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Calculation of ground resistance and step voltage for buried ground rod with insulation lead

机译:带绝缘引线的埋入式接地棒的接地电阻和阶跃电压的计算

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摘要

Procedures for installing ground rods can be categorized into the driven ground rod methods and the buried ground rod methods. The leads of ground rods are also classified into two types-bare conductor leads and insulation leads. The analytical results herein elucidate a method for determining ground resistance, earth surface voltage, position and magnitude of the maximum step voltage for the buried ground rod with the insulation lead. The ground resistance, earth surface voltage and step voltage in the driven ground method exceed those of the buried ground rod with the insulation lead. Ground resistance, earth surface voltage and step voltage decrease as the depth of the buried ground rod increases. The position of the maximum step voltage varies with the buried depth of a ground rod with the insulation lead. The distance of the maximum step voltage from the ground rod increases with the depth of the buried ground rod. Results of this study provide a valuable reference for ground designs that protect humans and electrical equipment.
机译:安装接地棒的过程可以分为驱动接地棒方法和埋入式接地棒方法。接地棒的引线也分为两种:裸导体引线和绝缘引线。本文的分析结果阐明了一种用于确定带有绝缘导线的埋入式接地棒的接地电阻,接地电压,最大阶跃电压的位置和大小的方法。驱动接地法中的接地电阻,接地表面电压和阶跃电压超过带有绝缘导线的埋入式接地棒的接地电阻,接地表面电压和阶跃电压。接地电阻,地表电压和阶跃电压随埋入式接地棒的深度增加而降低。最大步进电压的位置随带有绝缘导线的接地棒的埋入深度而变化。距接地棒的最大阶跃电压的距离随埋入式接地棒的深度而增加。这项研究的结果为保护人员和电气设备的接地设计提供了宝贵的参考。

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