 3815–3832, doi:10.1175/2007JCLI2065.1; Bordoni and Schneider, 2008, Monsoons as eddy-mediated regime transitions of the tropical overturning circulation, Nat. Geosci., 1, 515–519, doi:10.1038/ngeo248"
SOURCE="CALTECH, T42, 30 levels;"
CALENDAR=360_day
# institution and contact info:
#
# none of these can be set in the command line
#
INSTITUTE_ID="CALTECH"
INSTITUTION="California Institute of Technology"
CONTACT="bordoni@gps.caltech.edu; hwei@caltech.edu"
# experiment info:
#
# none of these can be set in the command line
#
EXPERIMENT_ID="aquaAbs15TRACMIP"
MEMBER=r1i1p1
PROJECT_ID=TRACMIP
PRODUCT=output
COMMENT="aqua planet of TRACMIP with longwave optical thickness scaled by 1.5 compared to aquaControlTRACMIP; for TRACMIP see Voigt et al., 2016, The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, 9, 1868–1891, doi:10.1002/2016MS000748"
HISTORY="N/A"
PARENT_EXPERIMENT="aquaControlTRACMIP"
PARENT_EXPERIMENT_RIP="r1i1p1"
PARENT_EXPERIMENT_ID="aquaControlTRACMIP"
FORCING="CO2"
BRANCH_TIME="0046-01-01"
REQUIRED_TIME_UNITS="days since -0001-12-30 00:00:00"
#model info:
#
# only variable MAPPING_TABLE and model GRID_FILE can be set in the command line
#
MODEL_ID=CALTECH
REFERENCES="CALTECH: O’Gorman and Schneider, 2008, The hydrological cycle over a wide range of climates simulated with an idealized GCM, J. Clim., 21, 3815–3832, doi:10.1175/2007JCLI2065.1; Bordoni and Schneider, 2008, Monsoons as eddy-mediated regime transitions of the tropical overturning circulation, Nat. Geosci., 1, 515–519, doi:10.1038/ngeo248"
SOURCE="CALTECH, T42, 30 levels;"
CALENDAR=360_day
# institution and contact info:
#
# none of these can be set in the command line
#
INSTITUTE_ID="CALTECH"
INSTITUTION="California Institute of Technology"
CONTACT="bordoni@gps.caltech.edu; hwei@caltech.edu"
# experiment info:
#
# none of these can be set in the command line
#
EXPERIMENT_ID="aquaAbs2.0TRACMIP"
MEMBER=r1i1p1
PROJECT_ID=TRACMIP
PRODUCT=output
COMMENT="aqua planet with 4xco2 of TRACMIP; for TRACMIP see Voigt et al., 2016, The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, 9, 1868–1891, doi:10.1002/2016MS000748"
HISTORY="N/A"
PARENT_EXPERIMENT="aquaControlTRACMIP"
PARENT_EXPERIMENT_RIP="r1i1p1"
PARENT_EXPERIMENT_ID="aquaControlTRACMIP"
FORCING="CO2"
BRANCH_TIME="0046-01-01"
REQUIRED_TIME_UNITS="days since 0000-0-0 00:00:00"
#model info:
#
# only variable MAPPING_TABLE and model GRID_FILE can be set in the command line
#
MODEL_ID=CALTECH
REFERENCES="CALTECH: O’Gorman and Schneider, 2008, The hydrological cycle over a wide range of climates simulated with an idealized GCM, J. Clim., 21, 3815–3832, doi:10.1175/2007JCLI2065.1; Bordoni and Schneider, 2008, Monsoons as eddy-mediated regime transitions of the tropical overturning circulation, Nat. Geosci., 1, 515–519, doi:10.1038/ngeo248"
SOURCE="CALTECH, T42, 30 levels;"
CALENDAR=360_day
# institution and contact info:
#
# none of these can be set in the command line
#
INSTITUTE_ID="CALTECH"
INSTITUTION="California Institute of Technology"
CONTACT="bordoni@gps.caltech.edu; hwei@caltech.edu"
# experiment info:
#
# none of these can be set in the command line
#
EXPERIMENT_ID="aquaAbs20TRACMIP"
MEMBER=r1i1p1
PROJECT_ID=TRACMIP
PRODUCT=output
COMMENT="aqua planet of TRACMIP with longwave optical thickness scaled by 2.0 compared to aquaControlTRACMIP; for TRACMIP see Voigt et al., 2016, The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, 9, 1868–1891, doi:10.1002/2016MS000748"
HISTORY="N/A"
PARENT_EXPERIMENT="aquaControlTRACMIP"
PARENT_EXPERIMENT_RIP="r1i1p1"
PARENT_EXPERIMENT_ID="aquaControlTRACMIP"
FORCING="CO2"
BRANCH_TIME="0046-01-01"
REQUIRED_TIME_UNITS="days since -0001-12-30 00:00:00"
#model info:
#
# only variable MAPPING_TABLE and model GRID_FILE can be set in the command line
#
MODEL_ID=CALTECH
REFERENCES="CALTECH: O’Gorman and Schneider, 2008, The hydrological cycle over a wide range of climates simulated with an idealized GCM, J. Clim., 21, 3815–3832, doi:10.1175/2007JCLI2065.1; Bordoni and Schneider, 2008, Monsoons as eddy-mediated regime transitions of the tropical overturning circulation, Nat. Geosci., 1, 515–519, doi:10.1038/ngeo248"
SOURCE="CALTECH, T42, 30 levels;"
CALENDAR=360_day
# institution and contact info:
#
# none of these can be set in the command line
#
INSTITUTE_ID="CALTECH"
INSTITUTION="California Institute of Technology"
CONTACT="bordoni@gps.caltech.edu; hwei@caltech.edu"
# experiment info:
#
# none of these can be set in the command line
#
EXPERIMENT_ID="aquaControlTRACMIP"
MEMBER=r1i1p1
PROJECT_ID=TRACMIP
PRODUCT=output
COMMENT="aqua planet control of TRACMIP; for TRACMIP see Voigt et al., 2016, The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, 9, 1868–1891, doi:10.1002/2016MS000748"
HISTORY="N/A"
PARENT_EXPERIMENT="N/A"
PARENT_EXPERIMENT_RIP="N/A"
PARENT_EXPERIMENT_ID="N/A"
FORCING="CTRL"
BRANCH_TIME="N/A"
REQUIRED_TIME_UNITS="days since -0001-12-30 00:00:00"
#model info:
#
# only variable MAPPING_TABLE and model GRID_FILE can be set in the command line
#
MODEL_ID=CALTECH
REFERENCES="CALTECH: O’Gorman and Schneider, 2008, The hydrological cycle over a wide range of climates simulated with an idealized GCM, J. Clim., 21, 3815–3832, doi:10.1175/2007JCLI2065.1; Bordoni and Schneider, 2008, Monsoons as eddy-mediated regime transitions of the tropical overturning circulation, Nat. Geosci., 1, 515–519, doi:10.1038/ngeo248"
SOURCE="CALTECH, T42, 30 levels;"
CALENDAR=360_day
# institution and contact info:
#
# none of these can be set in the command line
#
INSTITUTE_ID="CALTECH"
INSTITUTION="California Institute of Technology"
CONTACT="bordoni@gps.caltech.edu; hwei@caltech.edu"
# experiment info:
#
# none of these can be set in the command line
#
EXPERIMENT_ID="landAbs0.7TRACMIP"
MEMBER=r1i1p1
PROJECT_ID=TRACMIP
PRODUCT=output
COMMENT="idealized land with 4xco2 of TRACMIP; for TRACMIP see Voigt et al., 2016, The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, 9, 1868–1891, doi:10.1002/2016MS000748"
HISTORY="N/A"
PARENT_EXPERIMENT="landControlTRACMIP"
PARENT_EXPERIMENT_RIP="r1i1p1"
PARENT_EXPERIMENT_ID="landControlTRACMIP"
FORCING="CO2"
BRANCH_TIME="0086-01-01"
REQUIRED_TIME_UNITS="days since 0000-0-0 00:00:00"
#model info:
#
# only variable MAPPING_TABLE and model GRID_FILE can be set in the command line
#
MODEL_ID=CALTECH
REFERENCES="CALTECH: O’Gorman and Schneider, 2008, The hydrological cycle over a wide range of climates simulated with an idealized GCM, J. Clim., 21, 3815–3832, doi:10.1175/2007JCLI2065.1; Bordoni and Schneider, 2008, Monsoons as eddy-mediated regime transitions of the tropical overturning circulation, Nat. Geosci., 1, 515–519, doi:10.1038/ngeo248"
SOURCE="CALTECH, T42, 30 levels;"
CALENDAR=360_day
# institution and contact info:
#
# none of these can be set in the command line
#
INSTITUTE_ID="CALTECH"
INSTITUTION="California Institute of Technology"
CONTACT="bordoni@gps.caltech.edu; hwei@caltech.edu"
# experiment info:
#
# none of these can be set in the command line
#
EXPERIMENT_ID="landAbs07TRACMIP"
MEMBER=r1i1p1
PROJECT_ID=TRACMIP
PRODUCT=output
COMMENT="idealized land of TRACMIP with longwave optical thickness scaled by 0.7 compared to landControlTRACMIP; for TRACMIP see Voigt et al., 2016, The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP, 9, 1868–1891, doi:10.1002/2016MS000748"
HISTORY="N/A"
PARENT_EXPERIMENT="landControlTRACMIP"
PARENT_EXPERIMENT_RIP="r1i1p1"
PARENT_EXPERIMENT_ID="landControlTRACMIP"
FORCING="CO2"
BRANCH_TIME="0086-01-01"
REQUIRED_TIME_UNITS="days since -0001-12-30 00:00:00"
#model info:
#
# only variable MAPPING_TABLE and model GRID_FILE can be set in the command line
#
MODEL_ID=CALTECH
REFERENCES="CALTECH: O’Gorman and Schneider, 2008, The hydrological cycle over a wide range of climates simulated with an idealized GCM, J. Clim., 21, 3815–3832, doi:10.1175/2007JCLI2065.1; Bordoni and Schneider, 2008, Monsoons as eddy-mediated regime transitions of the tropical overturning circulation, Nat. Geosci., 1, 515–519, doi:10.1038/ngeo248"
SOURCE="CALTECH, T42, 30 levels;"
CALENDAR=360_day
# institution and contact info:
#
# none of these can be set in the command line
#
INSTITUTE_ID="CALTECH"
INSTITUTION="California Institute of Technology"
CONTACT="bordoni@gps.caltech.edu; hwei@caltech.edu"
0% Loading or .
You are about to add 0 people to the discussion. Proceed with caution.
Please register or to comment