An Overview of CMIP5 and the Experiment Design
Обзор CMIP5 и разработки эксперимента
2011-10-07
SCID: 54.1/dgcy8fb6
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CMIP5Coupled Model Intercomparison ProjectEarth system modelsdecadal predictionsmultimodel dataset
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Abstract (AI)
The fifth phase of the Coupled Model Intercomparison Project (CMIP5) will produce a state-of-the- art multimodel dataset designed to advance our knowledge of climate variability and climate change. Researchers worldwide are analyzing the model output and will produce results likely to underlie the forthcoming Fifth Assessment Report by the Intergovernmental Panel on Climate Change. Unprecedented in scale and attracting interest from all major climate modeling groups, CMIP5 includes “long term” simulations of twentieth-century climate and projections for the twenty-first century and beyond. Conventional atmosphere–ocean global climate models and Earth system models of intermediate complexity are for the first time being joined by more recently developed Earth system models under an experiment design that allows both types of models to be compared to observations on an equal footing. Besides the longterm experiments, CMIP5 calls for an entirely new suite of “near term” simulations focusing on recent decades and the future to year 2035. These “decadal predictions” are initialized based on observations and will be used to explore the predictability of climate and to assess the forecast system's predictive skill. The CMIP5 experiment design also allows for participation of stand-alone atmospheric models and includes a variety of idealized experiments that will improve understanding of the range of model responses found in the more complex and realistic simulations. An exceptionally comprehensive set of model output is being collected and made freely available to researchers through an integrated but distributed data archive. For researchers unfamiliar with climate models, the limitations of the models and experiment design are described.
Key Findings
1
CMIP5 includes long-term twentieth-century simulations and twenty-first-century (and beyond) projections from conventional atmosphere–ocean GCMs, Earth system models of intermediate complexity, and newer Earth system models within a unified experiment design.
2
CMIP5 introduces a new suite of near-term (decadal) initialized predictions up to 2035 to study climate predictability and assess forecast skill.
3
CMIP5 will produce a large, state-of-the-art multimodel dataset to advance understanding of climate variability and change and inform the IPCC Fifth Assessment Report.
4
For the first time, newer Earth system models and intermediate-complexity models are compared to observations on an equal footing under the CMIP5 experiment design.
5
The project invites participation of stand-alone atmospheric models and a variety of idealized experiments, and provides an integrated distributed archive of comprehensive model output made freely available to researchers.
Research Object
The CMIP5 multimodel experiment dataset and experiment design (Coupled Model Intercomparison Project Phase 5)
Research Subject
Design, scope and components of the CMIP5 experiments and dataset including long-term twentieth/21st-century simulations, near-term decadal predictions, participation of different model types, idealized experiments, data archiving, and implications for climate variability/change assessment and predictability
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2011-10-07
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