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MHD modeling of rotating arc under restrike mode in 'Kvaerner-type' torch: II. Dynamics and stability at 20 bar pressure

机译:“kvaerner型”火炬旋转模式下旋转弧的MHD建模:II。 20巴压力的动力学和稳定性

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This paper focuses on the 3D MHD modeling of a very high-pressure (20 bar) arc plasma at industrial level; the torch is a 'Kvaerner-type' one, made of two concentric graphite electrodes and where spots are displaced with an external magnetic field. Different phenomenologies in arc movement were observed, ranging from a gliding arc on electrodes surfaces to hopping arc foots and notably impacting electrodes erosion and the overall efficiency in the plasma process. Besides those dynamics which are indebted to torch configuration, current and flow rates, arc stability is also investigated with a theoretical model based on an energy principle. This research work provides new insight on the dynamics and stability of the arc inside the Kvaerner-type torch along with an unprecedented understanding of the very high pressure arc under concentric-electrodes-configuration, highlighting strong deformations due to pressure-driven instabilities for the high power arc.
机译:本文侧重于工业水平的非常高压(20巴)弧等离子体的3D MHD建模; 割炬是一个由两个同心石墨电极制成的“kvaerner型”,并且斑点与外部磁场移位。 观察到电弧运动中的不同现象,从电极表面上的滑动弧线跳到跳跃脚,并且显着地冲击电极腐蚀和等离子体过程中的整体效率。 除了那些感谢割炬构造的动态,还通过基于能量原理的理论模型研究了电流和流速,电弧稳定性。 本研究工作提供了新的洞察KVAerner型火炬内部电弧的动态和稳定性,以及在同心电极配置下对非常高压弧的前所未有的理解,突出了由于高压驱动的不稳定性而强烈的变形 功率弧。

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