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Original Paper

Distinct East–West Distribution of Summer Precipitation over the Qinghai–Xizang Plateau in Relation to the Zonal Shear Line

School of Atmospheric Science, Nanjing University of Information Science & Technology, Nanjing 210044
State Key Laboratory of Severe Weather Meteorological Science and Technology (LaSW), Chinese Academy of Meteorological Sciences, China Meteorological Administration, Beijing 100081
China Meteorological Administration Training Centre, Beijing 100081
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Abstract

Summer precipitation over the Qinghai–Xizang Plateau (QXP) exhibits an uneven east–west distribution. The zo-nal shear line (ZSL) over the QXP is the primary synoptic system influencing summer precipitation, and it is the only synoptic system that can largely span the QXP from east to west, having obvious implications for the distribution of summer precipitation over the QXP. The proximity of the zonal distribution of precipitation to the ZSL and the rea-sons for this unique proximity deserve an in-depth investigation. Based on the fifth generation ECMWF Reanalysis (ERA5) hourly data in 1980–2019, 11 ZSL cases that caused heavy precipitation over the QXP were composited, and horizontal atmospheric motion was decomposed into rotational and divergent components to diagnose the atmosphe-ric dynamics responsible for the closeness of the precipitation and ZSL. The results demonstrate that obviously hea-vier precipitation lies in the eastern section of the ZSL (ZSLES, east of 88.5°E) than in the western section of the ZSL (ZSLWS, west of 88.5°E). At upper levels, both the anticyclonic circulation and divergent wind intensity are stronger in the ZSLES than in the ZSLWS, and a deeper convergence layer is present in the mid–lower troposphere of the ZSLES, resulting in upward air motion approximately twice the intensity of that in the ZSLWS. The net water vapor flux of the whole layer near the ZSLES is 7.7 times that near the ZSLWS, since water vapor is found to be transported mainly through the Yarlung Zangbo Grand Canyon and converge on the southern ZSLES. The stronger upward velocity lifts more water vapor near the ZSLES, resulting in notably greater precipitation than that observed in the ZSLWS.

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Journal of Meteorological Research
Pages 577-588

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Cite this article:
BAO X, YAO X, HUANG Y. Distinct East–West Distribution of Summer Precipitation over the Qinghai–Xizang Plateau in Relation to the Zonal Shear Line. Journal of Meteorological Research, 2026, 40(2): 577-588. https://doi.org/10.1007/s13351-026-5148-z

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Received: 10 June 2025
Revised: 10 July 2025
Accepted: 22 July 2025
Published: 18 April 2026
© The Chinese Meteorological Society 2026