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Evolution of the total lightning activity in a leading-line and trailing stratiform mesoscale convective system over Beijing

机译:北京前部和尾部层状中尺度对流系统总闪电活动的演变

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Data from the Beijing SAFIR 3000 lightning detection system and Doppler radar provided some insights into the three-dimensional lightning structure and evolution of a leading-line and trailing-stratiform (LLTS) mesoscale convective system (MCS) over Beijing on 31 July 2007. Most of the lightning in the LLTS-MCS was intracloud (IC) lightning, while the mean ratio of positive cloud-to-ground (+CG) lightning to -CG lightning was 1:4, which was higher than the average value from previous studies. The majority of CG lightning occurred in the convective region of the radar echo, particularly at the leading edge of the front. Little IC lightning and little +CG lightning occurred in the stratiform region. The distribution of the CG lightning indicated that the storm had a tilted dipole structure given the wind shear or the tripole charge structure. During the storm’s development, most of the IC lightning occurred at an altitude of ∼9.5 km; the lightning rate reached its maximum at 10.5 km, the altitude of IC lightning in the mature stage of the storm. When the thunderstorm began to dissipate, the altitude of the IC lightning decreased gradually. The spatial distribution of lightning was well correlated with the rainfall on the ground, although the peak value of rainfall appeared 75 min later than the peak lightning rate.
机译:北京SAFIR 3000闪电探测系统和多普勒雷达的数据为2007年7月31日北京的三维闪电结构以及前,后层状中尺度对流系统(MCS)的演变提供了一些见识。 LLTS-MCS中的闪电中的闪电是云内(IC)闪电,而正云对地(+ CG)闪电与-CG闪电的平均比率为1:4,这比以前研究的平均值高。大部分CG闪电发生在雷达回波的对流区域,特别是在前缘的前沿。层状区域很少发生IC闪电,很少发生+ CG闪电。 CG闪电的分布表明,考虑到风切变或三极电荷结构,风暴具有倾斜的偶极结构。在暴风雨的发展过程中,大部分IC闪电发生在9.5公里左右的高度;雷电率达到10.5 km的最大值,这是风暴成熟阶段IC雷电的高度。当雷暴开始消散时,IC闪电的高度逐渐降低。闪电的空间分布与地面上的降雨有很好的相关性,尽管降雨的峰值比峰值闪电发生时间晚了75分钟。

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