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Performance of SF6 GIB under the influence of power frequency voltages

机译:SF6 GIB在工频电压影响下的性能

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A method based on particle motion is proposed to determine the particle trajectory in Gas Insulated Substation (GIS) or Gas Insulated Busduct (GIB). In order to determine the movement of a particle in a GIB, an inner electrode diameter of 40mm and outer enclosure diameter of 137mm was considered. Aluminium and copper wires of 0.25mm/10mm and 0.25mm/12mm were considered to be present on the enclosure surface. The motion of the wire (particle) was simulated using the charge acquired by the particles, the macroscopic field that the particle site, the drag coefficient, Reynold's number and coefficient of restitution. In order to determine the random behaviour of moving particles, the calculation of movement in axial and radial directions was done at every time step using rectangular random numbers. Typically for Aluminium wire for a bus duct voltage of 100 kV RMS, the movement of the particle (0.5mm / 8mm) for 2 Sec was computed to be 18.0337mm in radial and 424.4979mm in axial directions and the movement of the particle (0.25mm / 12mm) for 2 Sec was computed to be 22.4249mm in radial and 503.618mm in axial directions. Similar calculation is extended for a typical 200 kV (RMS) Gas Insulated Busduct.
机译:提出了一种基于粒子运动的方法来确定气体绝缘变电站(GIS)或气体绝缘母线(GIB)中的颗粒轨迹。为了确定颗粒在GIB中的运动,考虑了内电极直径40mm和外壳直径137mm。外壳表面上存在0.25mm / 10mm和0.25mm / 12mm的铝和铜线。使用粒子获取的电荷,粒子位置的宏观视野,阻力系数,雷诺数和恢复系数来模拟线(粒子)的运动。为了确定运动粒子的随机行为,使用矩形随机数在每个时间步进行了轴向和径向运动的计算。通常,对于总线电压为100 kV RMS的铝线,计算出2 Sec的粒子(0.5mm / 8mm)的运动在径向方向为18.0337mm,在轴向方向为424.4979mm,而粒子的运动为(0.25 2秒的毫米/ 12毫米)计算为径向22.4249毫米,轴向503.618毫米。对于典型的200 kV(RMS)气体绝缘的母线槽,扩展了类似的计算。

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