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Thermodynamic Versus Large-Scale Controls on Extreme Precipitation: Temporal Scale Dependence and Clausius-Clapeyron Scaling Redefined

Journal articles  - Journal Article
Andria, S; Borga, M; Marani, M
Published in: Geophysical Research Letters
November 16, 2025

Precipitation extremes are expected to intensify under climate warming, but substantial uncertainty remains in quantifying this intensification. A widely used approach, Clausius-Clapeyron (CC) scaling, is limited by an inexplicit definition of extremes and by its neglect of factors other than local temperature. We propose a framework using the Metastatistical Extreme Value Distribution that precisely defines the extremes being analyzed, and explores, through a large observational data set, their dependence on local thermodynamics and large-scale atmospheric circulation at different temporal scales. Our results show that thermodynamics predominantly controls changes in hourly precipitation extremes and that their rate of increase must necessarily depend on the return period, in contrast with CC-scaling arguments. On the contrary, daily precipitation is seen to be mostly controlled by large-scale circulation, in ways that cannot be captured by CC-based approaches. These findings clarify the physical mechanisms responsible for future changes in hydrologic extremes and possible methods to quantify them.

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Published In

Geophysical Research Letters

DOI

EISSN

1944-8007

ISSN

0094-8276

Publication Date

November 16, 2025

Volume

52

Issue

21

Related Subject Headings

  • Meteorology & Atmospheric Sciences
 

Citation

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Andria, S., Borga, M., & Marani, M. (2025). Thermodynamic Versus Large-Scale Controls on Extreme Precipitation: Temporal Scale Dependence and Clausius-Clapeyron Scaling Redefined. Geophysical Research Letters, 52(21). https://doi.org/10.1029/2025GL115204
Andria, S., M. Borga, and M. Marani. “Thermodynamic Versus Large-Scale Controls on Extreme Precipitation: Temporal Scale Dependence and Clausius-Clapeyron Scaling Redefined.” Geophysical Research Letters 52, no. 21 (November 16, 2025). https://doi.org/10.1029/2025GL115204.
Andria, S., et al. “Thermodynamic Versus Large-Scale Controls on Extreme Precipitation: Temporal Scale Dependence and Clausius-Clapeyron Scaling Redefined.” Geophysical Research Letters, vol. 52, no. 21, Nov. 2025. Scopus, doi:10.1029/2025GL115204.
Journal cover image

Published In

Geophysical Research Letters

DOI

EISSN

1944-8007

ISSN

0094-8276

Publication Date

November 16, 2025

Volume

52

Issue

21

Related Subject Headings

  • Meteorology & Atmospheric Sciences