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PPPS-2013: Collisional-radiative modeling of free-burning arc plasma in argon

机译:PPPS-2013:氩气中自由燃烧电弧等离子体的碰撞辐射建模

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. As next step, a non-equilibrium model of the arc in argon describing the heat transfer, electric and magnetic field, and excitation kinetics of a large number of levels of argon atoms is presented. The extended scheme of levels allows obtaining the populations of individual levels giving rise to important radiative transitions and enables better comparison with spectroscopic measurements. The model is based on the magnetohydrodynamic approach and starts from macroscopic parameters only. The Navier-Stokes equations provide a solution for the total mass density and the mass-averaged velocity. Separate energy equations are solved for heavy particles and electrons. The current continuity, Ohm's law and Maxwell's equations are considered to obtain the electric potential and the self-induced magnetic field. The heat transport in the electrodes accounts for thermal conduction, Joule heating and energy fluxes on their boundaries with the plasma due to ion and electron heating, electron emission and black body radiation. The unified description of the plasma and the electrodes is realized by implementing a sheath model
机译:。下一步,提出了氩气中电弧的非平衡模型,该模型描述了许多氩原子水平的传热,电场和磁场以及激发动力学。水平的扩展方案允许获得引起重要辐射跃迁的单个水平的总体,并能够更好地与光谱测量进行比较。该模型基于磁流体动力学方法,并且仅从宏观参数开始。 Navier-Stokes方程为总质量密度和质量平均速度提供了一个解决方案。对重粒子和电子求解单独的能量方程。考虑电流连续性,欧姆定律和麦克斯韦方程,以获得电位和自感应磁场。电极中的热传递是由于离子和电子加热,电子发射和黑体辐射而导致的热传导,焦耳加热和与等离子体交界处的能量通量。等离子体和电极的统一描述是通过实现鞘模型来实现的

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