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Heating Dissipation Study of a Pollution Layer on a Cap and Pin Insulator

机译:帽销式绝缘子上的污染层的散热研究

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摘要

The flashover mechanism of outdoor insulators is stated in the literature, and follows several steps before occurring. Beginning by the wetting process; by rain or fog, of the pollution layer already deposited on the surface of the insulator, allowing leakage current to flow and causing heating dissipation in the pollution layer, leading to dry bands formation, and after, to the arcing of the latter due to the voltage concentration around them. Subsequently the flashover of the whole insulator occurs by the ionization of the arc path. In this paper, one of the flashover mechanisms is studied, namely the heat dissipation, due to the leakage current flow in a pollution layer deposited on a high voltage insulator surface. To achieve this work COMSOL-Multiphysics computes the temperature distribution on the pollution layer, having different values of the electrical conductivity. The obtained results show that the temperature is highest at the pin region where the electric field is most significant. Due to the non-regular shape of the cap and pin insulator there is peaks in the temperature repartition allowing dry band formation.
机译:室外绝缘子的闪络机理在文献中已有描述,并且在发生之前遵循几个步骤。从润湿过程开始;由于雨水或雾气,已经沉积在绝缘体表面上的污染层,使泄漏电流流过,并在污染层中造成热耗散,导致形成干带,之后由于绝缘层的起弧而形成电弧它们周围的电压集中。随后,整个绝缘子的飞弧通过电弧路径的电离发生。本文研究了一种闪络机制,即散热,这是由于泄漏电流在高压绝缘子表面上沉积的污染层中流动所致。为了完成这项工作,COMSOL-Multiphysics会计算污染层上的温度分布,并具有不同的电导率值。所获得的结果表明,在电场最显着的引脚区域温度最高。由于盖和引脚绝缘子的形状不规则,因此在温度分配中会出现峰值,从而形成干带。

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