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Two-dimensional numerical study of two counter-propagating helium plasma jets in air at atmospheric pressure

机译:大气中空气中两个反向传播的氦等离子体射流的二维数值研究

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摘要

In this paper, a computational study of two counter-propagating helium plasma jets in ambient air is presented. A two-dimensional fluid model is applied to investigate the physical processes of the two plasma jets interaction (PJI) driven by equal and unequal voltages, respectively. In all studied cases, the PJI results in a decrease of both plasma bullets propagation velocity. When the two plasma jets are driven by equal voltages, they never merge but rather approach each other around the middle of the gas gap at a minimum approach distance, and the minimal distance decreases with the increase of both the applied voltages and initial electron density, but increases with the increase of the relative permittivity. When the two plasma jets are driven by unequal voltages, we observe the two plasma jets will merge at the position away from the middle of the gas gap. The effect of applied voltage difference on the PJI is also studied.
机译:本文对环境空气中的两个反向传播的氦等离子体射流进行了计算研究。应用二维流体模型研究分别由相等和不相等的电压驱动的两个等离子体射流相互作用(PJI)的物理过程。在所有研究的案例中,PJI都会导致等离子子弹的传播速度降低。当两个等离子流由相等的电压驱动时,它们不会合并,而是以最小的接近距离彼此围绕气隙的中部,并且最小的距离随着施加电压和初始电子密度的增加而减小,但是随着相对介电常数的增加而增加。当两个等离子流由不相等的电压驱动时,我们观察到两个等离子流将在远离气隙中间的位置合并。还研究了施加的电压差对PJI的影响。

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