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Numerical Simulation of High-Current Vacuum Arcs Under Axial Magnetic Fields With Consideration of Current Density Distribution at Cathode

机译:考虑阴极电流密度分布的轴向磁场下大电流真空电弧的数值模拟

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摘要

Based on a 2-D magnetohydrodynamic model, high-current vacuum arcs (HCVAs) under axial magnetic fields (AMFs) with consideration of current density distribution at the cathode are simulated and analyzed. The current density distribution at the cathode used in the simulation is obtained by processing the image of cathode spots from experiments. In order to study the influence of current density distribution at the cathode on vacuum arc characteristics, HCVA is simulated under two kinds of current density distribution at the cathode. Then, for HCVA simulation in a half-sinusoidal period, the current density distribution at the cathode and the AMF delay are both taken into account. The simulation results show that the nonuniform current density at the cathode makes the values of the arc plasma parameters in the interelectrode region larger and their radial distribution more nonuniform than the uniform current density at the cathode. The more uniform current density at the cathode and the stronger AMF at the moments in the second 1/4 cycle make the values of the arc plasma parameters in the central region smaller and their radial distribution broader than those in the first 1/4 cycle. In addition, the simulation results will also be compared with the experimental results.
机译:基于二维磁流体动力学模型,对考虑阴极电流密度分布的轴向磁场(AMF)下的高电流真空电弧(HCVA)进行了仿真和分析。模拟中使用的阴极电流密度分布是通过处理来自实验的阴极斑点图像获得的。为了研究阴极上电流密度分布对真空电弧特性的影响,在两种阴极上电流密度分布下模拟了HCVA。然后,对于半正弦周期内的HCVA模拟,要同时考虑阴极处的电流密度分布和AMF延迟。仿真结果表明,阴极处的电流密度不均匀,使得电极间区域的电弧等离子体参数值更大,径向分布比阴极处的电流密度均匀。与第二个1/4周期相比,第二个1/4周期中阴极处的电流密度更加均匀,并且AMF较强,这使得中心区域的电弧等离子体参数值更小,并且其径向分布更宽。此外,仿真结果还将与实验结果进行比较。

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