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Detailed Numerical Simulation of Cathode Spots in Vacuum Arcs—I

机译:真空电弧中阴极斑点的详细数值模拟—I

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摘要

A model of cathode spots in high-current vacuum arcs is developed, with account of the plasma cloud left over from a previously existing spot, all mechanisms of current transfer to the cathode surface, including the contribution of the plasma produced by ionization of the metal vapor emitted in the spot, and the Joule heat generation in the cathode body. The simulation results allow one to clearly identify the different phases of life of an individual spot: the ignition, the expansion over the cathode surface, and the thermal explosion. The expansion phase is associated with a nearly constant maximum temperature of the cathode, which occurs at the surface and is approximately 4700–4800 K. Thermal explosion is a result of thermal instability (runaway), which develops below the cathode surface when the Joule heating comes into play. The development of the spot is interrupted if the plasma cloud has been extinguished: the spot is destroyed by heat removal into the bulk of the cathode due to thermal conduction. Therefore, different scenarios are possible depending on the time of action of the cloud: the spot may be quenched before having been formed or during the expansion phase, or even at the initial stage of thermal explosion.
机译:建立了大电流真空电弧中阴极斑点的模型,考虑到先前存在的斑点留下的等离子体云,所有电流转移到阴极表面的机理,包括由金属电离产生的等离子体的贡献当场散发出蒸汽,并在阴极体内产生焦耳热。仿真结果使人们可以清楚地识别单个点的不同寿命阶段:点火,阴极表面的膨胀和热爆炸。膨胀阶段与阴极几乎恒定的最高温度有关,该最高温度出现在表面上,约为4700–4800K。热爆炸是热不稳定性(失控)的结果,当焦耳加热时,热不稳定性会在阴极表面以下发展。发挥作用。如果等离子云被熄灭,则斑点的形成会中断:由于热传导,斑点被热量转移到阴极主体中而被破坏。因此,根据云的作用时间,可能会出现不同的情况:斑点可能在形成之前或在扩张阶段,甚至在热爆炸的初始阶段被淬火。

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