带介电膜的小型气体绝缘管道中粒子动力学的控制

G. Kumar, J. Amarnath, B.P. Singh, D. Chowdary
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引用次数: 0

摘要

压缩气体绝缘开关柜(GIS)设备发展迅速。由压缩六氟化硫(SF6)绝缘的传输和开关设备中的导电颗粒可导致高达90%的气体介电强度损失。这些粒子可以在电场中自由移动,也可以固定在导体上,从而增强局部表面场。在一个水平同轴系统中,粒子位于外壳的内表面,粒子的运动是随机的,但这种随机性取决于接近同轴导体时的恢复系数和入射角。电力工业已经使用了几种方法来控制和减少GIS中颗粒污染的影响。其中一种技术是在外部GIS外壳的内表面涂上介电(高电阻率)涂层。由于涂层的作用,抬升位于GIS外壳内表面的粒子所需的电场大大增加。在不同的交流电压水平下,对涂覆和未涂覆情况下的粒子运动进行了模拟。给出了实验结果并进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control of particle dynamics in a compact size gas insulated busduct with dielectric films
The development of compressed gas insulated switchgear (GIS) equipment has progressed rapidly. Conducting particles in transmission and switching equipment insulated by compressed sulphur hexafluoride (SF6) can result in loss of as much as 90% of the gas dielectric strength. These particles may be free to move in the electric field or may be fixed on the conductors, thus enhancing local surface fields. In a horizontal coaxial system with particles resting on the inside surface of the enclosure, the motion of such particles is random but the randomness depends on the coefficient of restitution and angle of incidence when approaching the coaxial conductors. The power industry has utilized several methods to control and minimize the effect of particle contamination in GIS. One such technique is to apply a dielectric (high resistivity) coating to the inside surface of the outer GIS enclosure. The electric field necessary to lift a particle resting on the inside surface of a GIS enclosure is much increased due to the coating. The simulation of the particle movement was carried under different AC voltage levels for coated and uncoated cases. The results have been presented and analyzed.
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