用测量的接地电阻计算间隔电缆雷击感应过电压

G. Ge Jiang, S. Boggs, J. Tarpey, R. Wamer
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引用次数: 2

摘要

间隔电缆提供紧凑的三相电源分布。然而,在雷击条件下,两相之间和中性载波线的近距离会产生非常高的场。间隔电缆的概念是基于中性载波线在每极接地且接地电阻不大于25 ω的假设。在许多领域,这一假设远未实现。在本研究中,我们计算了长间隔电缆的雷击感应过电压,包括线路上每个避雷器,变压器等的影响,并使用测量的接地电阻,用于一系列闪电电流和上升时间
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spacer cable lightning-induced overvoltages computed using measured groud resistances
Spacer cable provides compact distribution of 3-phase power. However, the close proximity of the phases to each other and the neutral carrier wire results in very high fields under lightning conditions. The concept of spacer cable is based on the assumption that the neutral carrier wire is grounded at each pole with an earth resistance no greater than 25 Omega. In many areas, this assumption is far from met. In the present study, we compute lightning induced overvoltages for long lengths of spacer cable including the effect of every lightning arrester, transformer, etc. on the line and using measured ground resistances, for a range of lightning currents and risetimes
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