The Pliocene Model Intercomparison Project Phase 2: Large-scale climate features and climate sensitivity

The Pliocene epoch has great potential to improve our understanding of the long-term climatic and environmental consequences of an atmospheric CO2 concentration near similar to 400 parts per million by volume. Here we present the large-scale features of Pliocene climate as simulated by a new ensemble of climate models of varying complexity and spatial resolution based on new reconstructions of boundary conditions (the Pliocene Model Intercomparison Project Phase 2; PlioMIP2). As a global annual average, modelled surface air temperatures increase by between 1.7 and 5.2 degrees C relative to the pre-industrial era with a multi-model mean value of 3.2 degrees C. Annual mean total precipitation rates increase by 7 % (range: 2 %-13 %). On average, surface air temperature (SAT) increases by 4.3 degrees C over land and 2.8 degrees C over the oceans. There is a clear pattern of polar amplification with warming polewards of 60 degrees N and 60 degrees S exceeding the global mean warming by a factor of 2.3. In the Atlantic and Pacific oceans, meridional temperature gradients are reduced, while tropical zonal gradients remain largely unchanged. There is a statistically significant relationship between a model's climate response associated with a doubling in CO2 (equilibrium climate sensitivity; ECS) and its simulated Pliocene surface temperature response. The mean ensemble Earth system response to a doubling of CO2 (including ice sheet feedbacks) is 67 % greater than ECS; this is larger than the increase of 47 % obtained from the PlioMIP1 ensemble. Proxy-derived estimates of Pliocene sea surface temperatures are used to assess model estimates of ECS and give an ECS range of 2.6-4.8 degrees C. This result is in general accord with the ECS range presented by previous Intergovernmental Panel on Climate Change (IPCC) Assessment Reports.

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Author Haywood, A. M.
Tindall, J. C.
Dowsett, H. J.
Dolan, A. M.
Foley, K. M.
Hunter, S. J.
Hill, D. J.
Chan, W.
Abe-Ouchi, A.
Stepanek, C.
Lohmann, G.
Chandan, D.
Peltier, W. R.
Tan, N.
Contoux, C.
Ramstein, G.
Li, X.
Zhang, Z.
Guo, C.
Nisancioglu, K. H.
Zhang, Q.
Li, Q.
Kamae, Y.
Chandler, M. A.
Sohl, L. E.
Otto-Bliesner, Bette
Feng, R.
Brady, Esther C.
von der Heydt, A. S.
Baatsen, M. L. J.
Lunt, D. J.
Publisher UCAR/NCAR - Library
Publication Date 2020-11-04T00:00:00
Digital Object Identifier (DOI) Not Assigned
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Resource Version N/A
Topic Category geoscientificInformation
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Metadata Date 2025-07-11T19:13:31.493697
Metadata Record Identifier edu.ucar.opensky::articles:23794
Metadata Language eng; USA
Suggested Citation Haywood, A. M., Tindall, J. C., Dowsett, H. J., Dolan, A. M., Foley, K. M., Hunter, S. J., Hill, D. J., Chan, W., Abe-Ouchi, A., Stepanek, C., Lohmann, G., Chandan, D., Peltier, W. R., Tan, N., Contoux, C., Ramstein, G., Li, X., Zhang, Z., Guo, C., Nisancioglu, K. H., Zhang, Q., Li, Q., Kamae, Y., Chandler, M. A., Sohl, L. E., Otto-Bliesner, Bette, Feng, R., Brady, Esther C., von der Heydt, A. S., Baatsen, M. L. J., Lunt, D. J.. (2020). The Pliocene Model Intercomparison Project Phase 2: Large-scale climate features and climate sensitivity. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d7nv9nkj. Accessed 31 July 2025.

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