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Observation of a Severe Wind Case Caused by Gust Front and Its Boundary Layer Structures Characteristics

机译:观察由阵风前部及其边界层结构特征引起的严重风箱

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Based on Doppler radar 3D-composited reflectivity, wind profiler radar, boundary layer Tianjin tower of 255m as well as intensified automatic surface observation data, the evolution of the boundary layer associated with two successive gust front processes in the evening of 10 June 2016 and the intensity of the related disastrous surface high wind were analyzed. The results shown as follows: (1) To the same storm cell, the wind intensity caused by the outflow boundary in the main body was stronger than the wind caused by the gust front. The intensity of the disastrous high wind was related to the maximum descending velocity in the boundary layer and the associated height. The stronger the maximum descending velocity and the lower the level, the stronger the disastrous high wind was. (2) The tower data indicated, as the approaching of the gust front, convergence fluctuations first emerged at low(20m) and middle(120m) levels of the tower, leading the emergence of disastrous high wind by 8 minutes. When the gust front passed over, the maximum variations of cooling and the wind velocity were in pace with each other.
机译:基于多普勒雷达3D - 复合反射率,风分析仪雷达,边界层天津塔255米以及加强的自动表面观察数据,边界层的演变与两次连续前进过程与2016年6月10日晚上和分析了相关灾难性表面高风的强度。结果如下所示:(1)到相同的风暴电池,主体流出边界引起的风强度比阵风前方引起的风力强。灾难性高风的强度与边界层和相关高度中的最大下降速度有关。最大下降速度越强,水平越低,灾难性的高风越强。 (2)塔数据指示,作为阵风前线的接近,塔的低(20米)和中间(120米)水平的收敛波动,导致灾难性高风的出现8分钟。当阵风前面过来时,冷却的最大变化和风速彼此均匀。

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