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于怀征, 刁秀广, 孟宪贵, 陆桂荣. 2020: 山东省一次罕见强对流天气的环境场及雷达特征分析. 暴雨灾害, 39(5): 477-486. DOI: 10.3969/j.issn.1004-9045.2020.05.006
引用本文: 于怀征, 刁秀广, 孟宪贵, 陆桂荣. 2020: 山东省一次罕见强对流天气的环境场及雷达特征分析. 暴雨灾害, 39(5): 477-486. DOI: 10.3969/j.issn.1004-9045.2020.05.006
YU Huaizheng, DIAO Xiuguang, MENG Xiangui, LU Guirong. 2020: Analysis of radar echo features and environmental backgrounds of a rare severe convective weather in Shandong province. Torrential Rain and Disasters, 39(5): 477-486. DOI: 10.3969/j.issn.1004-9045.2020.05.006
Citation: YU Huaizheng, DIAO Xiuguang, MENG Xiangui, LU Guirong. 2020: Analysis of radar echo features and environmental backgrounds of a rare severe convective weather in Shandong province. Torrential Rain and Disasters, 39(5): 477-486. DOI: 10.3969/j.issn.1004-9045.2020.05.006

山东省一次罕见强对流天气的环境场及雷达特征分析

Analysis of radar echo features and environmental backgrounds of a rare severe convective weather in Shandong province

  • 摘要: 利用多普勒天气雷达资料和常规观测资料以及区域自动站气象资料,分析了2019年8月16日山东省特大冰雹和雷雨大风强对流天气过程。结果表明:(1)此次强对流天气过程是在东北冷涡背景下由地面β中尺度辐合线、γ中尺度涡旋触发产生的。(2)中低层较大的温度垂直递减率、近地面层的逆温层、上干冷下暖湿、适宜的湿球温度0℃层和-20℃层高度是雷暴大风和大冰雹出现的典型特征。(3)β中尺度辐合线触发的对流单体不断发展、合并,形成单体之间排列较为松散的飑线,而γ中尺度涡旋附近个别单体发展成超级单体风暴。(4)诸城强冰雹的超级单体风暴具有有界弱回波区、三体散射、旁瓣回波、中气旋等特征。另外,风暴强度达到鼎盛后迅速减弱、强中心高度快速下降、风暴低层左后方出现强反射率因子区、风暴低层右前侧气旋性旋转强度加强、深厚持久的中气旋、风的垂直切变强,均是造成日照极端雷暴大风的影响因子。

     

    Abstract: Based on Doppler weather radar data, conventional observation data and regional automatic station meteorological data, the severe convective weather event causing severe hail and thunderstorm in Shandong Province on August 16, 2019 is analyzed. The results are as follows. (1) The strong convective weather event is triggered by the surface meso -β convergence line and meso -γ vortex under the background of northeast cold vortex. (2) The typical characteristics of thunderstorm and hail are large vertical temperature lapse rate in middle and low layer, inversion layer near surface, the dry and cold at top and warm and wet the bottom vertical stratification, and the suitable 0℃ and -20 ℃ wet bulb temperature layers'height. (3) The convective cells triggered by the meso -β convergence line developed and merged, forming squall lines with loose arrangement among them, while some cells near the meso -γ vortex developed into a supercell storm. (4) The super cell storm with strong hail in Zhucheng has the characteristics of bounded weak echo area, three body scattering, side lobe echo and mesocyclone. The characteristics of severe thunderstorms include the rapid weakening after reaching its peak, the rapid decline of strong center height, the emergence of strong reflectivity factor area in the left rear of storm low level, the strengthening of cyclonic rotation intensity in the right front side of the low level of storm, the deep and lasting mesocyclone, and the strong vertical shear of wind.

     

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