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Particle trajectories and its charging behaviors: effect of gas type and electric field

机译:粒子轨迹及其充电行为:气体型和电场的影响

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摘要

Conductive particles in the gas insulated transmission lines (GIL) induce the breakdown between electrodes or the flashover along insulators. To solve the problem of particle moving and realize the particle-moving regulation, particle trajectories should firstly be determined in air and SF6. This paper presents the results of particle trajectories and its charging behaviors at vacuum and SF6, respectively. Metal particles with different materials and sizes were introduced and the charge quantity was calculated. The results showed that the particle lift-off electric field in SF6 was higher than that in air under the same gas pressure, that is, the charge on particle in SF6 was about 0.789 times lower than that in air under the same condition. Besides, the lift-off electric field of particle increased with the pressure increase of SF6. The charge on particle was affected by the concentration of electric field near particle and the electrical negative features of SF6. The work provided the data support for development of DC GIL in particle defect suppression.
机译:气体绝缘输电线路(GIL)中的导电颗粒会导致电极间击穿或沿绝缘子闪络。为了解决颗粒运动问题,实现颗粒运动规律,首先需要确定颗粒在空气和SF6中的运动轨迹。本文分别给出了粒子在真空和SF6下的运动轨迹及其充电行为的结果。介绍了不同材料和尺寸的金属颗粒,并计算了其电荷量。结果表明,在相同气压下,SF6中颗粒的剥离电场高于空气中的电场,即在相同气压下,SF6中颗粒的电荷约为空气中的0.789倍。此外,颗粒的剥离电场随SF6压力的增加而增大。颗粒上的电荷受颗粒附近电场浓度和SF6电负特性的影响。该工作为DC-GIL在粒子缺陷抑制方面的发展提供了数据支持。

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