Dataset
UTLS-Ozone SLIMCAT: Leeds University three-dimensional chemistry transport model (CTM) measurements Version 2
Abstract
The SLIMCAT Reference Atmosphere for UTLS-Ozone was a set of example output from the SLIMCAT three-dimensional chemical transport model (CTM). It includes three-dimensional global fields of chemical (and sometimes meteorological) variables as computed for twelve dates in 1997, near the middle of each month.
This data set includes 12 files, each of them corresponding to one output time near the middle of each month of Year 1997 (12 Jan, 11 Feb, 13 Mar, 12 Apr, 12 May, 11 Jun, 11 Jul, 10 Aug, 19 Sept, 19 Oct, 18 Nov, 18 Dec). Each file contains the calculated 3-D distribution of 37 chemical species or families and 6 meteorological variables. The model used is the SLIMCAT chemistry transport model (CTM). The model was run from October 1991 and forced by the UK Met Office analyses. The model used 18 isentropic levels. The vertical coordinate in the data files is the globally averaged altitude. The real lat/lon-dependent altitude is given in the ALT field recorded in the files. The THETA field gives the real model theta levels (which are constant with latitude/longitude).
Data from Martyn Chipperfield, University of Leeds. NERC Research Programme UTLS-Ozone (Upper Troposphere and Lower Stratosphere) and National Centre for Earth Observation (NCEO).
Details
| Previous Info: |
No news update for this record
|
|---|---|
| Previously used record identifiers: |
No related previous identifiers.
|
| Access rules: |
Public data: access to these data is available to both registered and non-registered users.
Use of these data is covered by the following licence(s): http://www.nationalarchives.gov.uk/doc/open-government-licence/version/3/ When using these data you must cite them correctly using the citation given on the CEDA Data Catalogue record. |
| Data lineage: |
New version of data created November 2009 to include parameter names and units in NetCDF files. |
| Data Quality: |
unknown
|
| File Format: |
Data are netCDF formatted
|
Process overview
| Title | SLIMCAT model deployed on Leeds computer |
| Abstract | SLIMCAT (and related TOMCAT) is a global three-dimensional (3-D) off-line chemical transport model (CTM) which is developed and maintained at the University of Leeds. The model uses winds and temperatures from meteorological analyses (e.g. from the European Centre for Medium-Range Weather Forecasts) to specify the atmospheric transport and temperatures. The distinctive feature about SLIMCAT is that vertical motion in isentropic coordinates is determined by calculated heating rates. The model then calculates the chemical composition of the upper troposphere and stratosphere based on the chemical scheme and inputs such as solar fluxes and trace gas emissions. The model has the option of detailed chemical scheme(s) for the stratosphere and troposphere. The model can be used to simulate the past and current atmosphere, to help interpret observations, and to diagnose the extent of environmental issues such as stratospheric ozone depletion or tropospheric pollution. INVICAT, the inverse version of TOMCAT, is used to derive surface emission fluxes. TCOM data products use machine learning to combine TOMCAT output and satellite observations. A number of datasets on CEDA have been produced with the SLIMCAT model (and related TOMCAT, INVICAT, TCOM). Further details of the specific model set-up are provided in dataset descriptions. |
| Input Description | None |
| Output Description | None |
| Software Reference | None |
- units: km
- var_id: Alt
- long_name: Altitude
- long_name: Cl
- alt_names: ['Clorine']
- names: Clorine
- units: kilometres
- var_id: NIV
- long_name: Globally Averaged Altitude
- var_id: Heat
- units: K day-1
- long_name: Heat
- units: degrees_north
- long_name: Latitude
- var_id: LAT
- units: degrees_east
- long_name: Longitude
- var_id: LON
- units: K
- var_id: Theta
- long_name: Potential Temperature
- var_id: PV
- units: 1E6 K m2 kg-1 s-1
- long_name: Potential Vorticity
- units: Pa
- long_name: Pressure
- var_id: Pres
- units: K
- var_id: Temp
- long_name: Temperature
- long_name: Time
- var_id: TIM
- units: hours
- units: 1
- var_id: Br
- long_name: Volume Mixing Ratio of Br
- units: 1
- var_id: BrCl
- long_name: Volume Mixing Ratio of BrCl
- units: 1
- var_id: BrO
- long_name: Volume Mixing Ratio of BrO
- units: 1
- var_id: BrONO2
- long_name: Volume Mixing Ratio of BrONO2
- units: 1
- var_id: Bry
- long_name: Volume Mixing Ratio of Bry (Br+BrO+HBr+BrONO2+BrCl)
- units: 1
- var_id: CH2O
- long_name: Volume Mixing Ratio of CH2O
- units: 1
- var_id: CH3OOH
- long_name: Volume Mixing Ratio of CH3OOH
- units: 1
- var_id: CH4
- long_name: Volume Mixing Ratio of CH4
- units: 1
- var_id: CO
- long_name: Volume Mixing Ratio of CO
- units: 1
- var_id: Cl
- long_name: Volume Mixing Ratio of Cl
- units: 1
- var_id: Cl2O2
- long_name: Volume Mixing Ratio of Cl2O2
- units: 1
- var_id: ClO
- long_name: Volume Mixing Ratio of ClO
- units: 1
- var_id: ClONO2
- long_name: Volume Mixing Ratio of ClONO2
- units: 1
- var_id: ClOx
- long_name: Volume Mixing Ratio of ClOx (Cl+ClO+2Cl2O2)
- units: 1
- var_id: Cly
- long_name: Volume Mixing Ratio of Cly (ClOx+HCl+ClONO2+HOCl+OClO)
- units: 1
- var_id: H
- long_name: Volume Mixing Ratio of H
- units: 1
- var_id: H2O
- long_name: Volume Mixing Ratio of H2O
- units: 1
- var_id: H2O2
- long_name: Volume Mixing Ratio of H2O2
- units: 1
- var_id: HBr
- long_name: Volume Mixing Ratio of HBr
- units: 1
- var_id: HCl
- long_name: Volume Mixing Ratio of HCl
- units: 1
- var_id: HNO3
- long_name: Volume Mixing Ratio of HNO3
- units: 1
- var_id: HNO4
- long_name: Volume Mixing Ratio of HNO4
- units: 1
- var_id: HO2
- long_name: Volume Mixing Ratio of HO2
- units: 1
- var_id: HOBr
- long_name: Volume Mixing Ratio of HOBr
- units: 1
- var_id: HOCl
- long_name: Volume Mixing Ratio of HOCl
- units: 1
- var_id: N
- long_name: Volume Mixing Ratio of N
- units: 1
- var_id: N2O
- long_name: Volume Mixing Ratio of N2O
- units: 1
- var_id: N2O5
- long_name: Volume Mixing Ratio of N2O5
- units: 1
- var_id: NO
- long_name: Volume Mixing Ratio of NO
- units: 1
- var_id: NO2
- long_name: Volume Mixing Ratio of NO2
- units: 1
- var_id: NO3
- long_name: Volume Mixing Ratio of NO3
- units: 1
- var_id: NOy
- long_name: Volume Mixing Ratio of NOy (N+NO+NO2+NO3+HNO3+N2O5+ClONO2+BrONO2+HNO4)
- units: 1
- var_id: O1D
- long_name: Volume Mixing Ratio of O(1D)
- units: 1
- var_id: O3P
- long_name: Volume Mixing Ratio of O(3P)
- units: 1
- var_id: O3
- long_name: Volume Mixing Ratio of O3
- units: 1
- var_id: OClO
- long_name: Volume Mixing Ratio of OClO
- units: 1
- var_id: OH
- long_name: Volume Mixing Ratio of OH
Co-ordinate Variables
Temporal Range
1997-01-01T00:00:00
1997-12-31T00:00:00
Geographic Extent
87.5000° |
||
-180.0000° |
180.0000° |
|
-87.5000° |