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Observation of surface flashover process on high voltage polluted insulators near shoreline

机译:海岸线附近高压污染绝缘子表面闪络过程的观察

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This paper attempts to provide a relevant information on the serious threats of contamination surface flashover and related discharges on insulators near coastal areas. The reliability of power network systems can be improved by reducing the hazard of contamination surface flashover. A test method was adopted to examine the surface flashover process. To replicate typical coastal area contamination, a modified solid layer contamination deposition method was used in the experimental work. Two configurations were studied: 1) by turning the artificial contamination setup and cold fog generation continuously “ON” and, 2) with “ON/OFF” cycles of contamination and cold fog. The contamination and cold fog were used under different conductivities. The insulator was hung vertically in an environmental chamber simulating natural climate conditions. The results showed that flashover voltage decreased as cold fog-water conductivity and contamination level were increased. It was found that the extreme period as when surface flashover was at its lowest, after twenty minutes of cold fog generation, at a cold fog conductivity of 250 μS/cm. Visual observation results indicated that partial discharge propagated increasingly with leakage current before the occurrence of surface flashover, and that the latter occurred during “OFF” conditions when cold fog generation was suspended for a moment.
机译:本文试图提供有关沿海地区绝缘子表面污染闪络和相关放电的严重威胁的相关信息。可以通过减少污染表面闪络的危害来提高电网系统的可靠性。采用一种测试方法来检查表面闪络过程。为了复制典型的沿海地区污染,在实验工作中使用了改进的固体层污染沉积方法。研究了两种配置:1)通过将人造污染物设置和冷雾生成连续“打开”,以及2)以“ ON / OFF”循环的污染物和冷雾循环。在不同的电导率下使用了污染和冷雾。将绝缘子垂直悬挂在模拟自然气候条件的环境室内。结果表明,随着冷雾水电导率和污染水平的增加,闪络电压降低。已发现,在产生冷雾二十分钟后,在250μS/ cm的冷雾电导率下,表面闪络达到最低的极端时期。肉眼观察结果表明,局部放电在表面闪络发生之前随泄漏电流而逐渐增加,并且后者在“关闭”条件下发生,此时冷雾的产生被暂停了一段时间。

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