首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Evolution of lightning and the possible initiation//triggering of lightning discharges by the lower positive charge center in an isolated thundercloud in the tropics - art. no. D02205
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Evolution of lightning and the possible initiation//triggering of lightning discharges by the lower positive charge center in an isolated thundercloud in the tropics - art. no. D02205

机译:热带地区孤立的雷云中较低的正电荷中心的闪电演化和可能的闪电放电引发/触发-艺术。没有。 D02205

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摘要

The evolution of lightning and the shape of recovery curves after multiple-discharge flashes in a thundercloud have been studied from the surface measurements of electric field and Maxwell current near a tropical thundercloud. Observations suggest a tripole structure of the cloud and that its lower positive charge center (LPCC) plays a dominant role in initiating/triggering an intracloud (IC) or cloud-to-ground (CG) lightning discharge. IC discharges in the initial stage of thundercloud are followed by CG discharges from the LPCC and then by two distinct groups of multiple-discharge flashes. Each flash in the first group consists of an IC discharge triggered by a CG discharge and in the second group a CG discharge triggered by an IC discharge. Flashes in each group are bunched together for similar to15-20 min and occur with almost a regular periodicity of 1-1.5 min. The Maxwell current during every such flash in both groups has a bipolar transient and a positive overshoot that subsequently relaxes back to its predischarge value. The magnitudes of overshoot for the flashes in the first group are found to be much lower than those for the flashes in the second group. From a small portion of the recovery curves of such multiple-discharge flashes, one can conclude that the rate of charge buildup in the main negative charge center is higher than that in the LPCC. [References: 49]
机译:通过对热带雷云附近电场和麦克斯韦电流的表面测量,研究了雷云中多次放电后闪电的演化和恢复曲线的形状。观察结果表明云的三极结构,其较低的正电荷中心(LPCC)在引发/触发云内(IC)或云对地(CG)闪电放电中起主要作用。雷云初始阶段的IC放电,接着是LPCC的CG放电,然后是两组不同的多次放电闪光。第一组中的每个闪光由CG放电触发的IC放电组成,第二组中的IC放电触发的CG放电组成。每组中的闪光聚集在一起的时间大约为15-20分钟,并且几乎以1-1.5分钟的规则周期发生。两组中每次这样的闪光期间的麦克斯韦电流都有一个双极性瞬态和一个正过冲,随后会恢复到其预放电值。发现第一组中的闪光灯的过冲幅度远低于第二组中的闪光灯的过冲幅度。从这种多次放电闪光的恢复曲线的一小部分,可以得出结论,主要负电荷中心的电荷积累速率高于LPCC。 [参考:49]

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