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Simulation of the effect of a metal vapor arc on electrode erosion in liquid metal current limiting device

机译:液态金属限流装置中金属蒸气电弧对电极腐蚀影响的模拟

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摘要

The effect of arc plasma on electrode erosion in a liquid metal current limiter (LMCL) is studied. Based on a simplified two-dimensional magnetohydrodynamic model, the elongated GaInSn metal vapor arc and its contraction process in a liquid metal current limiter are simulated. The distributions of temperature, pressure and velocity of the arc plasma are cal-culated. The simulation results indicate that the electrode erosion is mainly caused by two high temperature gas jet flows arising from the pressure gradient, which is a result of the non-uniform arc temperature distribution. The gas flows, which act as jets onto the electrode surface, lead to the evaporation of the electrode material form the surface. A redesign structure of the electrode is proposed and implemented according to the analysis, which greatly increased the service life of the electrode.
机译:研究了电弧等离子体对液态金属限流器(LMCL)中电极腐蚀的影响。基于简化的二维磁流体动力学模型,模拟了细长的GaInSn金属蒸气电弧及其在液态金属限流器中的收缩过程。计算电弧等离子体的温度,压力和速度的分布。仿真结果表明,电极腐蚀主要是由于压力梯度产生的两个高温气体喷流引起的,这是电弧温度分布不均匀的结果。气流以射流的形式作用在电极表面上,导致电极材料从表面蒸发。根据分析提出并实施了电极的重新设计结构,大大延长了电极的使用寿命。

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