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Data headers for 'CEF5c2MAAclivi111v130402'
Record


Generation date
2014-11-18
Method
ncdump -h
Header
netcdf CEF5c2MAAclivi111v130402_1_4377439483553345546 {
dimensions:
time = UNLIMITED ; // (600 currently)
lat = 128 ;
lon = 256 ;
bnds = 2 ;
variables:
double time(time) ;
time:bounds = "time_bnds" ;
time:units = "days since 1850-1-1" ;
time:calendar = "gregorian" ;
time:axis = "T" ;
time:long_name = "time" ;
time:standard_name = "time" ;
double time_bnds(time, bnds) ;
double lat(lat) ;
lat:bounds = "lat_bnds" ;
lat:units = "degrees_north" ;
lat:axis = "Y" ;
lat:long_name = "latitude" ;
lat:standard_name = "latitude" ;
double lat_bnds(lat, bnds) ;
double lon(lon) ;
lon:bounds = "lon_bnds" ;
lon:units = "degrees_east" ;
lon:axis = "X" ;
lon:long_name = "longitude" ;
lon:standard_name = "longitude" ;
double lon_bnds(lon, bnds) ;
float clivi(time, lat, lon) ;
clivi:standard_name = "atmosphere_cloud_ice_content" ;
clivi:long_name = "Ice Water Path" ;
clivi:comment = "mass of ice water in the column divided by the area of the column (not just the area of the cloudy portion of the column). Includes precipitating frozen hydrometeors ONLY if the precipitating hydrometeor affects the calculation of radiative transfer in model." ;
clivi:units = "kg m-2" ;
clivi:original_name = "clivi" ;
clivi:cell_methods = "time: mean (interval: 24 hours)" ;
clivi:cell_measures = "area: areacella" ;
clivi:missing_value = 1.e+20f ;
clivi:_FillValue = 1.e+20f ;
clivi:associated_files = "baseURL: http://www.combine-project.eu gridspecFile: gridspec_atmos_fx_CNRM-CM5-2_abrupt4xCO2_r0i0p0.nc areacella: areacella_fx_CNRM-CM5-2_abrupt4xCO2_r0i0p0.nc" ;

// global attributes:
:institution = "CNRM (Centre National de Recherches Meteorologiques, Meteo-France, Toulouse, France) and CERFACS (Centre Europeen de Recherches et de Formation Avancee en Calcul Scientifique, Toulouse, France)" ;
:institute_id = "CNRM-CERFACS" ;
:experiment_id = "abrupt4xCO2" ;
:source = "CNRM-CM5-2 2010 Atmosphere: ARPEGE-Climat (V5.2.3i, TL127L31); Ocean: NEMO (nemo3.2.v11.3, ORCA1degL42); Sea Ice: GELATO (V5.47f); River Routing: TRIP (v1); Land: SURFEX (v5.1.c); Coupler : OASIS 3" ;
:model_id = "CNRM-CM5-2" ;
:forcing = "GHG (only CO2 abrupt quadrupling)" ;
:parent_experiment_id = "piControl" ;
:parent_experiment_rip = "r1i1p1" ;
:branch_time = 0. ;
:contact = "
 contact.CMIP5@nullmeteo.fr
- METEO-FRANCE, CNRM/GMGEC/ASTER, CNRS URA 1357, 42 Av. Coriolis F-31057 TOULOUSE CEDEX 1" ;
:comment = "Soil layers depth scheme is specific for mrlsl and tsl - see variable-level comments. Experiment in-house ID is CAB4CO2." ;
:references = "This is an updated version of the model used for CMIP5 and described at http://www.cnrm.meteo.fr/cmip5 ; changes are : i) real salt and water fluxes between SeaIce and Ocean, ii) increased ice depth on permanent ice sheets to avoid complete melt under extreme global warming, iii) using a 2012 version of Szopa et al. prescribed aerosols and iv) solar forcing is no more the TIM-corrected one (i.e. values are around 1365 W/m**2) . A few variants of physics are used, please see the metadata field named comment. Comparing to physics #1 : physics #2 adds melt ponds; physics #3 uses 60 atmospheric levels instead of 31; physics #4 also, and adds a stratospheric chemical scheme ; physics #5 integrates biophysical coupling between phytoplankton and light penetration into the ocean as described in Lengaigne et al;, 2009" ;
:initialization_method = 1 ;
:physics_version = 1 ;
:tracking_id = "142be8a4-eca4-4d83-b685-8dcd75b53335" ;
:product = "output" ;
:experiment = "abrupt 4XCO2" ;
:frequency = "mon" ;
:creation_date = "2013-07-09T14:03:12Z" ;
:history = "2013-07-09T14:52:26Z CMOR rewrote data to comply with CF standards and CMIP5 requirements." ;
:Conventions = "CF-1.4" ;
:project_id = "CMIP5" ;
:table_id = "Table Amon (6 March 2013) fbb8361e0d0e0569f2915c439591f141" ;
:title = "CNRM-CM5-2 model output prepared for CMIP5 abrupt 4XCO2" ;
:parent_experiment = "pre-industrial control" ;
:modeling_realm = "atmos" ;
:realization = 1 ;
:cmor_version = "2.7.1" ;
}