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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >The Effect of Frequency Dependence of Soil Electrical Parameters on the Lightning Performance of Grounding Systems
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The Effect of Frequency Dependence of Soil Electrical Parameters on the Lightning Performance of Grounding Systems

机译:土壤电参数的频率依赖性对接地系统雷电性能的影响

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A rigorous full-wave approach based upon the finite-element method (FEM) is used for the analysis of grounding systems taking the frequency dependence of soil electrical parameters into account. The method uses minimum approximations to model the transient behavior of grounding systems. In this analysis, frequency dependence of the soil conductivity and relative permittivity is represented using available analytical formulae obtained from experimental data. It is shown that there are cases in which the frequency dependence of the soil conductivity and relative permittivity can affect the transient behavior of grounding systems. Our simulation results show that the effect of frequency dependence is more pronounced for grounding systems buried in low conductive soils in contrast with those buried in highly conductive soils and especially when these systems are subjected to lightning subsequent return stroke currents. In practice, it seems legitimate to disregard the frequency dependence of the soil conductivity and relative permittivity for grounding systems buried in highly conductive soils subjected to lightning first return stroke currents. Within this context, it is shown that the soil conductivity, length of grounding electrode, and the frequency content of the injected current are the main factors contributing to the beneficial effect of the frequency dependence of soil electrical parameters.
机译:考虑到土壤电参数的频率依赖性,基于有限元方法(FEM)的严格全波方法用于分析接地系统。该方法使用最小近似值对接地系统的瞬态行为进行建模。在此分析中,使用从实验数据获得的可用解析公式来表示土壤电导率和相对介电常数的频率依赖性。结果表明,在某些情况下,土壤电导率和相对介电常数的频率依赖性会影响接地系统的瞬态行为。我们的仿真结果表明,与埋在高导电性土壤中的接地系统相比,埋在低导电性土壤中的接地系统对频率的影响更为明显,尤其是当这些系统遭受雷击随后的回程电流时。实际上,对于埋在经受雷电第一回程电流的高导电性土壤中的接地系统,忽略土壤电导率和相对介电常数的频率依赖性似乎是合理的。在此背景下,表明土壤电导率,接地电极的长度以及注入电流的频率含量是有助于影响土壤电参数频率依赖性的主要因素。

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