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Influence of barriers on the lightning and switching impulse strength of mean air gaps in point/plane arrangements

机译:障碍物对点/平面布置中平均气隙的雷电和切换脉冲强度的影响

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摘要

The influence of clean and polluted barriers on the breakdown voltage of point/plane mean air gaps (30 to 200 cm) under lightning and switching voltages is addressed. The conditions of existence of flashover around the barrier without breakdown and without surface discharge are determined. It is shown that a clean insulating barrier situated near the electrode point, particularly at about 20% of the gap, leads to a significant increase in the breakdown voltage of the air gap. This increase is especially due to channel elongation of the disruptive discharge. A polluted barrier with surface conductivity higher than 1.6 mu S leads, similar to a metallic barrier, to a decrease in the breakdown voltage as compared with that without a barrier. A simplified model to estimate the optimal position of the barrier, considering the surface charge densities on both of its sides, is presented. It gives results in good agreement with experimental ones.
机译:解决了在雷电和开关电压下,清洁和污染的屏障对点/平面平均气隙(30至200 cm)击穿电压的影响。确定在障碍物周围没有击穿和没有表面放电的闪络的存在条件。结果表明,位于电极位置附近,特别是在间隙的大约20%处的干净绝缘层会导致气隙的击穿电压显着增加。这种增加尤其是由于破坏性放电的通道延长。与没有金属阻挡层相比,表面电导率高于1.6μS的受污染的金属阻挡层与金属阻挡层相似,导致击穿电压降低。提出了一个简化的模型来估计势垒的最佳位置,同时考虑了势垒两侧的表面电荷密度。结果与实验结果吻合良好。

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