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Numerical Simulation of the Chemical Combination and Dissociation Reactions of Neutral Particles in a Rarefied Plasma Arc Jet

机译:稀薄等离子弧射流中性粒子化学结合与解离反应的数值模拟

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摘要

The expansion of neutral particles in a plasma arc jet is crucial for the distribution of the ions and electrons, especially in an unsteady rarefied plasma arc jet with chemical reactions. A 3-D unsteady investigation of neutral particles in a rarefied flow with chemical combination and dissociation reactions is numerically simulated based on an in-house direct simulation Monte Carlo (DSMC) code. The evolution of the neutral particles flow in vacuum cylinders is presented, and the influence of the chemical reactions has been investigated for the neutral particles. The predicted results imply that the dissociation reaction plays a key role in the expansion of the neutral particles process. In order to study the expansion of the neutral particles in an electric field, an electrostatic particle-in-cell (PIC) and DSMC are combined to simulate the axisymmetric rarefied plasma flows with chemical reactions. Two sets of grids are employed for the DSMC/PIC method by considering the different requirements of both the methods based on the molecule mean free path and the Debye length. The properties of both the flow and electric fields are analyzed in detail. It is found that the electric potential increases if the initial velocity of the ions from the inlet is sufficiently large, and accordingly, the number density of the ions in the flow field increases further.
机译:等离子体电弧射流中中性粒子的膨胀对于离子和电子的分布至关重要,尤其是在具有化学反应的不稳定稀疏等离子体电弧射流中。基于内部直接模拟蒙特卡洛(DSMC)代码,对带有化学结合和解离反应的稀疏流中的中性粒子进行3-D非稳态研究。介绍了中性粒子在真空缸中流动的演变,并研究了化学反应对中性粒子的影响。预测结果表明,离解反应在中性粒子过程的扩展中起关键作用。为了研究中性粒子在电场中的膨胀,将静电内嵌粒子(PIC)和DSMC结合起来,通过化学反应模拟轴对称稀疏等离子体流。基于分子平均自由程和德拜长度,考虑两种方法的不同要求,DSMC / PIC方法采用了两组网格。详细分析了流场和电场的性质。已经发现,如果来自入口的离子的初始速度足够大,则电势会增加,因此,流场中离子的数量密度会进一步增加。

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