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Publication Date
15 September 2024

Changes in Four Decades of Near‐CONUS Tropical Cyclones in an Ensemble of 12 km Thermodynamic Global Warming Simulations

Authors

Author

We evaluate tropical cyclones (TCs) in a set of thermodynamic global warming (TGW) simulations over the continental United States (CONUS). A 12 km simulation forced by ERA5 provides a 40‐year historical (1980–2019) control. Four complimentary future scenarios are generated using thermodynamic deltas applied to lateral boundary, interior, and surface forcing. We curate a data set of 4,498 6‐hourly TC snapshots in the control and find a corresponding “twin” in each counterfactual, permitting a paired comparison. Warming results in an increase in mean dynamical TC intensity and moisture‐related quantities, with the latter being more pronounced. TC inner cores contract slightly but outer storm size remains unchanged. The frequency with which TCs become more intense is only moderately consistent, with snapshots having increased hazards ranging from 50% to 80% depending on warming level. The fractions of TCs undergoing rapid intensification and weakening both increase across all warming simulations, suggesting elevated short‐term intensity variability.

Zarzycki, Colin M., Tyrone Zhang, Andrew D. Jones, Deeksha Rastogi, Pouya Vahmani, and Paul A. Ullrich. 2024. “Changes In Four Decades Of Near‐Conus Tropical Cyclones In An Ensemble Of 12 Km Thermodynamic Global Warming Simulations”. Geophysical Research Letters 51 (18). American Geophysical Union (AGU). doi:10.1029/2024gl110535.
Funding Program Area(s)
Additional Resources:
NERSC (National Energy Research Scientific Computing Center)