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Climate model genealogy: Generation CMIP5 and how we got there

Geophysical Research Letters · 2013 · Vol. 40(6) · pp. 1194–1199
Reto KnuttiDavid MassonAndrew Gettelman

Abstract

Abstract A new ensemble of climate models is becoming available and provides the basis for climate change projections. Here, we show a first analysis indicating that the models in the new ensemble agree better with observations than those in older ones and that the poorest models have been eliminated. Most models are strongly tied to their predecessors, and some also exchange ideas and code with other models, thus supporting an earlier hypothesis that the models in the new ensemble are neither independent of each other nor independent of the earlier generation. On the basis of one atmosphere model, we show how statistical methods can identify similarities between model versions and complement process understanding in characterizing how and why a model has changed. We argue that the interdependence of models complicates the interpretation of multimodel ensembles but largely goes unnoticed.

Climate variability and modelsMeteorological Phenomena and SimulationsAtmospheric and Environmental Gas DynamicsComplement (music)Climate modelInterpretation (philosophy)Basis (linear algebra)Climate changeClimatologyEconometricsComputer scienceStatistical physicsMathematics
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References
Robustness and uncertainties in the new CMIP5 climate model projections
Nature Climate Change · 2012 · 1,567 citations
Challenges in Combining Projections from Multiple Climate Models
Journal of Climate · 2009 · 1,244 citations
An Overview of CMIP5 and the Experiment Design
Bulletin of the American Meteorological Society · 2011 · 14,669 citations
How Well Do Coupled Models Simulate Today's Climate?
Bulletin of the American Meteorological Society · 2008 · 921 citations
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