Dataset
CCMI-2022: refD2 data produced by the CCSR-NIES MIROC3.2 model at NIES
Abstract
This dataset contains model data for CCMI-2022 experiment refD2 produced by the CCSR-NIES MIROC3.2 model run by the modelling team at NIES (National Institute for Environmental Studies) in Japan.
The refD2 experiment is the baseline projection for updated projections of ozone recovery. Specified forcings largely following the same specifications as for the SSP2-4.5 scenario of the sixth phase of the Coupled Model Intercomparison Project (CMIP6), with the exception of the near-surface mixing ratio of Ozone Depleting Substances which follow the baseline projection from WMO (2018).
The CCMI-2022 Chemistry-climate model initiative is a set of model experiments focused on the stratosphere, with the goals of providing updated projections towards the future evolution of the ozone layer and improving our understanding of chemistry-climate interactions from models.
WMO-2018 refers to the Scientific Assessment of Ozone Depletion: 2018.
SSP2-4.5 is a Shared Socio-economic Pathway scenario that follows socio-economic storyline SSP2 with intermediate mitigation and adaptation challenges and climate forcing pathway RCP4.5 which leads to a radiative forcing of 4.5 Wm-2 by the year 2100.
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Sources of additional information
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The following web links are provided in the Details/Docs section of this catalogue record:
- Review of the global models used within phase 1 of the Chemistry-Climate Model Initiative (CCMI)
- A new set of Chemistry-Climate Model Initiative (CCMI) Community Simulations to Update the Assessment of Models and Support Upcoming Ozone Assessment Activities, David Plummer and Tatsuya Nagashima and Simone Tilmes and Alex Archibald and Gabriel Chiodo and Suvarna Fadnavis and Hella Garny and Beatrice Josse and Joowan Kim and Jean-Francois Lamarque and Olaf Morgenstern and Lee Murray and Clara Orbe and Amos Tai and Martyn Chipperfield and Bernd Funke and Martin Juckes and Doug Kinnison and Markus Kunze and Beiping Luo and Katja Matthes and Paul A. Newman and Charlotte Pascoe and Thomas Peter (2021), SPARC Newsletter, volume 57, pp 22-30
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: |
Restricted data: please submit an application using the REQUEST ACCESS link for access.
Use of these data is covered by the following licence(s): https://artefacts.ceda.ac.uk/licences/rugl_versions/rugl_v1-0.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 by scientists at the National Institute for Environmental Studies (NIES) and published by the Centre for Environmental Data Analysis (CEDA). |
Data Quality: |
Data are as given by the data provider, ceda-cc quality control has been performed by the Centre for Environmental Data Analysis (CEDA)
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File Format: |
net-CDF
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Related Documents
Process overview
Title | CCSR-NIES MIROC3.2 model deployed at NIES |
Abstract | CCSR-NIES MIROC3.2 model deployed at NIES |
Input Description | None |
Output Description | None |
Software Reference | None |
- units: K
- standard_name: air_temperature
- var_id: ta
- long_name: Air Temperature
- standard_name: mole_fraction_of_bromine_chloride_in_air
- long_name: BrCl Volume Mixing Ratio
- units: mol mol-1
- var_id: brcl
- var_id: bro
- standard_name: mole_fraction_of_bromine_monoxide_in_air
- long_name: BrO Volume Mixing Ratio
- units: mol mol-1
- standard_name: mole_fraction_of_halon1301_in_air
- units: mol mol-1
- long_name: CBrF3 Volume Mixing Ratio
- var_id: cbrf3
- units: day
- var_id: ccmi_day
- long_name: CCMI Day
- standard_name: actual_day
- units: hour
- var_id: ccmi_hour
- long_name: CCMI Hour
- standard_name: actual_hour
- units: minute
- long_name: CCMI Minute
- var_id: ccmi_minute
- standard_name: actual_minute
- units: month
- var_id: ccmi_month
- long_name: CCMI Month
- standard_name: actual_month
- var_id: ccmi_year
- units: year
- long_name: CCMI Year
- standard_name: actual_year
- standard_name: mole_fraction_of_cfc11_in_air
- long_name: CFCl3 Volume Mixing Ratio
- units: mol mol-1
- var_id: cfcl3
- standard_name: mole_fraction_of_methyl_bromide_in_air
- long_name: CH3Br Volume Mixing Ratio
- var_id: ch3br
- units: mol mol-1
- standard_name: mole_fraction_of_methyl_chloride_in_air
- long_name: CH3Cl Volume Mixing Ratio
- var_id: ch3cl
- units: mol mol-1
- units: mol mol-1
- long_name: CHBr3 Volume Mixing Ratio
- var_id: chbr3
- standard_name:
- long_name: CO Volume Mixing Ratio
- standard_name: mole_fraction_of_carbon_monoxide_in_air
- var_id: co
- units: mol mol-1
- standard_name: mole_fraction_of_chlorine_monoxide_in_air
- long_name: ClO Volume Mixing Ratio
- units: mol mol-1
- var_id: clo
- units: %
- standard_name: convective_cloud_area_fraction
- var_id: cltc
- long_name: Convective Cloud Cover Percentage
- units: m s-1
- standard_name: eastward_wind
- var_id: ua
- long_name: Eastward Wind
- units: m s-1
- standard_name: eastward_wind
- var_id: ua100
- long_name: Eastward Wind at 100hPa
- units: m s-1
- standard_name: eastward_wind
- long_name: Eastward Wind at 50hPa
- var_id: ua50
- units: m
- standard_name: geopotential_height
- long_name: Geopotential Height at 50hPa
- var_id: zg50
- standard_name: mole_fraction_of_hydrogen_bromide_in_air
- long_name: HBr Volume Mixing Ratio
- units: mol mol-1
- var_id: hbr
- long_name: HNO3 Volume Mixing Ratio
- standard_name: mole_fraction_of_nitric_acid_in_air
- units: mol mol-1
- var_id: hno3
- standard_name: mole_fraction_of_hydroperoxyl_radical_in_air
- long_name: HO2 Volume Mixing Ratio
- units: mol mol-1
- var_id: ho2
- standard_name: mole_fraction_of_hypochlorous_acid_in_air
- long_name: HOCl Volume Mixing Ratio
- units: mol mol-1
- var_id: hocl
- units: Pa
- standard_name: atmosphere_hybrid_sigma_pressure_coordinate
- var_id: lev
- long_name: Model Level
- units: Pa
- var_id: ap
- long_name: Model a coefficient
- standard_name: atmosphere_hybrid_sigma_coordinate
- units: 1
- var_id: b
- standard_name: atmosphere_hybrid_sigma_coordinate
- long_name: Model b coefficient
- standard_name: mole_fraction_of_methane_in_air
- long_name: Mole Fraction of CH4
- var_id: ch4
- units: mol mol-1
- standard_name: mole_fraction_of_ozone_in_air
- long_name: Mole Fraction of O3
- units: mol mol-1
- var_id: o3
- standard_name: mole_fraction_of_water_vapor_in_air
- var_id: h2o
- units: mol mol-1
- long_name: Mole Fraction of Water Vapor
- units: m s-1
- standard_name: northward_wind
- var_id: va
- long_name: Northward Wind
- units: m s-1
- standard_name: northward_wind
- var_id: va10
- long_name: Northward Wind at 10hPa
- units: Pa s-1
- standard_name: lagrangian_tendency_of_air_pressure
- var_id: wap
- long_name: Omega (=dp/dt)
- units: K
- var_id: theta
- long_name: Potential Vorticity on 480K
- standard_name: ertel_potential_vorticity
- units: Pa
- long_name: Pressure
- standard_name: air_pressure
- var_id: plev
- units: m-1
- long_name: Surface Area Density of Sulfate Aerosol
- var_id: sadsulf
- standard_name:
- units: Pa
- standard_name: surface_air_pressure
- var_id: ps
- long_name: Surface Pressure
- var_id: time1
- long_name: Time1
- standard_name: time1
- standard_name: mole_fraction_of_inorganic_chlorine_in_air
- units: mol mol-1
- long_name: Total Inorganic Chlorine Volume Mixing Ratio
- var_id: cly
- units: m s-1
- standard_name: upward_transformed_eulerian_mean_air_velocity
- var_id: wtem
- long_name: Transformed Eulerian Mean Upward Wind
- units: Pa
- long_name: Tropopause Air Pressure
- standard_name: tropopause_air_pressure
- var_id: ptp
Co-ordinate Variables
- units: 1
- var_id: bnds
- long_name: Boundaries
- standard_name: bnds
- units: degrees_north
- standard_name: latitude
- var_id: lat
- long_name: Latitude
- units: degrees_east
- standard_name: longitude
- var_id: lon
- long_name: Longitude
- standard_name: time
- var_id: time
- long_name: Time
- var_id: time_bnds
- long_name: Time Boundaries
- standard_name: time_bnds
Temporal Range
1960-01-01T00:00:00
2101-01-01T00:00:00
Geographic Extent
90.0000° |
||
-180.0000° |
180.0000° |
|
-90.0000° |