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首页> 外文期刊>IEEE Transactions on Industry Applications >Electrode protrusions and particle chaining as factors affecting the dielectric strength of air
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Electrode protrusions and particle chaining as factors affecting the dielectric strength of air

机译:电极突起和颗粒链接是影响空气介电强度的因素

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Electrode protrusions and free particles have been demonstrated to reduce dramatically the breakdown voltage of insulating fluids. This paper examines two factors which affect the dielectric strength of gaseous insulators: (1) shape and size of electrode protrusions, and (2) particle chain formation. A computer program, based on the boundary element method, was employed for the computation of the electric field modified by an electrode protrusion and/or a particle chain. The results regarding field enhancement were used as input data of another program that evaluated the dielectric strength of the air-gap. Two types of protrusions were studied: hemispheres and hemispherically ended rods. One to ten conductive spheres were considered to be attracted to such protrusions and chain at the top of them. The computations showed that the large protrusions are more harmful than the small ones and that the dielectric strength of the air-gap decreases with the number of particles in a chain.
机译:电极突起和自由颗粒已被证明可以显着降低绝缘流体的击穿电压。本文研究了影响气体绝缘子介电强度的两个因素:(1)电极突起的形状和大小,以及(2)颗粒链的形成。基于边界元法的计算机程序被用于计算由电极突起和/或粒子链修饰的电场。关于场增强的结果用作评估气隙介电强度的另一个程序的输入数据。研究了两种类型的突起:半球和半球形杆。一到十个导电球被认为被这些突起和顶部的链吸引。计算表明,大的突起比小的突起更有害,并且气隙的介电强度会随着链中颗粒的数量而降低。

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