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February 8, 2026SOLA0 citationsOpen Access

Morning Peak of Meiyu/Baiu Rainfall Over the East China Sea and Western Japan

HFHatsuki FujinamiHKH. KanamoriHTHiroshi G. Takahashi

Key Points

  • The study aims to analyze the diurnal cycle of rainfall during the Meiyu/Baiu season in the East China Sea and Western Japan.
  • Utilized long-term satellite-derived precipitation data from 1998 to 2024.
  • Incorporated spaceborne precipitation radar data with high spatiotemporal resolution.
  • Analyzed rainfall intensity and frequency within the Meiyu/Baiu rainband.
  • Rainfall peaks occur from dawn to noon in the affected regions.
  • Higher rainfall intensity and frequency are noted with high convective-type rainfall.
  • Water vapor flux convergence is identified as a key driver of morning rainfall peaks.

Abstract

Abstract Long-term (1998–2024) satellite-derived precipitation and spaceborne precipitation radar data with high spatiotemporal resolution indicate that the region from the eastern East China Sea (ECS) to Kyushu during the Meiyu/Baiu season (June–July) is one of the areas in East Asia where the diurnal precipitation cycle is most apparent. This area experiences higher rainfall intensity and higher rainfall frequency with exceptionally high convective-type rainfall within the Meiyu/Baiu rainband, leading to the highest rainfall totals over East Asia during the season. The maximum (minimum) rainfall in the rainband north of ~ 30°N, extending from the ECS/Kyushu to the Pacific Ocean, occurs during dawn to noon (evening–midnight). The diurnal cycle and convergence of water vapor flux are the main factors driving the diurnal cycle of precipitation. From midnight to dawn, the anomalous southwesterly water vapor flux with clockwise rotation enhances the total southwesterly water vapor flux, which reaches its maximum around the ECS/Kyushu. Subsequently, water vapor flux convergence increases, resulting in the rainfall peak during the morning. We discussed possible mechanisms for the diurnal cycle in water vapor flux around the ECS/Kyushu, focusing on inertial oscillation driven by terrestrial atmospheric boundary layer processes and land–sea thermal contrast.

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Cite This Study

Fujinami et al. (2026) studied this question.

synapsesocial.com/papers/6988290a0fc35cd7a8849137https://doi.org/10.1007/s44393-025-00008-6
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Role of Kuroshio Warming in Intensifying the Mei-yu-baiu Rainband: A Quantitative Study2025
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  3. 3New characteristics of Meiyu precipitation changes in the middle and lower reaches of the Yangtze River since 20002024 · 2 citations
  4. 4The influence of Lu Mountains‐Huang Mountains topography on the formation of extreme precipitation events during the 2020 “super” Meiyu season2026
  5. 5Analysis and comparison of water vapor transport features and circulation anomalies during the super-strong Meiyu period of 2020 and 1998*2024 · 3 citations