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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Charging and behavior of a spherically conducting particle on a dielectrically coated electrode in the presence of electrical gradient force in atmospheric air
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Charging and behavior of a spherically conducting particle on a dielectrically coated electrode in the presence of electrical gradient force in atmospheric air

机译:在大气中存在电梯度力的情况下,球形导电颗粒在介电涂层电极上的充电和行为

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摘要

This paper discusses the charging and behavior of a spherically conducting particle on a dielectrically coated electrode in non-uniform dc and ac electric fields between non-parallel plane electrodes in atmospheric air. The charging mechanism of a particle resting on a dielectrically coated electrode is investigated by observing light emissions from partial discharges and by utilizing the dust figure technique. The charge acquired by a particle is estimated from the results of particle motion onset voltage measurement and direct measurement with a Faraday cage. The basic particle movement as well as particle-triggered breakdown characteristics under non-uniform electric field distribution along the electrode surface is also investigated. The results suggest that the effect of the electrical gradient force/dielectro-phoretic force on particle motion on a dielectrically coated electrode should be adequately considered in the design of gas insulated systems (GIS). This is because a particle can move laterally on the coated electrode toward increasing electric field regions by the action of the electrical gradient force which is independent of the charge on the particle. Also the possibility of the particle charging and lifting at high field regions or reaching and adhering onto an insulating spacer further increases the risk of breakdown.
机译:本文讨论了在大气中非平行平面电极之间的直流和交流电场不均匀的情况下,介电涂层电极上球形导电颗粒的充电和行为。通过观察局部放电的光发射并利用尘埃图形技术,研究了介电涂层电极上的颗粒的充电机理。根据粒子运动起始电压测量结果和法拉第笼的直接测量结果,估算出粒子所捕获的电荷。还研究了沿电极表面的非均匀电场分布下的基本粒子运动以及粒子触发的击穿特性。结果表明,在气体绝缘系统(GIS)的设计中应充分考虑电梯度力/介电泳力对介电涂层电极上粒子运动的影响。这是因为颗粒可以通过电梯度力的作用而在涂覆的电极上向着增大的电场区域横向移动,而电梯度力与颗粒上的电荷无关。同样,粒子在高电场区域带电和举起或到达并粘附在绝缘垫片上的可能性进一步增加了击穿的风险。

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