Benefit of Nonlinear Resistive Field Grading Materials on Medium Voltage Bushing by Finite Element Modeling (Flux 2D) vs Experimental Partial Discharge Measurements

R. Metz, M. Hassanzadeh
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Abstract

The effect of resistive field grading coatings on the electric field distribution in a medium voltage bushing has been studied. A typical coating is obtained by applying a commercial resistive field grading material and a conductive varnish that we both have previously electrically characterized. The electric field distribution over the bushing surface was computed and analyzed using a finite element method software (Flux 2D). The electric field enhancements at its critical points with and without field grading material were considered and confronted with experimental partial discharge detection. The complementary between the field grading material and the conductive varnish is highlighted: a special care of the true capability of the conductive layer to withdraw the electrical charges is stressed out.
采用有限元模型(Flux 2D)对中压套管进行非线性电阻场分级材料与实验局部放电测量的优势
研究了电阻场分级涂层对中压套管中电场分布的影响。一种典型的涂层是通过应用商业电阻场分级材料和导电清漆获得的,我们之前都有过电学表征。利用有限元软件Flux 2D对轴套表面电场分布进行了计算分析。考虑了有和没有场级配材料时临界点处的电场增强,并进行了实验局部放电检测。强调了现场分级材料和导电清漆之间的互补:强调了导电层收回电荷的真正能力的特别注意。
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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