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A Simple Model For A Numerical Determination Of Electrical Characteristics Of A Pillar Foundation Grounding System

机译:支柱基础接地系统电气特性数值确定的简单模型

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Unknown leakage current distributions from vertical wire ground electrodes which form an armature of a pillar foundation grounding system are determined in this paper. Electrode system is fed by a very low-frequency current. The leakage currents are determined by a numerical solving of a scalar potential integral equation (SPIE) system. It is realized using the moment method, which actually presents the indirect boundary element method. For longitudinal current along the wire conductor's axes, a polynomial approximation of the first order is used. Then, grounding impedance and electric scalar potential (ESP) distribution on the ground surface in the surrounding of the grounding system are determined. In order to do that, the foundation grounding system is assumed as a homogeneous semiconducting semi-spherical domain with equally located vertical wire electrodes, treating the surrounding ground as a lossy half-space. In order to form the SPIE system, new approximate expressions for the Green functions of ESP are proposed.
机译:本文确定了构成立柱基础接地系统电枢的垂直线接地电极的未知泄漏电流分布。极低频电流为电极系统供电。漏电流是通过标量电势积分方程(SPIE)系统的数值求解来确定的。它是使用矩量法实现的,它实际上是间接边界元法。对于沿导线导体轴的纵向电流,使用一阶多项式近似。然后,确定接地系统周围接地表面上的接地阻抗和标量电势(ESP)分布。为此,将基础接地系统假定为均质的半球形半球形区域,具有相等位置的垂直导线电极,并将周围的地面视为有损的半空间。为了形成SPIE系统,提出了ESP Green函数的新近似表达式。

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