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An Algorithm for Estimating the Grounding Resistance of Complex Grounding Systems Including Contact Resistance

机译:包括接触电阻在内的复杂接地系统接地电阻的估算算法

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摘要

In cases where the grounding system is buried in soils characterized by poor contact with the electrodes (e.g., karst and sandy terrains), the contact resistance frequently represents a dominant component of the total grounding resistance. In such cases, estimation of the grounding resistance by conventional formulas given in the literature is useless, because they do not take into account the contact resistance. An algorithm for estimating the total grounding resistance of complex grounding systems, with the contact resistance included, was developed and presented in this paper. The algorithm is applied to a grounding system of a typical 110-kV transmission line tower used in the Serbian transmission power system. Simple formulas by which the total grounding resistance of the analyzed grounding system can easily be calculated are also derived. The obtained results are validated using 3-D finite-element method (FEM) modeling and a practical method from the literature. It was shown that the total grounding resistances determined by the proposed algorithm deviate less than 4% from those obtained by FEM calculations. Since the proposed algorithm is general and can be applied to any grounding system, it represents a powerful tool for estimating the grounding resistance in an early stage of the design process.
机译:如果接地系统埋在与电极接触不良的土壤中(例如喀斯特和沙质地形),则接触电阻通常是总接地电阻的主要组成部分。在这种情况下,通过文献中给出的常规公式估算接地电阻是没有用的,因为它们没有考虑接触电阻。本文提出并提出了一种估算复杂接地系统总接地电阻(包括接触电阻)的算法。该算法应用于塞尔维亚输电系统中使用的典型110 kV输电线路铁塔的接地系统。还导出了简单的公式,通过这些公式可以轻松计算出所分析的接地系统的总接地电阻。使用3-D有限元方法(FEM)建模和文献中的一种实用方法来验证所获得的结果。结果表明,所提出的算法确定的总接地电阻与FEM计算得出的总接地电阻相差不到4%。由于所提出的算法是通用的并且可以应用于任何接地系统,因此它代表了在设计过程的早期阶段估算接地电阻的强大工具。

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