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Numerical Formulation to Evaluate the Coupling by the Soil Among Multiple Grounding Electrodes: A High-Voltage Substations Application

机译:多次接地电极中土壤耦合的数值配方:高压变电站应用

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This article presents a methodology to calculate grounding potentials in adjacent electrodes present in high-voltage substations subjected to a short-circuit current dissipated in the main grid. The contribution of the technique is the consideration of the coupling by the soil among electrodes taking into account a two-layer soil and irregular geometry of the conductors. This problem is of special concern due to the presence of passers-by near metallic fences, not directly connected to the grounding grid, whose potentials usually have not been evaluated. In this context, the article presents a general analytical formulation aiming to estimate the potential in multiple electrodes, leading to a possible risk to human beings close to the substation. Sensitivity studies are performed in order to evaluate the effect of the soil resistivity and the distance from the faulted grid and the coupled electrode. A practical application in a substation grounding system is discussed. Finally, a huge grounding system is evaluated in order to verify the robustness of the proposed formulation.
机译:本文提出了一种方法来计算在经过在主电网中消散的短路电流的高压变电站中存在的相邻电极的接地电位。该技术的贡献是考虑电极之间的土壤耦合,考虑到导体的两层土壤和不规则几何形状。由于路虎的存在,这种问题是特别关注的是近金属栅栏,而不是直接连接到接地网格,其电位通常尚未被评估。在这种情况下,该物品提出了一种旨在估计多个电​​极潜力的一般分析制剂,导致靠近变电站的人类可能的风险。进行敏感性研究,以评估土壤电阻率和距离断层电网和耦合电极的距离。讨论了变电站接地系统中的实际应用。最后,评估庞大的接地系统,以验证所提出的配方的鲁棒性。

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