A dynamic model of DC arc discharge on polluted porcelain insulators at high altitude

Yujun Guo, Xingliang Jiang, R. Sundararajan
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引用次数: 3

Abstract

Several dynamic models have been used to predict the flashover voltage of insulators under polluted and icing conditions, but none of them addressed the insulators' flashover performance at high altitudes. The purpose of this work is to present a dynamic model to study the effect of insulator configuration, equivalent salt deposit density, non-soluble deposit density as well as air pressure on DC flashover voltage of polluted porcelain insulators. As a result of low air pressure, the arc deviates from the surface of insulators with bending and rocking, shortening the arc distance. The computed results of the dynamic model were compared with the experimental results of previous researchers; the average error was 2.85%, showing a very good correlation between them.
高海拔污染瓷绝缘子直流电弧放电动力学模型
目前已有几种动态模型用于预测污染和结冰条件下绝缘子的闪络电压,但没有一种模型能够预测高海拔条件下绝缘子的闪络性能。本文的目的是建立一个动态模型,研究绝缘子结构、等效盐沉积密度、不溶性沉积密度以及空气压力对污染瓷绝缘子直流闪络电压的影响。由于气压低,电弧偏离绝缘子表面,产生弯曲和晃动,缩短了电弧距离。将动力学模型的计算结果与前人的实验结果进行了比较;平均误差为2.85%,两者具有很好的相关性。
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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