Climatology and trends of extreme precipitation in France: evaluation of an explicit-convection regional climate model

Climate change is intensifying the global water cycle, with extreme precipitation events increasing in frequency and intensity at the global scale. While trends in daily precipitation extremes are well-documented, sub-daily extremes – critical for flash flood risk – remain poorly characterized, due to limited long-term sub-daily observations. Convection-permitting models explicitly resolve deep convection and therefore offer the potential for a substantially improved representation of convective processes and short-duration precipitation extremes. This study evaluates the ability of the convection-permitting regional climate model AROME (2.5 km resolution, 1959–2022), forced by ERA5 reanalysis, to reproduce precipitation extremes and their trends, at daily and hourly scales, using a dense network of Météo-France stations. Using extreme value theory (GEV modeling), we analyze trends in 10-year return levels for both daily (1959–2022) and hourly (1990–2022) extremes. At the daily scale, AROME reproduces observed positive trends in southeastern France, consistent with previous studies. Hourly trends are more heterogeneous and less robust, with high spatial variability and low model-observation correlation. Overall, the results demonstrate the value of the explicit-convection model for studying extreme precipitation, while also highlighting its limitations for convective extremes.

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Publication Details

Journal
Hydrology and earth system sciences
Published
2026-09-16
DOI
https://doi.org/10.5194/hess-30-5833-2026
Primary Topic
Climate variability and models
Type
article
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article

Climatology and trends of extreme precipitation in France: evaluation of an explicit-convection regional climate model

Nicolas Decoopman, Juliette Blanchet, Antoine Blanc, Cécile Caillaud
Hydrology and earth system sciences
Climate variability and models
article

Climatology and trends of extreme precipitation in France: evaluation of an explicit-convection regional climate model

Nicolas Decoopman, Juliette Blanchet, Antoine Blanc, Cécile Caillaud
article en

Abstract

Climate change is intensifying the global water cycle, with extreme precipitation events increasing in frequency and intensity at the global scale. While trends in daily precipitation extremes are well-documented, sub-daily extremes – critical for flash flood risk – remain poorly characterized, due to limited long-term sub-daily observations. Convection-permitting models explicitly resolve deep convection and therefore offer the potential for a substantially improved representation of convective processes and short-duration precipitation extremes. This study evaluates the ability of the convection-permitting regional climate model AROME (2.5 km resolution, 1959–2022), forced by ERA5 reanalysis, to reproduce precipitation extremes and their trends, at daily and hourly scales, using a dense network of Météo-France stations. Using extreme value theory (GEV modeling), we analyze trends in 10-year return levels for both daily (1959–2022) and hourly (1990–2022) extremes. At the daily scale, AROME reproduces observed positive trends in southeastern France, consistent with previous studies. Hourly trends are more heterogeneous and less robust, with high spatial variability and low model-observation correlation. Overall, the results demonstrate the value of the explicit-convection model for studying extreme precipitation, while also highlighting its limitations for convective extremes.

Hydrology and earth system sciencesVol. 30(18)
Institut polytechnique de Grenoble (FR), Centre National de la Recherche Scientifique (FR), Université Stendhal – Grenoble 3 (FR), Centre National de Recherches Météorologiques (FR), Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement (FR), Centre National pour la Recherche Scientifique et Technique (CNRST) (MA), Laboratoire des Matériaux et du Génie Physique (FR), Laboratoire Interdisciplinaire de Physique (FR), Météo-France (FR), Institut des Géosciences de l'Environnement (FR), Institut de Recherche pour le Développement (FR), Université Grenoble Alpes (FR)
Climate action
Openalex Percentile: Top 14%
Climate variability and models
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