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Simulation of gas flow phenomena in high-voltage self-blast circuit breakers at heavy fault current interruption

机译:故障电流严重中断时高压自爆断路器气流现象的模拟

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CFD (computational fluid dynamics) calculations for high- and low-current arcs in an interrupter of the self-blast type have been performed. The high-current simulation provides information about the mixing process of the hot PTFE cloud with the cold SF/sub 6/ which is difficult to access for measurement. In addition, it yields the gas state inside the pressure chamber when the fault current approaches its current zero. Depending on the arcing time, fault current and interrupter geometry blow temperatures of up to 2000 K with a PTFE mass fraction of up to 10% have been found. The low-current simulation performed for this blow temperature gives detailed information about the arc behaviour in the time immediately before current zero. Special attention has been paid to the flow phenomena in the expanding nozzle region. Due to the interaction of the supersonic flow with the obtuse arcing contact and the nozzle geometry, a complex flow structure with a shock Is established. This has been simulated for low-current arcs in an extinguishing flow with boundary conditions as obtained from the high-current simulation.
机译:对于自爆式灭弧室中的高电流和低电流电弧,已经执行了CFD(计算流体力学)计算。高电流模拟提供了有关热的PTFE云与冷的SF / sub 6 /混合过程的信息,这很难进行测量。此外,当故障电流接近其电流零时,它会在压力室内产生气体状态。根据电弧放电时间,发现故障电流和断续器几何形状吹塑温度高达2000 K,PTFE质量分数高达10%。针对此吹塑温度执行的低电流仿真给出了在电流为零之前的时间内有关电弧行为的详细信息。特别注意了喷嘴扩展区域的流动现象。由于超音速流与钝角电弧接触和喷嘴几何形状的相互作用,建立了具有冲击的复杂流动结构。对于大电流模拟中获得的具有边界条件的灭火流中的小电流电弧,已对此进行了模拟。

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