Surface Charge Accumulation and Electric Field Distribution of Cone-Type Spacer in DC GIL

J. Zhong, B. Zhang, G. Han, H. Zhang
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Abstract

The surface charge accumulation on the spacer and the distortion of the surface electric field caused by it are the main reasons for the reduction of flashover voltage of DC GIL (Gas Insulated Transmission Line) spacers. A reasonable spacer structure helps to improve the surface electric field distribution. This paper considers the generation, migration, diffusion and recombination of free ions in GIL gas, and the nonlinear relationship between gas current density and electric field strength. A numerical model for the charge transport and accumulation in DC GIL is established. Based on this model, the surface charge accumulation and electric field distortion characteristics of cone-type spacer with different inclination angles and curvatures of the surface are investigated. The results show that the polarity of the accumulated charge on the two sides of the cone-type spacer is different from that on the inside and outside (concave and convex surface). The negative charge density in the concave surface is 1.6 times that of the positive charge density in the convex. The normal component of the electric field is the main reason for the formation of charge accumulation; The surface charge density of the cone-type spacer increases as its inclination angle increases. and there is a key position for the electric field along the both surfaces. The high-voltage side electric field decreases with the increase of the angle, and the electric field near the ground side increases with the increase of the angle; The smaller the curvature along the spacer, the higher the charge density. The research results can provide reference for structural optimization of cone-type spacer in DC GIL.
直流电偶极流中锥型间隔器的表面电荷积累与电场分布
隔离片表面电荷的积累及其引起的表面电场畸变是导致直流气体绝缘输电线路隔离片闪络电压降低的主要原因。合理的间隔结构有助于改善表面电场分布。本文研究了GIL气体中自由离子的产生、迁移、扩散和复合,以及气体电流密度与电场强度之间的非线性关系。建立了直流GIL中电荷输运和积累的数值模型。在此模型的基础上,研究了不同表面倾角和曲率下锥型间隔片的表面电荷积累和电场畸变特性。结果表明:锥形隔震器两侧(凹面和凸面)积聚电荷的极性不同;凹表面的负电荷密度是凸表面正电荷密度的1.6倍。电场的法向分量是电荷积累形成的主要原因;锥型隔离器的表面电荷密度随其倾角的增大而增大。电场在两个表面都有一个关键的位置。高压侧电场随角度的增大而减小,近地侧电场随角度的增大而增大;沿间隔层的曲率越小,电荷密度越高。研究结果可为直流GIL锥型隔离器的结构优化提供参考。
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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