巴基斯坦南部沿海高污染地区高压输电线路绝缘子性能分析

Naveed Ahmed Unar, N. H. Mirjat, M. A. Uqaili, S. Usman, M. Z. Shaikh
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引用次数: 0

摘要

本文介绍了在巴基斯坦南部沿海高污染地区安装在220千伏和500千伏输电线路塔上的高压盘形绝缘子的性能分析。本研究基于3条500千伏输电线路和2条220千伏输电线路的案例研究,以研究室温硫化(RTV)硅涂层对盘状绝缘子的影响,以减轻由污染闪络引起的跳闸和停电。高压输电线路盘形绝缘子内大气闪络是影响电力顺利输送的主要瓶颈。改进输电线路的行为,从而减少跳闸和减少维修成本,在更换故障和不良状态的盘形绝缘子后减少停电,也进行了研究,并总结了结果。通过采用盘状绝缘子的室温硫化硅和聚合物涂层,或用优质盘状绝缘子替换劣质盘状绝缘子,可以减轻由于环境限制而引起的闪络引起的频繁跳闸和停电。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of High Voltage Transmission Line Insulators in Highly Polluted Southern Coastal Areas of Pakistan
This paper presents performance analysis of high voltage transmission line disc insulators installed on 220 KV and 500 KV transmission line towers in highly contaminated and thus polluted southern coastal areas of Pakistan. This study is based on case studies carried out on three 500 KV transmission lines and two 220 KV transmission lines to investigate the effects of Room-Temperature Vulcanized (RTV) Silicon Coating on disc insulators in mitigating tripping and power outages resulting from pollution flashover. The flashover inhering from atmosphere in high voltage disc insulators on high power transmission lines is a major bottleneck in smooth power evacuation of electrical power. The improving behavior of transmission lines resulting in reduced tripping and reduced maintenance cost in terms of lesser power outages in the aftermath of replacement of faulty and poor condition disc insulators is also studied and results are concluded. Mitigation of frequent tripping and power outages occurring from flashovers due to environmental constraints is possible by either employing Room-Temperature Vulcanized Silicon and Polymer Coating of disc insulators or replacing poor quality disc insulators with good quality disc insulators.
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