Reorganization of moisture transport underpins the leading modes of East Asian summer precipitation
编号:958 稿件编号:972 访问权限:仅限参会人 更新:2026-04-09 14:10:56 浏览:113次 口头报告

报告开始:2026年04月27日 11:40 (Asia/Shanghai)

报告时间:10min

所在会议:[S1-7] 专题1.7 大气环流与水汽来源:过去、现在和未来 » [F31] 专题1.7 大气环流与水汽来源:过去、现在和未来

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摘要
East Asian summer precipitation (EASP) alternates interannually mainly between a meridional tripole mode (with a wet Yangtze River basin and dry north/south) and a dipole mode (with a wet south and dry north). How associated moisture pathways reorganize remains poorly quantified from a Lagrangian perspective. We analyze moisture transport to East Asia during July–August 1961–2022 using the Hybrid Single-Particle Lagrangian Integrated Trajectory (HYSPLIT) model to trace backward air-parcel trajectories, categorizing pathways into four quadrants (SW, SE, NW, NE). Climatologically, the SW pathway dominates, supplying 48% of the total moisture. The positive tripole mode, driven by a southwestward-shifted western Pacific subtropical high (WPSH), reduces SE moisture by 25% while the other three paths strengthen. In the positive dipole mode, an eastward-retreating WPSH and prevalent northerlies boost NE moisture by 42% but reduce SE and NW by 14% and 7%. This pathway-resolved budget links circulation regimes to rainfall anomalies, advances understanding of EASP variability, and also provides an analogue for interpreting moisture‑sensitive paleoclimate records.
关键字
Precipitation variation,Moisture transport,Lagrangian analysis,East Asian summer precipitation
报告人
马雯澜
学生 中国地质大学(武汉)

稿件作者
马雯澜 中国地质大学(武汉)
刘博 成都信息工程大学
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