Effective length study of grounding electrod reached by lightning based on Transmission Line modelling Method

D. Gazzana, A. Bretas, G. Dias, M. Telló, Dave W. P. Thomas, C. Christopoulos
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引用次数: 3

Abstract

This paper presents a study about the effective length of a horizontal grounding electrode used to dissipate electrical current to the earth proceeding from a lightning surge. The work discusses the influence of the soil parameters in the scattering process considering fasts and slow wave shapes. Initially an introduction about the problem is made, with a brief description about the effective length concepts. An algorithm based on the Transmission Line Modeling Method in one dimension (TLM-1D), taking into account the soil ionization phenomenon, was developed in order to evaluate the transitory behavior of the grounding. The simulation results show that a significant part of the electrode is not effectively used for scattering the surge current to the soil and that the effective length of the conductor is dependent mainly on the soil resistivity and the wave shape.
基于传输线建模方法的雷击接地有效长度研究
本文研究了用于将雷击浪涌产生的电流耗散到地面的水平接地电极的有效长度。本文从快波和慢波两个角度讨论了土壤参数对散射过程的影响。本文首先对该问题作了介绍,并对有效长度的概念作了简要说明。基于一维传输线建模方法(TLM-1D),考虑土壤电离现象,提出了一种评估接地暂态行为的算法。仿真结果表明,电极的很大一部分不能有效地将浪涌电流散射到土壤中,导体的有效长度主要取决于土壤电阻率和波形。
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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