Simulation and Analysis of Electric Field Distributions in Stator Bar Insulation System with Different Arrangement of Cavities

Daphne Tay Ye Chee, H. Nabipour-Afrouzi, Z. A. Malek, K. Mehranzamir, J. Ahmed, Tiong Siing Kieh
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引用次数: 2

Abstract

The underlying cause of the cessation in high voltage machineries can be rooted from the failure in the insulation system due to cavity’s discharges originating from the presence of cavities. This paper caters to the study of the electric field distribution inside stator bar insulation system with different arrangement of cavities, in either single or multiple cavities of different alignment to aid the investigation of electric field stresses inside the cavities and the tendency of electrical breakdown in the stator bar insulation system. Simulation using Finite Element Method (FEM) with the assistance of COMSOL software is being carried out for this 2-Dimensional stator bar insulation modelling. A 10kV stator bar insulation system is modelled in 2 dimensions to analyse the electric field distribution under different arrangements of cavities. The simulation results show that the randomly distributed cavities aligned in vertical direction constitutes a greatest upsurge of electric field stress by 85% while horizontally aligned cavities that are 0.7mm apart instigates only 46.2% increase in electric field stress within the cavity. This affirms that the arrangement of cavities poses an influence over the electric field distribution inside stator bar insulation system.
不同空腔布置定子棒绝缘系统电场分布的仿真与分析
高压机械停止的根本原因可能是由于空腔的存在引起的空腔放电导致绝缘系统失效。本文研究了不同空腔排列方式下定子棒绝缘系统内的电场分布,以及不同排列方式下单个或多个空腔的电场分布,以帮助研究空腔内的电场应力和定子棒绝缘系统的电击穿趋势。在COMSOL软件的辅助下,采用有限元法(FEM)对该二维定子棒绝缘模型进行了仿真。对10kV定子棒绝缘系统进行了二维建模,分析了不同空腔布置下的电场分布。模拟结果表明,垂直方向随机分布的空腔引起的电场应力增幅最大,达到85%,而水平方向间距为0.7mm的空腔引起的电场应力增幅仅为46.2%。这证实了空腔的布置对定子棒绝缘系统内部电场分布的影响。
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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