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Nonequilibrium arc model for the description of arcelectrode interaction

机译:非平衡电弧模型用于描述电弧电极相互作用

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The arc-electrode interaction is a topic of current interest for switching arc and welding applications. The temperature in/on the electrode is of crucial importance since it controls the rate of erosion and determines the choice of material, dimensions and geometry. The electrodes are heated due to thermal and particle fluxes originating from the plasma and depending on the plasma parameters in the regions close to the electrodes. Therefore, the up-to-date models are aimed at unifying the description of the arc plasma and the electrodes. These models are capable of self-consistent determining the net energy flux toward the electrodes and predicting the temperature distribution. In this work, results concerning the cathode region are obtained by means of two approaches - nonequilibrium modelling of the arc column and the near-cathode region and equilibrium modelling of the arc column combined with nonequilibrium description of the cathode boundary layer. The simulations are presented and discussed for arc currents of 100-200 A.
机译:对于切换电弧和焊接应用,电弧电极相互作用是当前关注的话题。电极内/电极上的温度至关重要,因为它可以控制腐蚀速率并确定材料,尺寸和几何形状的选择。由于源自等离子体的热和颗粒通量并且取决于靠近电极的区域中的等离子体参数,电极被加热。因此,最新模型旨在统一电弧等离子体和电极的描述。这些模型能够自洽地确定流向电极的净能量通量并预测温度分布。在这项工作中,通过两种方法获得有关阴极区域的结果-电弧柱和近阴极区域的非平衡建模以及电弧柱的平衡模型与阴极边界层的非平衡描述相结合。提出并讨论了100-200 A电弧电流的仿真。

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