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Three-Dimensional Modeling of Potential and Electric-Field Distributions Along an EHV Ceramic Post Insulator Covered With Ice - Part II: Effect of Air Gaps and Partial Arcs

机译:覆有冰的超高压陶瓷柱式绝缘子的电位和电场分布的三维建模-第二部分:气隙和局部电弧的影响

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摘要

The main objective of this paper is to investigate the effect of air-gap position, length, and number on the phenomena preceding flashover along a typical 735-kV porcelain station post insulator unit under heavy ice accretion. Under these conditions, this type of insulator seems to be the most likely subject to flashover. The numerical simulations were performed using Coulomb 3D, a commercial software based on the boundary element method (BEM). Computer simulations were performed during a melting period. Special attention was paid to the presence of a conductive water film at the ice surface and to a partial arc along an air gap. The results obtained showed that the number of air gaps, with or without the presence of a partial arc along them, has a direct effect on the distribution of potential along the iced insulator. Moreover, for the same total arcing distance, the number of air gaps and their position did not affect the average electric field per arcing distance that was used to determine the partial arc presence. Based on these results, suggestions for improving station insulator geometry for icing conditions were proposed.
机译:本文的主要目的是研究气隙位置,长度和数量对在重冰积聚下典型的735kV瓷站后绝缘子单元上闪络前现象的影响。在这些条件下,这种类型的绝缘子似乎最有可能发生闪络。使用库仑3D(基于边界元方法(BEM)的商业软件)进行了数值模拟。在熔化期间进行计算机模拟。特别要注意的是在冰表面存在导电水膜,并沿着气隙形成了部分电弧。所获得的结果表明,气隙的数量,无论是否存在局部电弧,都会直接影响沿冰绝缘子的电位分布。此外,对于相同的总电弧距离,气隙的数量及其位置不会影响用于确定局部电弧存在的每个电弧距离的平均电场。根据这些结果,提出了改善结冰条件下站绝缘子几何形状的建议。

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