Evaluating the simulation of CONUS precipitation by storm type in E3SM

Conventional low-resolution (LR) climate models, including the Energy Exascale Earth System Model (E3SMv1), have well-known biases in simulating the frequency, intensity, and timing of precipitation. Approaches to next-generation E3SM, whether the high-resolution (HR) or multiscale modeling framework (MMF) configuration, improve the simulation of the intensity and frequency of precipitation, but regional and seasonal deficiencies still exist. Here we apply a methodology to assess the contribution of tropical cyclones (TCs), extratropical cyclones (ETCs), and mesoscale convective systems (MCSs) to simulated precipitation in E3SMv1-HR and E3SMv1-MMF relative to E3SMv1-LR. Across the United States, E3SMv1-MMF provides the best simulation in terms of precipitation accumulation, frequency and intensity from MCSs and TCs compared to E3SMv1-LR and E3SMv1-HR. All E3SMv1 configurations overestimate precipitation amounts from and the frequency of ETCs over CONUS, with conventional E3SMv1-LR providing the best simulation compared to observations despite limitations in precipitation intensity within these events.

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Related Links

Related Dataset #1 : GPM IMERG Final Precipitation L3 Half Hourly 0.1 degree x 0.1 degree V06

Related Dataset #2 : CERES Level 3 SYN1deg-1Hour Terra-Aqua-MODIS HDF4 file - Edition 4A

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Copyright 2023 American Geophysical Union (AGU).


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Publisher UCAR/NCAR - Library
Publication Date 2023-06-28T00:00:00
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Metadata Date 2025-07-11T15:16:53.063054
Metadata Record Identifier edu.ucar.opensky::articles:26454
Metadata Language eng; USA
Suggested Citation . (2023). Evaluating the simulation of CONUS precipitation by storm type in E3SM. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d74f1vrf. Accessed 05 January 2026.

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