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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >MHD modeling of rotating arc under restrike mode in 'Kvaerner-type' torch: part I. Dynamics at 1 bar pressure
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MHD modeling of rotating arc under restrike mode in 'Kvaerner-type' torch: part I. Dynamics at 1 bar pressure

机译:“kvaerner型”火炬中旋转弧模型的MHD建模:第一部分I.动态1巴压力

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摘要

This paper focuses on the 3D MHD modeling of an 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, agreeing with previous experimental works at atmospheric pressure. These dynamics have non-negligible consequences in the plasma process: the hopping mode induces more erosion due to a higher heat flux at the electrodes surfaces in comparison to the gliding arc; the latter mode results also in a strong gas swirling inside the torch, thus longer particles residence time is predicted.
机译:本文侧重于工业水平的弧等离子体的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到跳跃弧度,同意以前的实验工作在大气压下。 这些动态在等离子体过程中具有不可忽略的后果:跳跃模式由于电极表面上的较高的热通量而导致与滑动弧相比的较高的热通量引起更多的侵蚀; 后一种模式也是在焊炬内部旋转的强气体中的结果,因此预测了更长的粒子停留时间。

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