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Dynamic model simulation of arc formation in vacuum circuit breaker

机译:真空断路器电弧形成的动态模型仿真

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Based on the theories of fractal and gas discharge, microscopic morphology of vacuum arc, the process of arc formation and development of discharge channel in the vacuum circuit breaker are simulated. The effects of temperature and electromagnetic field on the arc are also considered. The opening stroke is 10mm in our work. Voltage is 75kV, and current is 1kA. The effects of temperature on the arc radius, the role of self-generated magnetic fields and thermal conduction are simulated here. The results show that electron density and the coefficient of heat conduction are increased gradually. Average temperature increases at first and decreases latter, then collision coefficient enhances. The radius of arc also increases in the stage of arc formation and development. The arc radius contract and stable arc forms after breakdown.
机译:基于分形和气体放电的理论,对真空电弧的微观形态,电弧的形成过程以及真空断路器放电通道的发展进行了模拟。还考虑了温度和电磁场对电弧的影响。在我们的工作中,打开行程为10毫米。电压为75kV,电流为1kA。在此模拟了温度对电弧半径,自生磁场的作用和热传导的影响。结果表明,电子密度和热传导系数逐渐增加。平均温度先升高后降低,然后碰撞系数增加。电弧的半径在电弧形成和发展的阶段也增加。击穿后,圆弧半径缩小并形成稳定的圆弧。

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