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2018年8月深圳一次连续暴雨过程初步分析 被引量:1
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作者 王蕊 郑群峰 +4 位作者 赵春阳 陈元昭 林良勋 江崟 陈潜 《广东气象》 2020年第2期22-26,共5页
利用NCEP FNL 1°×1°再分析资料、自动气象站数据和风廓线雷达等资料,对2018年8月28日至31日由季风低压造成的深圳连续暴雨过程进行了初步分析。结果表明:连续暴雨期间,南亚高压稳定少动,西北太平洋副热带高压呈双脊型并... 利用NCEP FNL 1°×1°再分析资料、自动气象站数据和风廓线雷达等资料,对2018年8月28日至31日由季风低压造成的深圳连续暴雨过程进行了初步分析。结果表明:连续暴雨期间,南亚高压稳定少动,西北太平洋副热带高压呈双脊型并缓慢西伸,北脊阻挡西南季风北上,使得季风低压在双脊之间缓慢西移并发展加强,为持续暴雨发生提供了必要的大尺度环流条件。强盛时期的季风低压垂直伸展范围约8~9 km,直至对流层中层,与副高之间气压梯度加大,导致低空急流加强并向下传播,深厚的急流区为暴雨提供充足的水汽和能量。低空急流的向下传播时间早于短时强降水发生0.5~1 h。925 hPa及其以下的对流层底层风场呈气旋式辐合,是重要的抬升触发条件。而1 km以下风场由西南风转为偏南风,在地形抬升作用下加速上升运动,最大垂直上升速度达0.5 Pa/s,地形对降水具有显著的增幅作用。 展开更多
关键词 天气学 季风低压 连续暴雨 低空急流 深圳
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Synoptic Characteristics Related to Warm-Sector Torrential Rainfall Events in South China During the Annually First Rainy Season 被引量:4
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作者 WU Ya-li GAO Yu-dong +3 位作者 CHEN De-hui MENG Wei-guang lin liang-xun lin Wen-shi 《Journal of Tropical Meteorology》 SCIE 2020年第3期253-260,共8页
Warm-sector torrential rainfall(WSTR)events that occur in the annually first rainy season in south China are characterized by high rainfall intensity and low radar echo centroids.To understand the synoptic characteris... Warm-sector torrential rainfall(WSTR)events that occur in the annually first rainy season in south China are characterized by high rainfall intensity and low radar echo centroids.To understand the synoptic characteristics related to these features,16 WSTR events that occurred in 2013-2017 were examined with another 16 squall line(SL)events occurred during the same period as references.Composite analysis derived from ERA-Interim reanalysis data indicated the importance of the deep layer of warm and moist air for WSTR events.The most significant difference between WSTR and SL events lies in their low-level convergence and lifting;for WSTR events,the low-level convergence and lifting is much shallower with comparable or stronger intensity.The trumpet-shaped topography to the north of the WSTR centers is favorable for the development of such shallow convergences in WSTR events.Results in this study will provide references for future studies to improve the predictability of WSTR. 展开更多
关键词 warm-sector torrential rainfall vertical cross section low-echo centroid shallow convergence trumpetshaped topography
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