Quantitative Analysis of Water Vapor Transport during Mei-yu Front Rainstorms Period over the Tibetan Plateau and Yangtze-Huai River Basin
编号:135 稿件编号:133 访问权限:公开 更新:2021-10-12 16:16:20 浏览:271次 口头报告

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摘要
There are continuous precipitation systems moving eastward from the Tibetan Plateau to the middle and lower reaches of the Yangtze-Huai River during Mei-yu period. We selected 20 typical Mei-yu front precipitation cases from 2010 to 2015 based on observational and reanalysis data and studied the characteristics of their environmental fields. We quantitatively analyzed the transport and sources of water vapor in the rainstorms using the Hybrid Single-Particle Lagrangian Integrated Trajectory (HYSPLIT_4.9) model. All 20 Mei-yu front precipitation cases occurred in a wide region from the Tibetan Plateau to the Yangtze-Huai River. The South Asian high and upper level jet stream both had strong intensities during the Mei-yu front rainstorm periods. Heavy rainfall mainly occurred in the divergence zone to the right of the high level jet and in the convergence zone of the low level jet, where strong vertical upward flows provided the dynamic conditions required for heavy rainfall. The water vapor mainly originated from the Indian Ocean and the Bay of Bengal–South China Sea. The 52% of the air masses over the western Tibetan Plateau originated from Central Asia, which was rich in water vapor. The water vapor contribution at the initial position was only 41.5% due to the dry, cold air mass over Eurasia, but increased to 47.6% at the final position. Over the eastern Tibetan Plateau to the Sichuan Basin region, 40% of the air parcels came from the Indian Ocean, which was the main channel for water vapor transport. For the middle and lower reaches of the Yangtze River 37% of the air parcels originated from the warm and humid Indian Ocean. The water vapor contribution at the initial position was 38.6%, but increased to 40.2% after long-distance transportation.
关键字
Mei-yu front rainstorm; water vapor transport; downstream of the Tibetan Plateau
报告人
杨浩
副研究员 中国气象局武汉暴雨研究所

稿件作者
杨浩 中国气象局武汉暴雨研究所
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