Tropical precipitation woes in the Community Earth System Model version 2

The newly developed paleo-climate calibrated Community Earth System Model, version 2 (pCESM2) simulates a more realistic global temperature response to external forcing compared to the standard CESM2. Here we show that the code modifications in pCESM2 result in increased atmospheric convection and a northward shift of the Atlantic and eastern Pacific Intertropical Convergence Zones. These changes are exacerbated under Last Glacial Maximum forcing, resulting in tropical precipitation changes that are inconsistent with both proxy data evidence and simulations with other contemporary models. Similar model-data disagreements are also present in the standard CESM2. Thus, more work is needed to improve the simulated Last Glacial Maximum hydroclimate response in CESM2. We further suggest that well-constrained paleo climates should be given a larger emphasis in model development more broadly, as these climates can help identify issues with model parameterizations under altered forcing and thus improve the fidelity of simulations of past, present, and future climates.

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Related Dataset #1 : Simulation data of the DECK, CMIP6 historical, and PMIP4 LGM simulations using the Paleoclimate-Calibrated CESM2

Related Dataset #2 : Assessment of equilibrium climate sensitivity of the Community Earth System Model version 2 through simulation of the Last Glacial Maximum

Related Dataset #3 : Global Precipitation Climatology Project (GPCP) Climate Data Record (CDR), Version 2.3 (Monthly)

Related Service #1 : Cheyenne: SGI ICE XA Cluster

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Author Lofverstrom, M.
Zhu, Jiang
Publisher UCAR/NCAR - Library
Publication Date 2023-11-16T00:00:00
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Metadata Date 2025-07-11T15:12:45.361830
Metadata Record Identifier edu.ucar.opensky::articles:26751
Metadata Language eng; USA
Suggested Citation Lofverstrom, M., Zhu, Jiang. (2023). Tropical precipitation woes in the Community Earth System Model version 2. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d7h9998m. Accessed 11 August 2025.

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