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◆ Atmospheric Science Letters2026-05-01· Precipitation

Satellite‐Based Probable Maximum Precipitation Estimation and Spatiotemporal Analysis of Rainfall in Nepal Himalayas: Implications for Hydroclimatic Disaster Management

Sudip Pandey, Konduru Rakesh Teja, Shivaang Sinha, Ram Avtar

原始摘要(英文原文)· Original abstract
ABSTRACT Probable maximum precipitation (PMP) is crucial for water‐related disaster management, especially in regions like Nepal, where extreme weather poses significant risks. Despite its importance, PMP studies in Nepal remain limited. This study quantifies PMP using Hershfield's method, applied to daily precipitation data at 0.05° resolution from CHIRPS v2.0 (1992–2022), compared against in situ observations (correlation coefficient = 0.80, index of agreement = 0.68, RMSE = 4.56 mm). Intense rainfall (> 70 mm/day) is prevalent in central, eastern, and lower western Nepal from June to September, with an increasing trend in pre‐monsoon (March–May) rainfall, suggesting a potential shift toward an earlier monsoon onset. In contrast, post‐monsoon (October–November) rainfall is declining, particularly in western Nepal. The trend in extreme precipitation (total precipitation on heaviest 1% of days) shows a statistically significant increase of 16 mm/year ( p < 0.05) across the eastern and Churia range. In contrast, the western and northern regions experienced a significant decline of approximately 14 mm/year ( p < 0.05). PMP values peak at around 920 mm/day in certain grids over western Nepal and 540 mm/day in the central Himalayas and mid‐hills, highlighting serious hydrological risks such as floods, landslides, and dry spells. The findings underscore the urgency of improved early warning systems, resilient infrastructure, and adaptive climate policies.
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Satellite‐Based Probable Maximum Precipitation Estimation and Spatiotemporal Analysis of Rainfall in Nepal Himalayas: Implications for Hydroclimatic Disaster Management — 科研速览 Science Skim