The formation and evolution mechanism of the boundary layer vortex east of the second-step terrain
ID:709 View Protection:ATTENDEE Updated Time:2025-04-03 09:30:02 Hits:488 Invited speech

Start Time:2025-04-19 14:45(Asia/Shanghai)

Duration:15min

Session:S1-13 专题1.13 中尺度涡旋与对流系统的发生演变及成灾机理 » S1-13专题1.13 中尺度涡旋与对流系统的发生演变及成灾机理

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Abstract
Mesoscale vortices in the boundary layer are characterized by short lifespans, small spatial scales, and difficulty in prediction, leading to their frequent oversight in operational forecasting. This oversight often results in lower accuracy for precipitation forecasting associated with these vortices. From April 2 to April 3 2023, a squall line event triggered by vortices extending from the lower troposphere to the boundary layer occurred across eastern Hubei to western Anhui. This event developed ahead of a shallow mid-tropospheric trough, while the lower levels were influenced by southwest flow. High-resolution numerical simulations successfully reproduced the evolution of the vortex and the organizational development of the squall line. Dynamic diagnosis revealed that the nocturnal boundary layer vortex (925 hPa) was initiated by the intensification of the nocturnal jet and the blocking effect of terrain. Subsequently, through vertical advection of horizontal vorticity from boundary layer to lower level, the vortex at the lower troposphere (850 hPa) developed and intensified. Later, under the combined influence of horizontal divergence and horizontal advection, the vortex rapidly strengthened, creating favorable convergence conditions for the squall line's development due to the northerly flow west of the vortex and the southwest flow south of it.
 
Keywords
Mesoscale vortex, Boundary layer, vorticity budget, Low-level jet
Speaker
张元春
副研究员 中国科学院大气物理研究所

Submission Author
张元春 中国科学院大气物理研究所
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    Apr 17

    2025

    to

    Apr 21

    2025

  • Apr 10 2025

    Draft paper submission deadline

  • Apr 28 2025

    Registration deadline

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中国科学院大气物理研究所
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中国科学院大气物理研究所
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