一种改进的气体绝缘介质非均匀间隙中起电量计算模型

C. Bak, B. Bak‐Jensen, J. T. Sørensen
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引用次数: 3

摘要

在高压系统中使用的大多数硬件需要一个彻底的几何设计,涉及击穿的开始(局部放电,电晕)。工作表明了对这种电晕发作设计优化准则的兴趣。电晕起始优化是基于数值电场计算和确定起始/不起始的不同方法。实用的高压设备导体表面通常会形成不均匀的电场,其击穿行为由表面电场和电场衰减率决定。除此之外,在其他问题中,人们必须考虑气体的类型,温度和压力。因此,在冠状病毒发病设计中应用准确的发病标准似乎很重要。这项工作提出了对实际电极几何形状有用的验证起始标准的第一步。这是在著名的非均匀场的Townsend方法的基础上完成的,对气体参数进行了修改,并对IEC 52球-球间隙击穿电压进行了验证。结果表明,介质非均匀场的起击穿电压可以用不同电极曲率和电场利用程度的相同准则计算,精度优于4%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An improved model for the calculation of the electrical onset in gas insulated medium inhomogeneous gaps
Most hardware for use in HV systems requires a thorough geometric design concerning the inception of breakdown (partial discharges, corona). Work shows an interest in such corona onset design optimization criteria. Corona onset optimization is based on numerical E-field calculations and different methods for determination of onset/no onset. Practical HV equipment conductor surfaces will normally form nonuniform E-fields possessing a breakdown behaviour determined by both the surface electric field and the rate of decay of the field. Besides that, among other issues, one has to take into account the type of gas, the temperature and the pressure. Therefore it seems important to apply an accurate onset criteria in corona onset design. This work presents the first step of a validated onset criteria useful for practical electrode geometries. This is accomplished for atmospheric air on the basis of the well-known Townsend approach for nonuniform fields with modifications concerning the gas parameters and validation against IEC 52 sphere-sphere gap breakdown voltages. It was found that the onset/breakdown voltage for medium nonuniform fields can be calculated by means of the same criteria for varying electrode curvatures and degrees of field utilization with an accuracy better than 4%.
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