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Mechanism of contaminant accumulation and flashover of insulator in heavily polluted coastal area

机译:沿海重度污染地区绝缘子的污染物积累与闪络机理

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This paper attempts to address the issue of serious insulator string partial discharge activity and flashover resulted from severe contaminant accumulation of insulators on a 220 kV transmission line in coastal areas during winter when the rain is sparse and heavy contamination accumulates over time. Samples of silicone composite insulators, glass insulator with RTV coating and ceramic station insulator are tested in a series of experiments including ESDD and NSDD measurement, hydrophobicity classification, the measurement of static contact angle, TGA and FTIR analysis. Taking the terrain of the transmission line into consideration, it probes into the mechanism of contaminant accumulation and flashover of insulators in heavily polluted coastal areas. A conclusion has been made that the high salt deposit on the surface of the insulators resulted from peculiar terrain and the dampening effect on hydrophobicity transfer characteristic of silicone composite material lower the flashover voltage of silicone composite insulators and ceramic or glass insulators with RTV coatings leading to severe partial discharge activity and flashovers during dry winter. Finally it sums up the lessons in regards to this problem and proposes appropriate solutions.
机译:本文试图解决由于冬季降雨稀少且污染物随时间累积而在沿海地区的220 kV输电线路上绝缘子严重积聚而导致严重的绝缘子串局部放电活动和闪络的问题。有机硅复合绝缘子,带有RTV涂层的玻璃绝缘子和陶瓷站绝缘子的样品经过一系列实验测试,包括ESDD和NSDD测量,疏水性分类,静态接触角测量,TGA和FTIR分析。考虑到传输线的地形,它探讨了污染严重的沿海地区的污染物积累和绝缘子闪络的机理。得出的结论是,绝缘子表面的高盐沉积是由于特殊的地形造成的,并且对有机硅复合材料的疏水转移特性的阻尼作用降低了有机硅复合绝缘子以及带有RTV涂层的陶瓷或玻璃绝缘子的闪络电压,从而导致干燥冬季严峻的局部放电活动和闪络。最后,本文总结了有关该问题的经验教训,并提出了适当的解决方案。

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