Impact of Different Frequency-Dependent Soil Models in Transient Ground Potential Rise

A. D. de Araújo, W. L. D. de Azevedo, J. Filho
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Abstract

The frequency dependence of soil electrical parameters must be considered for a precise computation of the electrode grounding impedance and of the transient ground potential rise (GPR) generated by an injected lightning current. This work computes the grounding impedances of conductors (rods and electrodes) seen as short transmission lines (TL) based on the Transmission Line Model (TLM). These conductors are buried into distinct types of ground, such as frequency-independent (FI) and three distinct frequency-dependent (FD) soil models. Furthermore, the transient GPR generated by a lightning strike is computed. Results indicate that FD soil models have provided distinct responses which the GPR peaks are considerably reduced when the frequency dependency of the soil electrical parameters is included in the simulations.
不同频率土壤模型对瞬态地电位上升的影响
为了精确计算电极接地阻抗和注入雷击电流产生的瞬态地电位上升,必须考虑土壤电参数的频率依赖性。本文基于传输线模型(TLM)计算了作为短传输线(TL)的导体(棒和电极)的接地阻抗。这些导体被埋入不同类型的地面,如频率无关(FI)和三种不同的频率相关(FD)土壤模型。进一步计算了雷击产生的瞬态探地雷达。结果表明,FD土壤模型提供了明显的响应,当考虑土壤电参数的频率依赖性时,GPR峰值显著降低。
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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