Reliability and failure analysis of porcelain high-voltage surge arresters

J. Rossman, Mark A. Droke, J. H. Nelson
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引用次数: 6

Abstract

TVA identified an increasing failure rate of 132-kV (106-kV Maximum Continuous Operating Voltage) porcelain arresters on the 161-kV system. A cross-organizational team was formed to determine the root cause of the 19 arrester failures and provide solutions. The team researched arrester failure modes and solicited input from arrester experts. A root cause diagram is discussed and multiple failure modes were ruled out. Multiple failed arrester units were dissected indicating moisture ingress as the root cause leading to the recent failures. Computer simulations contrasted faults through the Metal Oxide Varistor (MOV) block stack versus faults flowing through the air cavity surrounding the MOV stack. All 19 failures were recorded by digital fault recorders (DFR). The DFR waveforms were compared to the computer simulations showing that the arresters flashed over the internal air cavity. Based on the available physical evidence, moisture ingress is the likely root cause issue for the failures from 2002 to date.
陶瓷高压避雷器的可靠性与失效分析
TVA发现,在161-kV系统中,132-kV (106-kV最大连续工作电压)瓷避雷器的故障率不断增加。成立了一个跨组织团队,以确定19个避雷器故障的根本原因并提供解决方案。该团队研究了避雷器的失效模式,并征求避雷器专家的意见。讨论了根本原因图,排除了多种失效模式。多个失效的避雷器单元被解剖,表明水分进入是导致最近失效的根本原因。计算机模拟对比了通过金属氧化物压敏电阻(MOV)块堆的故障和流经MOV堆周围空气腔的故障。所有19例故障均由数字故障记录仪(DFR)记录。将DFR波形与计算机模拟结果进行了比较,表明避雷器在内部空腔上闪过。根据现有的物理证据,从2002年至今,进水可能是故障的根本原因。
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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