A 256-year daily rainfall record reveals multiscale rainy-season variability and emerging hydroclimatic hazard over northern East Asia

Monsoon rainy seasons shape water supply and flood hazard across northern East Asia, but their long-term variability remains poorly understood because few daily rainfall records extend beyond the instrumental era. Here, we reconstruct rainy-season onset, retreat, and duration from a 256-year daily precipitation record for Seoul (1770–2025), providing an unusually long view of seasonal monsoon behavior. The reconstruction reveals structured quasi-decadal to multidecadal variability in rainy-season duration, indicating that recent rainy-season lengthening over northern East Asia is consistent with the latest positive excursion of a recurrent multidecadal modulation rather than a purely isolated modern anomaly. Coupled with warming-associated intensification of extreme rainfall, this prolonged-duration phase has elevated the compound-hazard probability, with recent probability peaks exceeding the long-term mean of ∼25% in Seoul. Exploratory near-term outlooks suggest that rainy-season duration in northern East Asia is likely to remain prolonged toward mid-century, sustaining heightened compound hydroclimatic hazard when seasonally extended overlaps with intensified event-scale rainfall.

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Publication Details

Journal
Science Advances
Published
2026-10-07
DOI
https://doi.org/10.1126/sciadv.aeh6716
Primary Topic
Climate variability and models
Type
article
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A 256-year daily rainfall record reveals multiscale rainy-season variability and emerging hydroclimatic hazard over northern East Asia

Wei Lin, Feng Shi, Yuqi Wang, Shiling Yang et al.
Science Advances
Climate variability and models
article

A 256-year daily rainfall record reveals multiscale rainy-season variability and emerging hydroclimatic hazard over northern East Asia

Wei Lin, Feng Shi, Yuqi Wang, Shiling Yang, Yong Wei, Zhonghua Yao
article en

Abstract

Monsoon rainy seasons shape water supply and flood hazard across northern East Asia, but their long-term variability remains poorly understood because few daily rainfall records extend beyond the instrumental era. Here, we reconstruct rainy-season onset, retreat, and duration from a 256-year daily precipitation record for Seoul (1770–2025), providing an unusually long view of seasonal monsoon behavior. The reconstruction reveals structured quasi-decadal to multidecadal variability in rainy-season duration, indicating that recent rainy-season lengthening over northern East Asia is consistent with the latest positive excursion of a recurrent multidecadal modulation rather than a purely isolated modern anomaly. Coupled with warming-associated intensification of extreme rainfall, this prolonged-duration phase has elevated the compound-hazard probability, with recent probability peaks exceeding the long-term mean of ∼25% in Seoul. Exploratory near-term outlooks suggest that rainy-season duration in northern East Asia is likely to remain prolonged toward mid-century, sustaining heightened compound hydroclimatic hazard when seasonally extended overlaps with intensified event-scale rainfall.

Science AdvancesVol. 12(41)
Planetary Science Institute (US), Chinese Academy of Sciences (CN), National Space Science Center (CN), Institute of Geology and Geophysics (CN), Space Engineering University (CN), University of Chinese Academy of Sciences (CN), University of Hong Kong (HK)
Openalex Percentile: Top 15%
Climate variability and models
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A 256-year daily rainfall record reveals multiscale rainy-season variability and emerging hydroclimatic hazard over northern East Asia — Wei Lin, Feng Shi, et al. · Science Advances (2026) | TGRS Research Map | TGRS