Scinovex
article Open AccessTop 1% cited

Causes of Higher Climate Sensitivity in CMIP6 Models

Geophysical Research Letters · 2020 · Vol. 47(1)
Mark D. ZelinkaTimothy A. MyersDaniel T. McCoyStephen Po–ChedleyPeter CaldwellPaulo CeppiStephen A. KleinKarl E. Taylor

Abstract

Abstract Equilibrium climate sensitivity, the global surface temperature response to CO doubling, has been persistently uncertain. Recent consensus places it likely within 1.5–4.5 K. Global climate models (GCMs), which attempt to represent all relevant physical processes, provide the most direct means of estimating climate sensitivity via CO quadrupling experiments. Here we show that the closely related effective climate sensitivity has increased substantially in Coupled Model Intercomparison Project phase 6 (CMIP6), with values spanning 1.8–5.6 K across 27 GCMs and exceeding 4.5 K in 10 of them. This (statistically insignificant) increase is primarily due to stronger positive cloud feedbacks from decreasing extratropical low cloud coverage and albedo. Both of these are tied to the physical representation of clouds which in CMIP6 models lead to weaker responses of extratropical low cloud cover and water content to unforced variations in surface temperature. Establishing the plausibility of these higher sensitivity models is imperative given their implied societal ramifications.

Climate variability and modelsAtmospheric and Environmental Gas DynamicsAtmospheric chemistry and aerosolsCoupled model intercomparison projectExtratropical cycloneClimate sensitivityClimatologyClimate modelCloud feedbackEnvironmental scienceCloud coverAlbedo (alchemy)Sensitivity (control systems)

Funding

  • U.S. Department of Energy
  • Imperial College London
  • European Commission
  • Office of Science
  • Laboratory Directed Research and Development
  • Lawrence Livermore National Laboratory
Citations
1,753
FWCI
117.38
field-weighted impact
References
82
Percentile
100%
vs. same field & year
Citations per year
References
Climate model genealogy: Generation CMIP5 and how we got there
Geophysical Research Letters · 2013 · 930 citations
A new method for diagnosing radiative forcing and climate sensitivity
Geophysical Research Letters · 2004 · 1,150 citations
An Overview of CMIP5 and the Experiment Design
Bulletin of the American Meteorological Society · 2011 · 14,669 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.