交流电压下GIL三柱绝缘子表面电荷的积累特性

Weiguo Li, Ming-yang Li, Chang-Hong Zhang, Xu Yang, Xiang Peng, B. Qi, C. Gao, Boya Zhang
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引用次数: 0

摘要

对表面电荷积累特性的研究主要集中在板样和盆样绝缘子上,对GIL三柱绝缘子表面电荷积累特性的研究报道较少。本文以实际550kV GIL三柱绝缘子为基础,利用电容探头搭建了三维表面电荷测量测试平台。研究了GIL三柱绝缘子在电压幅值、试验时间和表面粗糙度等不同条件下的表面电荷积累特性。结果表明:在交流电压作用下,GIL三柱绝缘子表面存在电荷积累现象;负电荷的积累幅度大于正电荷的积累幅度。柱状区域累积电荷密度较低,腹部区域累积电荷密度较高。随着外加电压的振幅和持续时间的增加,绝缘子的累积表面电荷密度逐渐增大。随着绝缘子粗糙度的增大,绝缘子的累积表面电荷密度也逐渐增大。在一定条件下,随着交流电压下表面电荷的积累,绝缘子表面闪络电压降低约9.6%。研究结果对GIL三柱绝缘子的设计优化和维护具有一定的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Accumulation Characteristic for Surface Charge on the GIL three-pillar insulator under AC Voltage
The research on surface charge accumulation characteristics are mainly focused on plate samples and basin insulator, and there are few reports on the surface charge accumulation characteristic on the GIL three-pillar insulator. Based on actual 550kV GIL three-pillar insulator, a three-dimensional(3D) surface charge measurement test platform utilizing the capacitive probe has been set up in this paper. The surface charge accumulation characteristic on the GIL three-pillar insulator are carried on different conditions such as voltage amplitude,test duration and surface roughness. The results show that there are surface charge accumulation phenomenon on the GIL three-pillar insulator under AC voltage. The amplitude of accumulation negative charge is larger than that of positive ones. The charge density accumulated in the pillar region was lower, while the charge density accumulated in the abdomen region was higher. With the amplitude and the duration of applied voltage increasing, the accumulated surface charge density of the insulator increases gradually. With the roughness of insulators increasing, the accumulated surface charge density of the insulator increases gradually as well. Under certain conditions, the insulator surface flashover voltage decreases by about 9.6%,with the accumulation of surface charge under AC voltage. The research results are helpful to the design optimization and maintenance of GIL three-pillar insulator.
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