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Review about PD and breakdown induced by conductive particles in an insulating liquid

机译:在绝缘液体中的导电颗粒引起的PD和击穿综述

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摘要

In insulating liquid, a conductive particle becomes charged through the interaction with a conductor exposed to an applied field. Then, it migrates in the action of both electric field and fluid and causes the enhancement of local field when it is in proximity of the conductor with opposite polarity. The enhancement will lead to partial discharge (PD) and may even ignite full gap breakdown in special cases. This study reviews comprehensive researches relevant to these topics. In the first place, several theoretical methods about how to obtain the charges held by a conductive particle with known potential are introduced, so are experimental methods. Then, forces acting on the charged particle in liquid are classified, and its migration characteristics, as well as influential factors, are described. Subsequently, PD and breakdown mechanisms of liquid initiated by conductive particles are presented. The latter involves two cases: electric-field enhancement when the particle concentration is low and bridging phenomenon when it is high. At last, two important, but frequently ignored factors, i.e. dielectric barrier and oil flow, are highlighted, and the authors’ suggestions for future work are put forward.
机译:在绝缘液体中,导电颗粒通过与暴露于施加的田地暴露的导体的相互作用来充电。然后,它在电场和流体的动作中迁移,并在具有相反极性的导体附近时导致局部的增强。增强将导致部分放电(PD),甚至可以在特殊情况下点燃完全差距故障。本研究审查了与这些主题相关的综合研究。首先,引入了关于如何获得具有已知电位的导电粒子的电荷的若干理论方法,因此实验方法。然后,描述作用在液体中的带电粒子上的力分类,描述其迁移特性以及影响因素。随后,提出了由导电颗粒引发的液体的PD和裂缝机制。后者涉及两种情况:当颗粒浓度低时电场增强且桥接现象高。最后,两个重要但经常被忽视的因素,即介电屏障和油流量被突出,提出了对未来工作的建议。

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