The Effect of Humidity and Temperature on Flashover in High Voltage Transmission Line Ceramic Insulators

TEM Journal Pub Date : 2024-02-27 DOI:10.18421/tem131-70
S. Amalia, Hamdi Azhar, Bayu Hidayatullah, Abdul Rajab, N. Novizon, Yusreni Warmi, Andre Febrian Kasmar
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Abstract

This research aims to determine the flashover voltage on the surface of porcelain insulators on 150 kV transmission lines located in Payakumbuh, where the insulators are contaminated with dust and moss due to the effects of temperature and humidity. The experiment is carried out with only up to seven insulator plates due to the limitations of the available apparatus. For the further testing, a trend analysis is applied. According to the experimental results, a rise in temperature around the insulator will increase the flashover voltage value and accelerate the potential for a flashover event. This happens because high temperatures can reduce the insulator's dielectric strength and insulation resistance and increase the risk of flashover. The dielectric strength values decreased with an average decrease of 44.62% per insulator plate for dusty insulators and 45.08% for each plate for mossy insulators. The results aim to minimize flashover on transmission lines in hilly areas with relatively high contamination.
湿度和温度对高压输电线路陶瓷绝缘子闪络的影响
本研究旨在确定位于巴雅昆布(Payakumbuh)的 150 千伏输电线路上瓷绝缘子表面的闪络电压,由于温度和湿度的影响,绝缘子表面受到灰尘和苔藓的污染。由于现有仪器的限制,实验最多只能使用七块绝缘子板。为了进一步测试,采用了趋势分析法。根据实验结果,绝缘子周围温度的升高会增加闪络电压值,并加速闪络事件的发生。这是因为高温会降低绝缘体的介电强度和绝缘电阻,增加闪络风险。灰尘绝缘子的介电强度值平均下降了 44.62%,苔藓绝缘子的介电强度值平均下降了 45.08%。这些结果旨在尽量减少污染相对较高的丘陵地区输电线路的闪络。
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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