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Numerical Simulation of High-Current Vacuum Arcs With an External Axial Magnetic Field

机译:具有外部轴向磁场的大电流真空电弧的数值模拟

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摘要

Numerical simulations are presented for physical behavior and heat flux to the anode of high-current diffuse of arcs as found in vacuum interrupters. The magnetohydrodynainic approach is applied. Of importance is the consideration of energy balance. Heat flux densities to the anode are predicted in the right order of magnitude and essential physical details of the high-current vacuum arc are disclosed. Only at low or no axial magnetic field superimposed externally and low-arc currents, the anode-directed flow of plasma of diffuse arcs reveals supersonic conditions. Otherwise, subsonic conditions exist. In supersonic diffuse arcs, the anode-directed plasma flow is decelerated and highest pressures appear in front of the anode. At subsonic conditions the highest pressure prevails in the cathode region and the pressure gradient drives the flow to the anode. The transition from diffuse to diffuse columnar arc seems to occur when the evaporation rate of metal vapor from the contact surfaces approaches the emission rate of plasma from the body of cathode spots. Diffuse columnar arcs have moderate pressure variations from cathode to anode. With rising plasma density, the energy loss from the emission of electromagnetic radiation increases and can no longer be neglected.
机译:针对真空灭弧室中发现的物理行为和通向电弧的高电流扩散阳极的热通量进行了数值模拟。应用了磁氢动力方法。重要的是考虑能量平衡。以正确的数量级预测到阳极的热通量密度,并公开了大电流真空电弧的基本物理细节。仅在外部磁场较低或没有轴向磁场且电弧电流较低的情况下,扩散电弧的阳极定向等离子体流才会显示出超音速状态。否则,存在亚音速条件。在超音速扩散弧中,阳极引导的等离子体流减速,并且最高压力出现在阳极前面。在亚音速条件下,最高压力在阴极区域占主导地位,并且压力梯度驱动流向阳极。当来自接触表面的金属蒸气的蒸发速率接近阴极斑点体的等离子体发射速率时,似乎发生了从扩散到扩散柱状电弧的过渡。从阴极到阳极,扩散的圆柱弧具有适度的压力变化。随着等离子体密度的增加,电磁辐射发射引起的能量损失增加,并且不再被忽略。

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