Record-setting heavy precipitation occurrence in 2024

Precipitation extremes have increased globally in recent decades, consistent with a warming climate. We find that 2024 experienced a record-high frequency of heavy (≥99th percentile; F P≥99 ) precipitation events globally based on MSWEP (Multi-Source Weighted-Ensemble Precipitation) observations from 1979 to 2025. This extends a long-term trend of ∼0.03%/decade in F P≥99 , with similar but more uncertain increases for the 99.9th percentile. Unlike prior high F P≥99 years, 2024’s record was more globally distributed and emerged from a distinct seasonal evolution. El Niño and rare concurrent multi-basin tropical ocean warmth drove elevated extremes early in the year, before lagged global tropospheric responses and long-term warming sustained and amplified extremes through boreal summer. Climate models indicate that years with 2024-level F P≥99 typically require either stronger El Niño forcing or concurrent multi-basin sea surface temperature (SST) anomalies. Diagnostic projections within constrained ensemble members suggest that ∼40% of the 2024 anomaly aligns with global mean temperatures and ∼20% with El Niño variability, with some of the remainder linked to basin-scale SST structure.

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Publication Details

Journal
Science Advances
Published
2026-10-09
DOI
https://doi.org/10.1126/sciadv.aeb1692
Primary Topic
Climate variability and models
Type
article
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article

Record-setting heavy precipitation occurrence in 2024

Alex D. Hall, Chad W. Thackeray, Mark D. Zelinka, Stephen Po–Chedley et al.
Science Advances
Climate variability and models
article

Record-setting heavy precipitation occurrence in 2024

Alex D. Hall, Chad W. Thackeray, Mark D. Zelinka, Stephen Po–Chedley, Jesse Norris
article en

Abstract

Precipitation extremes have increased globally in recent decades, consistent with a warming climate. We find that 2024 experienced a record-high frequency of heavy (≥99th percentile; F P≥99 ) precipitation events globally based on MSWEP (Multi-Source Weighted-Ensemble Precipitation) observations from 1979 to 2025. This extends a long-term trend of ∼0.03%/decade in F P≥99 , with similar but more uncertain increases for the 99.9th percentile. Unlike prior high F P≥99 years, 2024’s record was more globally distributed and emerged from a distinct seasonal evolution. El Niño and rare concurrent multi-basin tropical ocean warmth drove elevated extremes early in the year, before lagged global tropospheric responses and long-term warming sustained and amplified extremes through boreal summer. Climate models indicate that years with 2024-level F P≥99 typically require either stronger El Niño forcing or concurrent multi-basin sea surface temperature (SST) anomalies. Diagnostic projections within constrained ensemble members suggest that ∼40% of the 2024 anomaly aligns with global mean temperatures and ∼20% with El Niño variability, with some of the remainder linked to basin-scale SST structure.

Science AdvancesVol. 12(41)
Lawrence Livermore National Laboratory (US), University of California, Los Angeles (US)
Openalex Percentile: Top 16%
Climate variability and models
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Record-setting heavy precipitation occurrence in 2024 — Alex D. Hall, Chad W. Thackeray, et al. · Science Advances (2026) | TGRS Research Map | TGRS