日本地球惑星科学連合2025年大会

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[E] 口頭発表

セッション記号 A (大気水圏科学) » A-CG 大気海洋・環境科学複合領域・一般

[A-CG36] 中緯度大気海洋相互作用

2025年5月26日(月) 15:30 〜 17:00 101 (幕張メッセ国際会議場)

コンビーナ:安藤 雄太(九州大学大学院理学研究院)、王 童(海洋研究開発機構)、田村 健太(国立研究開発法人防災科学技術研究所)、桂 将太(東北大学大学院理学研究科地球物理学専攻)、座長:田村 健太(国立研究開発法人防災科学技術研究所)、安藤 雄太(九州大学大学院理学研究院)


16:00 〜 16:15

[ACG36-15] Impact of Sea Surface Temperature Anomalies in the East China Sea and Western Subtropical Pacific on the August 2021 Northern Kyushu Heavy Precipitation

*万田 敦昌1、坂上 輝展1、野中 正見2、中村 尚3、飯塚 聡4、茂木 耕作2 (1.三重大学、2.海洋研究開発機構、3.東京大学、4.防災科研技術研究所)

キーワード:豪雨、対流、境界層

The effects of extratropical sea surface temperature (SST) heterogeneity on various atmospheric phenomena have received much attention recently. In this study, the effects of SST anomalies on heavy precipitation that occurred in northern Kyushu Island, Japan, in August 2021 are investigated with a convection–permitting regional atmospheric model. The mid–August SST anomalies are found to provide the following favorable conditions for the intense precipitation. Mesoscale cyclones and associated moisture fluxes intensified over a warm SST anomaly in the northern East China Sea (ECS). The vertical shear of horizontal winds also intensified over a pair of warm and cool SST anomalies in the eastern ECS. The SST anomaly in the western subtropical North Pacific affected static stability of the air parcels entering the precipitation area. The air parcels became more unstable even though they passed over the cool SST anomalies south of the precipitation area. This seemingly counterintuitive result can be explained by the stability of the atmospheric boundary layer (ABL) and the height of the air parcels. The less unstable ABL over the cool SST anomaly kept the air parcels at lower altitudes, and thus they tended to be more susceptible to the influence of heat fluxes from the sea surface and therefore becoming more unstable. The results of this study thus provide a new insight into the role of the complex SST distribution during heavy precipitation events in extratropics, suggesting the need for further studies to deepen our understanding of the atmospheric responses to the extratropical SST.