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Simulation of vacuum arc dynamic process with consideration of the change of gap distance

机译:考虑间隙距离变化的真空电弧动态过程仿真

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Based on two-dimensional steady magentohydrodynamic (MHD) model, the influence of gap distance change on vacuum arc characters is simulated and analyzed. Firstly, vacuum arc with constant current and variational gap distance is studied. It could be known that, with the increase of gap distance, the magnitude of vacuum arc plasma parameters increases and the radial asymmetry of them aggravates. Secondly, vacuum arc with half-wave sinusoidal current and linearly increased gap distance from a time point after arc ignition is simulated. The half-wave current is discreted at a series of discrete moments and the gap distance values are also gotten at these moments, then simulations are done at these time points respectively. By comparison among these simulation results, it could be known that the magnitude of arc plasma parameters increases firstly then decreases and their radial asymmetry follows the same trend, but the transition occurs not at current peak but after it.
机译:基于二维稳态磁流体力学(MHD)模型,模拟并分析了间隙距离变化对真空电弧特性的影响。首先,研究了具有恒定电流和可变间隙距离的真空电弧。可以知道,随着间隙距离的增加,真空电弧等离子体参数的大小增加,并且它们的径向不对称性加剧。其次,模拟了具有半波正弦电流的真空电弧,并且从电弧点火后的时间点开始线性增加了间隙距离。半波电流在一系列离散时刻被离散,并且在这些时刻也获得了间隙距离值,然后分别在这些时间点进行了仿真。通过比较这些模拟结果,可以知道电弧等离子体参数的大小先增大然后减小,并且其径向不对称性遵循相同的趋势,但是过渡不是在电流峰值处发生,而是在电流峰值之后发生。

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