Striking distance to flat ground estimated from the bipolar leader model and the influence of the lightning channel radius

Kamila Costa, M. Guimarães, R. Alípio, M. Arcanjo
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Abstract

This paper proposes a physically consistent method to estimate the lightning striking distance to flat ground as a function of the return stroke charge, as well as a function of the prospective return stroke peak current. This method is based on an axisymmetric electrostatic model of charges in thunderstorm clouds used to initiate a vertical bipolar leader that develops bidirectionally from the region of maximum electrical field inside the cloud towards the ground. The leader is assumed as a perfect conductor whose potential is equal to the average cloud potential over its length. The charge simulation method is applied to calculate the leader charge distribution by the numerical solution of the Poisson equation. The striking distance to flat ground is computed when the average potential gradient between the leader tip and the ground is equal to 500 kV/m. This analysis is extended to different leader radius values, in order to evaluate its effect on striking distance, since there are some uncertainties regarding the leader radius reported in literature. Furthermore, the obtained results are compared to models from different authors.
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基于双极引线模型估计的对平地的打击距离及闪电通道半径的影响
本文提出了一种物理一致的方法来估计雷击到平地的距离作为回击电荷的函数,以及作为预期回击峰值电流的函数。该方法基于雷暴云中电荷的轴对称静电模型,该模型用于启动从云内最大电场区域向地面双向发展的垂直双极先导。假设引线是完美导体,其电势等于云的平均电势除以它的长度。通过泊松方程的数值解,应用电荷模拟方法计算了前导电荷的分布。当引线端头与地的平均电位梯度等于500kv /m时,计算到平地的打击距离。由于文献报道的leader半径存在一定的不确定性,我们将分析扩展到不同的leader半径值,以评估其对打击距离的影响。并将所得结果与不同作者的模型进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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