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Numerical Analysis of the Combined Effects of Booster Sheds and Grading Rings on an Ice-Covered EHV Ceramic Post Insulator

机译:加冰棚和分级环对覆冰超高压陶瓷柱式绝缘子联合作用的数值分析

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In this paper, preliminary results of numerical investigations concerning the combined effect of Booster Sheds (BSs) and Grading Rings (GRs) on the wet-grown ice accumulation on two units of an EHV post station insulator are presented. Numerical simulations were carried out using the finite element method (FEM) to calculate the voltage drop distributions along different air gap configurations. In particular, it was shown that following the addition of 4, 5 or 6 booster sheds with or without grading rings, 42 to 54% of the applied voltage was dropped along the closest air gap to the HV electrode, which was also the longest one. Moreover, it was found that adding different grading rings leads to a decrease in the voltage drops along the first air gap formed by the booster sheds during the ice accretion, resulting in more uniform potential distributions. Finally, based on previous experiments carried out at CIGELE and these new numerical simulation studies, the combined effect of booster sheds and grading rings for improving the electrical performance of EHV post insulators under heavy icing conditions, was discussed.
机译:本文提出了关于增压棚和分级环对超高压站绝缘子两个单元上湿生冰堆积的联合影响的数值研究的初步结果。使用有限元方法(FEM)进行了数值模拟,以计算沿不同气隙配置的电压降分布。特别是,显示出在添加4个,5个或6个带有或不带有分级环的升压棚之后,所施加电压的42%至54%沿着最接近HV电极的气隙下降,这也是最长的一个。此外,已经发现,添加不同的分级环导致在积冰期间沿着由增压器棚形成的第一气隙的电压降减小,从而导致更均匀的电势分布。最后,根据先前在CIGELE进行的实验和这些新的数值模拟研究,讨论了升压棚和分级环在重覆冰条件下改善EHV绝缘子电气性能的综合效果。

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