Climate Futures for Tasmania: output on pressure levels of the 60 km resolution simulation of the Cubic Conformal Atmospheric Model (CCAM) over Tasmania, using the GFDL 2.0 model and the IPCC A2 scenario
Output of downscaling the GFDL 2.0 General Circulation Model (GCM) simulation with the A2 SRES emissions scenario using the Cubic Conformal Atmospheric Model (CCAM). The configuration of CCAM being used is a 64x64 cells per face, with the high resolution face centered over Australia. The model takes...
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Online Access: | https://researchdata.ands.org.au/climate-futures-tasmania-a2-scenario/15157 http://www.acecrc.org.au/Research/Climate%20Futures |
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ftands:oai:ands.org.au::15157 2023-05-15T18:25:36+02:00 Climate Futures for Tasmania: output on pressure levels of the 60 km resolution simulation of the Cubic Conformal Atmospheric Model (CCAM) over Tasmania, using the GFDL 2.0 model and the IPCC A2 scenario Dr Stuart Corney (hasCollector) Antarctic Climate and Ecosystems Cooperative Research Centre (isOwnedBy) Dr Michael Grose (isManagedBy) Spatial: northlimit=-5; southlimit=-65; westlimit=100; eastLimit=180; projection=WGS84 Temporal: From 1960-12-31 to 2100-12-31 https://researchdata.ands.org.au/climate-futures-tasmania-a2-scenario/15157 http://www.acecrc.org.au/Research/Climate%20Futures unknown Tasmanian Partnership for Advanced Computing https://researchdata.ands.org.au/climate-futures-tasmania-a2-scenario/15157 dl.tpac.org.au/ds/175 http://www.acecrc.org.au/Research/Climate%20Futures The intellectual property rights in the climate simulations belong to the Antarctic Climate & Ecosystems Cooperative Research Centre. The Antarctic Climate & Ecosystems Cooperative Research Centre grants to every person a permanent, irrevocable, free, Australia wide, non-exclusive licence (including a right of sub-licence) to use, reproduce, adapt and exploit the Intellectual Property Rights in the projections for any purpose, including a commercial purpose. http://dl.tpac.org.au Atmospheric Dynamics EARTH SCIENCES ATMOSPHERIC SCIENCES Climate Change Processes Surfacewater Hydrology PHYSICAL GEOGRAPHY AND ENVIRONMENTAL GEOSCIENCE Soil Physics ENVIRONMENTAL SCIENCES SOIL SCIENCES dataset ftands 2020-01-05T18:44:31Z Output of downscaling the GFDL 2.0 General Circulation Model (GCM) simulation with the A2 SRES emissions scenario using the Cubic Conformal Atmospheric Model (CCAM). The configuration of CCAM being used is a 64x64 cells per face, with the high resolution face centered over Australia. The model takes the sea surface temperatures output from the GFDL 2.0 GCM as boundary conditions into CCAM. This configuration provides an approximate resolution of 60km in the high resolution face. Output on pressure levels for a region covering the Australian continent, Tasman Sea and Southern Ocean. Data is output 6 hourly and includes all CCAM variables among which: air temperature, relative humidity, rainfall, runoff, soil moisture, cloud coverage, radiation, evaporation and wind speed. The modelling output covers the time period 01/01/1961 up to 31/12/2100. This model simulation was designed to allow downscaling to a high resolution (0.1 degree) version of CCAM centered over Tasmania. The GCM data used as forcing was downloaded from The Program for Climate Model Diagnosis and Intercomparison (PCMDI). Dataset Southern Ocean Research Data Australia (Australian National Data Service - ANDS) Southern Ocean ENVELOPE(100,180,-5,-65) |
institution |
Open Polar |
collection |
Research Data Australia (Australian National Data Service - ANDS) |
op_collection_id |
ftands |
language |
unknown |
topic |
Atmospheric Dynamics EARTH SCIENCES ATMOSPHERIC SCIENCES Climate Change Processes Surfacewater Hydrology PHYSICAL GEOGRAPHY AND ENVIRONMENTAL GEOSCIENCE Soil Physics ENVIRONMENTAL SCIENCES SOIL SCIENCES |
spellingShingle |
Atmospheric Dynamics EARTH SCIENCES ATMOSPHERIC SCIENCES Climate Change Processes Surfacewater Hydrology PHYSICAL GEOGRAPHY AND ENVIRONMENTAL GEOSCIENCE Soil Physics ENVIRONMENTAL SCIENCES SOIL SCIENCES Climate Futures for Tasmania: output on pressure levels of the 60 km resolution simulation of the Cubic Conformal Atmospheric Model (CCAM) over Tasmania, using the GFDL 2.0 model and the IPCC A2 scenario |
topic_facet |
Atmospheric Dynamics EARTH SCIENCES ATMOSPHERIC SCIENCES Climate Change Processes Surfacewater Hydrology PHYSICAL GEOGRAPHY AND ENVIRONMENTAL GEOSCIENCE Soil Physics ENVIRONMENTAL SCIENCES SOIL SCIENCES |
description |
Output of downscaling the GFDL 2.0 General Circulation Model (GCM) simulation with the A2 SRES emissions scenario using the Cubic Conformal Atmospheric Model (CCAM). The configuration of CCAM being used is a 64x64 cells per face, with the high resolution face centered over Australia. The model takes the sea surface temperatures output from the GFDL 2.0 GCM as boundary conditions into CCAM. This configuration provides an approximate resolution of 60km in the high resolution face. Output on pressure levels for a region covering the Australian continent, Tasman Sea and Southern Ocean. Data is output 6 hourly and includes all CCAM variables among which: air temperature, relative humidity, rainfall, runoff, soil moisture, cloud coverage, radiation, evaporation and wind speed. The modelling output covers the time period 01/01/1961 up to 31/12/2100. This model simulation was designed to allow downscaling to a high resolution (0.1 degree) version of CCAM centered over Tasmania. The GCM data used as forcing was downloaded from The Program for Climate Model Diagnosis and Intercomparison (PCMDI). |
author2 |
Dr Stuart Corney (hasCollector) Antarctic Climate and Ecosystems Cooperative Research Centre (isOwnedBy) Dr Michael Grose (isManagedBy) |
format |
Dataset |
title |
Climate Futures for Tasmania: output on pressure levels of the 60 km resolution simulation of the Cubic Conformal Atmospheric Model (CCAM) over Tasmania, using the GFDL 2.0 model and the IPCC A2 scenario |
title_short |
Climate Futures for Tasmania: output on pressure levels of the 60 km resolution simulation of the Cubic Conformal Atmospheric Model (CCAM) over Tasmania, using the GFDL 2.0 model and the IPCC A2 scenario |
title_full |
Climate Futures for Tasmania: output on pressure levels of the 60 km resolution simulation of the Cubic Conformal Atmospheric Model (CCAM) over Tasmania, using the GFDL 2.0 model and the IPCC A2 scenario |
title_fullStr |
Climate Futures for Tasmania: output on pressure levels of the 60 km resolution simulation of the Cubic Conformal Atmospheric Model (CCAM) over Tasmania, using the GFDL 2.0 model and the IPCC A2 scenario |
title_full_unstemmed |
Climate Futures for Tasmania: output on pressure levels of the 60 km resolution simulation of the Cubic Conformal Atmospheric Model (CCAM) over Tasmania, using the GFDL 2.0 model and the IPCC A2 scenario |
title_sort |
climate futures for tasmania: output on pressure levels of the 60 km resolution simulation of the cubic conformal atmospheric model (ccam) over tasmania, using the gfdl 2.0 model and the ipcc a2 scenario |
publisher |
Tasmanian Partnership for Advanced Computing |
url |
https://researchdata.ands.org.au/climate-futures-tasmania-a2-scenario/15157 http://www.acecrc.org.au/Research/Climate%20Futures |
op_coverage |
Spatial: northlimit=-5; southlimit=-65; westlimit=100; eastLimit=180; projection=WGS84 Temporal: From 1960-12-31 to 2100-12-31 |
long_lat |
ENVELOPE(100,180,-5,-65) |
geographic |
Southern Ocean |
geographic_facet |
Southern Ocean |
genre |
Southern Ocean |
genre_facet |
Southern Ocean |
op_source |
http://dl.tpac.org.au |
op_relation |
https://researchdata.ands.org.au/climate-futures-tasmania-a2-scenario/15157 dl.tpac.org.au/ds/175 http://www.acecrc.org.au/Research/Climate%20Futures |
op_rights |
The intellectual property rights in the climate simulations belong to the Antarctic Climate & Ecosystems Cooperative Research Centre. The Antarctic Climate & Ecosystems Cooperative Research Centre grants to every person a permanent, irrevocable, free, Australia wide, non-exclusive licence (including a right of sub-licence) to use, reproduce, adapt and exploit the Intellectual Property Rights in the projections for any purpose, including a commercial purpose. |
_version_ |
1766207153854480384 |