Dynamics of Two Episodes of High Winds Produced by an Unusually Long-Lived Quasi-Linear Convective System in South China
编号:718 稿件编号:345 访问权限:仅限参会人 更新:2025-04-03 09:32:09 浏览:92次 特邀报告

报告开始:2025年04月19日 14:15 (Asia/Shanghai)

报告时间:15min

所在会议:[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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摘要
Using radar observation and convection-permitting simulation, this work studies the storm-scale dynamics governing the generation of two episodes of high winds by an unusually long-lived quasi-linear convective system (QLCS) in South China on 21 April 2017. The first episode of high winds occurred at the apex of a bowing segment in the southern QLCS due to the downward transport of high momentum by a descending rear-inflow jet (RIJ). The RIJ was initially elevated which was generated as low-frequency gravity wave response to the thermal forcing in the QLCS leading convective line. It descended to the surface owing to the enhancement of low-level diabatic cooling which strengthened the downdrafts at the RIJ leading edge. The vertical momentum budget revealed that the downdrafts were initiated by the negative buoyancy of the cold pool and strengthened by the weakened buoyancy-induced upward pressure gradient force in the boundary layer and enhanced hydrometeor loading above. The second episode of high winds occurred in the decaying stage of the QLCS which, however, redeveloped as its northern part interacted with an intensifying large-scale shear line to the east. A zonal convective line developed along the shear line and finally merged with the QLCS. The merger greatly enhanced the low-level convergence, leading to the downward development of the line-end vortex via vertical stretching of vertical vorticity. The area of high winds was notably increased by the superposition of the ambient translational wind with the vortex rotational flow. The findings provide new insights into the generation of high winds by the QLCS-MCS merger, highlighting the importance of low-level vortices in addition to the RIJ.
 
关键字
Squall lines,Gravity waves,Convective storms,Numerical analysis,numerical modeling
报告人
徐昕
教授 Nanjing University

稿件作者
徐昕 Nanjing University
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