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The Movement Process of Metal Particles in GIS Under High Pressure

机译:高压下GIS金属颗粒的运动过程

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Gas Insulated Switchgear (GIS) is a complete set of switchgear, such as circuit breaker, disconnector, bus bar, which enclosed in a metal shell filled with SF6 gas grounding. The presence of internal metal particles will cause partial discharge of GIS, leading to insulation breakdown. The main purpose of this paper is to study the particle movement rules of different shapes and sizes based on different types of voltage, so as to determine a kind of fault map. The fault map is used to estimate the shape and size of the metal particles that cause GIS partial discharge. Based on this purpose, the movement of metal particles under the action of high voltage AC, DC and pulse signals are simulated by electric field simulation and mechanical analysis. The results show that there is no regularity in the movement of particles under AC and DC, but there is regularity in the movement of particles under pulse voltage. Different types and sizes of particles have different trajectories. The movement height of particles is directly proportional to the length of particles, the applied voltage and inversely proportional to the half diameter of particles.
机译:气体绝缘开关设备(GIS)是一套完整的开关设备,如断路器,隔断部,母线,封装在填充SF的金属壳中 6 气体接地。内部金属颗粒的存在将导致GIS的局部放电,导致绝缘分解。本文的主要目的是基于不同类型的电压研究不同形状和大小的粒子运动规则,以确定一种故障图。故障图用于估计导致GIS部分放电的金属颗粒的形状和尺寸。基于此目的,通过电场模拟和机械分析模拟了高压AC,DC和脉冲信号的作用下金属颗粒的运动。结果表明,AC和DC在粒子下的运动中没有规律性,但是在脉冲电压下颗粒的运动存在规律性。不同类型和粒子的粒子具有不同的轨迹。颗粒的运动高度与颗粒的长度成比例,施加的电压和与颗粒的半径成反比。

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