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Effect of Lorentz force on the conducting contaminant trajectory in a three phase Gas Insulated Busduct

机译:洛伦兹力对三相气体绝缘管道中污染物传导轨迹的影响

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The main cause for the most of the failures in Gas Insulated Busduct is attributed to the presence of metallic particle contaminations in the form of loose particles, which may exist on the inner surface of outer enclosure of GIB or on HV conductor. These conducting particles under the influence of high voltage may acquire sufficient charge and randomly move in the inter electrode gap due to variable electric field. In this paper, conducting particle trajectory is obtained for 300 kV, 400 kV and 500 kV power frequency voltages in a Gas Insulated Busduct (GIB) with SF6 as dielectric medium considering the effect of Lorentz force. Conducting contaminants considered are Copper, Aluminum and Silver particles of radius 0.1 mm and length 10 mm of wire type in a GIB of an outer enclosure diameter 500 mm and inner conductor of diameter 64 mm is considered. The motion of the wire particle and these particles will be of irregular cross section and can move in any direction and therefore the movement of the particle may be simulated using Monte-Carlo Technique.
机译:气体绝缘母线管中大多数故障的主要原因归因于存在散装颗粒形式的金属颗粒污染,这些污染可能存在于GIB外壳的内表面或高压导体上。这些导电粒子在高电压的影响下可能会获得足够的电荷,并且由于可变电场而在电极间间隙中随机移动。本文考虑了洛仑兹力的作用,在以SF 6 为介质的气体绝缘母线(GIB)中获得了300 kV,400 kV和500 kV工频电压的导电粒子轨迹。所考虑的导电污染物是外径为500 mm,内径为64 mm的GIB中半径为0.1 mm,线长为10 mm的铜线,铝线和银线类型。导线粒子和这些粒子的运动将具有不规则的横截面,并且可以在任何方向上移动,因此可以使用蒙特卡洛技术模拟粒子的运动。

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