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首页> 外文期刊>IEEE Transactions on Power Delivery >Effect of floating conducting objects on critical switching impulse breakdown of air insulation
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Effect of floating conducting objects on critical switching impulse breakdown of air insulation

机译:浮动导体对空气绝缘临界开关脉冲击穿的影响

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摘要

The paper analyses the mechanism of breakdown of phase-to-ground and phase-to-phase air insulation in the presence of large conducting floating objects, under critical switching impulse stress. A new physical modelling approach is introduced which involves determination of the potential of the floating object by charge simulation technique, assessment of streamer breakdown and/or leader inception and propagation in the partial gaps and finally predicts the critical breakdown voltage of various configurations. As to phase-to-ground insulation, the investigation covers rod-plane, conductor-plane and conductor-tower leg configurations with different gap spacings as well as different shapes, dimensions and positions of the floating object. The phase-to-phase study additionally includes the effect of negative switching impulse content of the applied stress. The model is in excellent agreement with the experiment and provides a novel tool for assessment of the effect of floating objects on switching impulse breakdown of some basic air gap configurations relevant to live line work.
机译:本文分析了在临界开关脉冲应力下存在大的导电漂浮物的情况下,相接地和相间空气绝缘的击穿机理。引入了一种新的物理建模方法,该方法涉及通过电荷模拟技术确定浮动物体的电势,评估拖缆击穿和/或引线在部分间隙中的起始和传播,并最终预测各种配置的临界击穿电压。关于相接地绝缘,研究涵盖了具有不同间隙间距以及漂浮物体的形状,尺寸和位置的杆面,导体面和导体塔腿的配置。相间研究还包括施加应力的负开关脉冲含量的影响。该模型与实验非常吻合,并提供了一种新颖的工具,用于评估浮动物体对与带电作业有关的一些基本气隙配置的开关脉冲击穿的影响。

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