Dataset
WCRP CMIP5: Beijing Climate Center (BCC) bcc-csm1-1 model output for the sstClimSulfate experiment
Abstract
WCRP CMIP5: Beijing Climate Center (BCC) bcc-csm1-1 model output for the sulfate aerosol forcing (sstClimSulfate) experiment. These data cover the following realms: atmos, land and landIce; at the following frequencies: day, mon and monClim. The runs included the ensemble member: r1i1p1.
The WCRP Coupled Model Intercomparison Project, Phase 5 (CMIP5), was a global climate model intercomparison project, coordinated by PCMDI (Program For Climate Model Diagnosis and Intercomparison) on behalf of the World Climate Research Program (WCRP) and provided input for the Intergovernmental Panel on Climate Change (IPCC) 5th Assessment Report (AR5).
Details
Previous Info: |
No news update for this record
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Previously used record identifiers: |
No related previous identifiers.
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Access rules: |
Access to these data is available to any registered CEDA user. Please Login or Register for a CEDA account to gain access.
Use of these data is covered by the following licence(s): https://artefacts.ceda.ac.uk/licences/specific_licences/cmip5_open.pdf When using these data you must cite them correctly using the citation given on the CEDA Data Catalogue record. |
Data lineage: |
Data were produced and verified by Beijing Climate Center (BCC) scientists before publication via the Earth Systems Grid Federation (ESGF) and a copy obtained by the Centre for Environmental Data Analysis (CEDA). |
Data Quality: |
Please see the linked documentation "CMIP5 Metadata Simulation Quality Control Report" for quality control assessment for this simulation.
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File Format: |
Data are netCDF formatted.
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Process overview
Title | Beijing Climate Center (BCC) running: experiment sstClimSulfate using the bcc-csm1-1 model. |
Abstract | Beijing Climate Center (BCC) running the sulfate aerosol forcing (sstClimSulfate) experiment using the bcc-csm1-1 model. See linked documentation for available information for each component. Please note the following are not recorded within the Earth System Documentation (ES-DOC) site : bcc-csm1-1 model and simulation details. |
Input Description | None |
Output Description | None |
Software Reference | None |
- units: kg m-2
- standard_name: atmosphere_cloud_condensed_water_content
- var_id: clwvi
- long_name: Condensed Water Path
- units: K
- standard_name: air_temperature
- var_id: tasmax
- long_name: Daily Maximum Near-Surface Air Temperature
- units: m s-1
- standard_name: eastward_wind
- var_id: ua
- long_name: Eastward Wind
- units: kg m-2 s-1
- standard_name: water_evaporation_flux
- long_name: Evaporation
- var_id: evspsbl
- units: kg m-2
- long_name: Liquid Water Content of Snow Layer
- standard_name: liquid_water_content_of_snow_layer
- var_id: lwsnl
- units: 1
- long_name: Mass Fraction of Cloud Ice
- standard_name: mass_fraction_of_cloud_ice_in_air
- var_id: cli
- units: 1e-9
- standard_name: mole_fraction_of_ozone_in_air
- var_id: tro3
- long_name: Mole Fraction of O3
- units: K
- standard_name: air_temperature
- var_id: tas
- long_name: Near-Surface Air Temperature
- units: W m-2
- standard_name: net_downward_radiative_flux_at_top_of_atmosphere_model
- var_id: rtmt
- long_name: Net Downward Flux at Top of Model
- units: m s-1
- standard_name: northward_wind
- var_id: va
- long_name: Northward Wind
- var_id: pr
- units: kg m-2 s-1
- standard_name: precipitation_flux
- long_name: Precipitation
- standard_name: relative_humidity
- units: %
- long_name: Relative Humidity
- var_id: hur
- units: Pa
- var_id: psl
- standard_name: air_pressure_at_sea_level
- long_name: Sea Level Pressure
- units: 1
- standard_name: specific_humidity
- var_id: hus
- long_name: Specific Humidity
- units: Pa
- standard_name: surface_air_pressure
- var_id: ps
- long_name: Surface Air Pressure
- units: Pa
- standard_name: surface_downward_eastward_stress
- var_id: tauu
- long_name: Surface Downward Eastward Wind Stress
- units: Pa
- standard_name: surface_downward_northward_stress
- var_id: tauv
- long_name: Surface Downward Northward Wind Stress
- units: kg m-2 s-1
- standard_name: surface_runoff_flux
- long_name: Surface Runoff
- var_id: mrros
- units: W m-2
- standard_name: toa_incoming_shortwave_flux
- var_id: rsdt
- long_name: TOA Incident Shortwave Radiation
- units: K
- standard_name: soil_temperature
- long_name: Temperature of Soil
- var_id: tsl
- units: kg m-2 s-1
- standard_name: transpiration_flux
- long_name: Transpiration
- var_id: tran
- units: kg m-2
- standard_name: moisture_content_of_soil_layer
- long_name: Water Content of Soil Layer
- var_id: mrlsl
- units: kg m-2 s-1
- standard_name: water_evaporation_flux_from_soil
- long_name: Water Evaporation from Soil
- var_id: evspsblsoi
- units: kg m-2
- standard_name: atmosphere_water_vapor_content
- var_id: prw
- long_name: Water Vapor Path
- units: 1
- standard_name: atmosphere_hybrid_sigma_pressure_coordinate
- var_id: lev_bnds
- var_id: climatology_bnds
- units: m
- var_id: depth
- standard_name: depth
- long_name: depth
- var_id: depth_bnds
- units: m
- standard_name: height
- var_id: height
- long_name: height
- units: 1
- standard_name: atmosphere_hybrid_sigma_pressure_coordinate
- long_name: hybrid sigma pressure coordinate
- var_id: lev
- var_id: lat_bnds
- var_id: lon_bnds
- units: Pa
- standard_name: air_pressure
- long_name: pressure
- var_id: plev
- var_id: time_bnds
- long_name: vertical coordinate formula term: a(k)
- var_id: a
- long_name: vertical coordinate formula term: a(k+1/2)
- var_id: a_bnds
- long_name: vertical coordinate formula term: b(k)
- var_id: b
- long_name: vertical coordinate formula term: b(k+1/2)
- var_id: b_bnds
- units: Pa
- var_id: p0
- long_name: vertical coordinate formula term: reference pressure
Co-ordinate Variables
- units: degrees_north
- standard_name: latitude
- long_name: latitude
- var_id: lat
- units: degrees_east
- standard_name: longitude
- long_name: longitude
- var_id: lon
- long_name: time
- standard_name: time
- var_id: time
Temporal Range
0001-01-01T12:01:15
0030-12-31T12:01:15
Geographic Extent
90.0000° |
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-180.0000° |
180.0000° |
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-90.0000° |