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Current constriction phenomena in high-current vacuum arc and its influence factors

机译:大电流真空电弧中的电流收缩现象及其影响因素

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Based on magnetohydrodynamic (MHD) model, current constriction phenomenon in high-current vacuum arc (HCVA) is researched and analyzed in this paper. According to simulation results, it can be found that the significant current constriction only near anode regions for lower current vacuum arc; but with the increase of arc current, the constriction of arc current also appears near cathode side, and with the further increase of arc current, the current constriction of cathode side can be more significant than that of anode side. The current constriction near cathode side in very high-current vacuum arc can be caused by the MHD process of arc column (associated with the increase of plasma density and plasma pressure). Current constriction phenomena in HCVA is associated with many factors, such as arc currents, AMF strengths, AMF distribution, electrode diameter, electrode separation, plasma status at cathode side and anode side, and so on. The increase of axial magnetic field strength will inhibit the current constriction of the whole arc column. Saddle-shaped AMF can get more uniform current density distribution than bell-shaped AMF. The experimental phenomena of current constriction near cathode side will also be discussed in this paper. Plasma status of cathode side and anode side will influence current distribution of arc column.
机译:本文基于磁流体动力学(MHD)模型,对大电流真空电弧(HCVA)中的电流压缩现象进行了研究和分析。根据仿真结果,可以发现只有在阳极区域附近电流明显收缩,电流真空度较低。但是随着电弧电流的增加,电弧电流的收缩也出现在阴极侧,并且随着电弧电流的进一步增加,阴极侧的电流收缩比阳极侧更显着。高电流真空电弧中阴极侧附近的电流收缩可能是由电弧塔的MHD过程引起的(与等离子体密度和等离子体压力的增加有关)。 HCVA中的电流收缩现象与许多因素有关,例如电弧电流,AMF强度,AMF分布,电极直径,电极分离,阴极侧和阳极侧的等离子体状态等。轴向磁场强度的增加将抑制整个电弧柱的电流收缩。鞍形AMF可以获得比钟形AMF更均匀的电流密度分布。本文还将讨论阴极侧附近电流收缩的实验现象。阴极侧和阳极侧的等离子体状态会影响电弧塔的电流分布。

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