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Context for interpreting equilibrium climate sensitivity and transient climate response from the CMIP6 Earth system models

Science Advances · 2020 · Vol. 6(26) · pp. eaba1981–eaba1981
Gerald A. MeehlC. A. SeniorVeronika EyringGregory M. FlatoJean‐François LamarqueRonald J. StoufferKarl E. TaylorManuel Schlund

Abstract

For the current generation of earth system models participating in the Coupled Model Intercomparison Project Phase 6 (CMIP6), the range of equilibrium climate sensitivity (ECS, a hypothetical value of global warming at equilibrium for a doubling of CO<sub>2</sub>) is 1.8°C to 5.6°C, the largest of any generation of models dating to the 1990s. Meanwhile, the range of transient climate response (TCR, the surface temperature warming around the time of CO<sub>2</sub> doubling in a 1% per year CO<sub>2</sub> increase simulation) for the CMIP6 models of 1.7°C (1.3°C to 3.0°C) is only slightly larger than for the CMIP3 and CMIP5 models. Here we review and synthesize the latest developments in ECS and TCR values in CMIP, compile possible reasons for the current values as supplied by the modeling groups, and highlight future directions. Cloud feedbacks and cloud-aerosol interactions are the most likely contributors to the high values and increased range of ECS in CMIP6.

Climate variability and modelsMeteorological Phenomena and SimulationsAtmospheric and Environmental Gas DynamicsContext (archaeology)Earth system scienceClimate sensitivityClimate changeSensitivity (control systems)Transient (computer programming)Environmental scienceClimatologyClimate modelAtmospheric sciences

Funding

  • National Science Foundation
  • U.S. Department of Energy
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