Determination of the scope of the experimental-calculation method for measuring the touch voltage

D. Koliushko, S. Rudenko, A. N. Saliba
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Abstract

The work is devoted to the improvement of methods for determining the normalized parameters of the grounding system (GS) of operating power stations and substations. The aim of the work is determination of the scope of the experimental-calculated method for measuring the touch voltage, depending on short-circuit (SC) current value for the given dimensions of the GS and the type of soil. Methodology. The study analyzed the non-linear effect of the SC current value on the touch voltage, taking into account such factors as the GS size and the soil type. The calculation used statistical data on the GS size and the characteristics of the soil obtained by monitoring the GS state of 585 operating electrical substations with a voltage class of 110-750 kV using the induction method and the method of vertical soil sounding, respectively. For the calculation, a mathematical model of a non-equipotential GS located in a three-layer semiconductor space with plane-parallel boundaries was used, this model was developed using the method of integro-differential equations. Results. To determine the scope of the method, in this work it is proposed to use the linearity criterion, which is determined due to the ratio of the constant of reduced touch voltage to the current value. The example shows the method for determining the threshold minimum and maximum values of the measuring current of the soil, in the range between which the measurements by experimental-calculated methods are impossible. A table of threshold current values has been formed and recommendations have been developed on the possibility of using experimental-measuring methods for determining the touch voltage depending on the GS size and soil characteristics.
测定触摸电压范围的实验计算方法
本文致力于改进运行中的电站和变电站接地系统归一化参数的确定方法。这项工作的目的是根据给定GS尺寸和土壤类型的短路(SC)电流值,确定测量触摸电压的实验计算方法的范围。方法。考虑GS大小、土壤类型等因素,分析了SC电流值对接触电压的非线性影响。计算采用了585个电压等级为110 ~ 750 kV的运行变电站,分别采用感应法和土壤垂直测深法监测GS状态所获得的GS大小和土壤特性统计数据。在计算中,利用积分-微分方程的方法建立了三层半导体空间中具有平面平行边界的非等势GS的数学模型。结果。为了确定该方法的适用范围,在本工作中提出了使用线性度准则,该准则是由触摸电压降低常数与电流值的比值确定的。实例说明了确定土壤测量电流阈值的最小值和最大值的方法,在此范围内,用实验计算方法测量是不可能的。已经形成了一个阈值电流表,并就使用实验测量方法确定触摸电压的可能性提出了建议,这取决于GS的大小和土壤特性。
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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