Simulation on the Surface Charge Behaviors of Epoxy Insulator by Corona Discharge

Du Boxue, Hucheng Liang, Li Jin
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Abstract

A majority of the high voltage (HV) electrical equipment which has solid-gas insulation has suffered greatly from the accumulation of the surface charges gener-ated from the corona discharge. The local electric field may be distorted by the surface charge ’ s existence and in turn causes the surface flashover faults in excessive circumstances. Consequently, it ’ s significant to work out the mechanism of the procedure of the surface charge accumulation. A simulation model which combines both the charge trapping-detrapping procedure and the plasma hydrodynamics was created. The outcome of the simulation has agreed with the experimental results. The corona discharge intensity rises in the initial stage and then reduces as time goes by. There are various shapes of the surface potential distribution curves at various times. The central value increases quickly with time first and at last becomes saturated. Surface charges are observed in the epoxy insulator ’ s skin layer, some of them are mobile but some are captured by traps.
电晕放电对环氧绝缘子表面电荷行为的模拟
大多数具有固气绝缘的高压电气设备都受到电晕放电产生的表面电荷积累的严重影响。表面电荷的存在会使局部电场发生畸变,在过度情况下引起表面闪络故障。因此,研究表面电荷积累过程的机理具有重要意义。建立了电荷捕获-去捕获过程与等离子体流体力学相结合的模拟模型。仿真结果与实验结果吻合较好。电晕放电强度在初始阶段呈上升趋势,随着时间的推移逐渐减小。不同时刻的表面电位分布曲线形状各异。中心值首先随时间迅速增大,最后趋于饱和。在环氧绝缘子的表皮层中观察到表面电荷,其中一些是可移动的,而另一些则被陷阱捕获。
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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