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首页> 外文期刊>Comptes rendus. Mecanique >Coupled Particle-In-Cell and Direct Simulation Monte Carlo method for simulating reactive plasma flows
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Coupled Particle-In-Cell and Direct Simulation Monte Carlo method for simulating reactive plasma flows

机译:单元内粒子耦合和直接模拟Monte Carlo方法耦合反应性等离子体流

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摘要

Plasma flows with high Knudsen numbers cannot be treated with classic continuum methods, as represented for example by the Navier-Stokes or the magnetohydrodynamic equations. Instead, the more fundamental Boltzmann equation has to be solved, which is done here approximately by particle based methods that also allow for thermal and chemical non-equilibrium. The Particle-In-Cell method is used to treat the collisionless Vlasov-Maxwell system, while neutral reactive flows are treated by the Direct Simulation Monte Carlo method. In this article, a combined approach is presented that allows the simulation of reactive, partially or fully ionized plasma flows. Both particle methods are briefly outlined and the coupling and parallelization strategies are described. As an example, the results of a streamer discharge simulation are presented and discussed in order to demonstrate the capabilities of the coupled method.
机译:具有高克努森数的等离子体流无法用经典的连续谱方法来处理,例如Navier-Stokes或磁流体动力学方程式。取而代之的是,必须解决更基本的玻尔兹曼方程,这在此处近似通过基于粒子的方法完成,该方法还允许热和化学非平衡。单元内粒子方法用于处理无碰撞的Vlasov-Maxwell系统,而中性反应流则通过直接模拟蒙特卡洛方法进行处理。在本文中,提出了一种组合方法,可以模拟反应性,部分或完全电离的等离子体流。简要概述了两种粒子方法,并描述了耦合和并行化策略。例如,提出并讨论了拖缆放电模拟的结果,以证明耦合方法的功能。

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