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Fault Current-Division Factor of Substation Grounding Grid in Seasonal Frozen Soil

机译:季节冻土中变电站接地网的故障分流系数

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The determination of the maximum ground fault current, which has a close relation to the maximum hazardous step-and-touch voltage, is essential for the safety of a substation. Seasonal frozen soil changes the grounding resistances of the substation grounding grids and the tower footing devices, which seasonally influences the maximum grid current. This paper first introduces the method to calculate the fault current-division factor, and then discusses the influence of the seasonal frozen soil layer on it by using the proposed method. Based on the cases of two substations connected by the transmission lines and without neutrals or other connection paths, the influence of several factors on the fault current-division factor, including the thickness of seasonal frozen soil, and the number of transmission lines with overhead ground wire connected to the substation grounding grid, is analyzed. It is reasonable to consider the influence of the seasonal frozen soil on the fault current-division factor in grounding grid design. According to the analysis, adding vertical grounding rods to the grounding grid and the tower footing grounding device can almost eliminate this seasonal influence.
机译:确定最大接地故障电流与最大危险步进和接触电压密切相关,这对变电站的安全至关重要。季节性的冻土会改变变电站接地网和塔架基础设备的接地电阻,从而季节性地影响最大电网电流。本文首先介绍了计算故障分流因子的方法,然后利用所提出的方法讨论了季节性冻土层对其的影响。根据两个变电站通过输电线路连接而没有零线或其他连接路径的情况,几个因素对故障分流系数的影响,包括季节性冻土的厚度以及架空地面的输电线路的数量分析与变电站接地网相连的电线。在接地网设计中考虑季节性冻土对故障分流系数的影响是合理的。根据分析,在接地网和塔架接地装置中增加垂直接地棒几乎可以消除这种季节性影响。

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