Performance of backfill materials under impulse and AC testings

V. Laverde, M. Kadir, C. Gomes
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引用次数: 13

Abstract

This paper focuses on the behaviour of dry sand, bentonite and cement under different voltage conditions. These three materials play important role in electrical grounding systems, in controlling ground impedance of an electrode. However, most often the low frequency earth resistance measurements of grounding electrodes encased in these materials have been considered as the performance indicator. It has been found in this study that the behaviour of materials grossly depends on the applied voltage waveform and repetition of application or duration of the waveform. Time to breakdown in the case of bentonite is considerably smaller than that of cement. Bentonite also shows breakdown in two phases, in the voltage time curve. In cases of both bentonite and dry sand, fulgurites were formed in the application of short duration alternative voltage at 50 Hz. As fulgurites are very high in resistance compared to the original material, the overall resistive and inductive behaviours of the earth electrodes may change in the presence of leakage currents in MV and HV systems.
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充填材料在冲击和交流试验下的性能
本文主要研究了干砂、膨润土和水泥在不同电压条件下的性能。这三种材料在电气接地系统中起着控制电极接地阻抗的重要作用。然而,大多数情况下,封装在这些材料中的接地电极的低频接地电阻测量被认为是性能指标。在这项研究中发现,材料的行为在很大程度上取决于施加的电压波形和重复施加或波形的持续时间。膨润土的分解时间比水泥短得多。在电压时间曲线上,膨润土也表现为两相击穿。在膨润土和干砂的情况下,在50hz的短时间交变电压下形成了电流石。由于与原始材料相比,fulgurite具有很高的电阻,因此在中压和高压系统中,当存在泄漏电流时,接地电极的整体电阻和感应行为可能会发生变化。
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