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Coupling of radiation, excited states and electron energy distribution function in non equilibrium hydrogen plasmas

机译:非平衡氢等离子体中辐射,激发态与电子能量分布函数的耦合

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摘要

Some of the recent efforts in the state-to-state modeling of H/H2-based plasma are considered, with particular concern to the aspects of self-consistent coupling between the chemical kinetics, electron kinetics and radiation. These aspects are first illustrated in the case of a O-dimensional model considering both optically thin and optically thick cases in recombining and ionizing regimes. In the second part of the paper, a 1 -dimensional extension of the model is applied to study a steady normal shock generated in an H2/He plasma of interest in atmospheric entry problems. A radiation transfer equation is coupled to the model as well, to analyze the effect of radiation transfer on chemical kinetics and compare to the commonly used thin and thick plasma approximations. The most significant result is the influence of reabsorption on the concentration of excited states, which in turn creates additional structure on the electron energy distribution function through second kind collisions.
机译:考虑了基于H / H2的等离子体的状态间建模中的一些最新成果,特别关注化学动力学,电子动力学和辐射之间的自洽耦合方面。这些方面首先在O维模型的情况下进行了说明,其中考虑了重组和电离过程中光学上较薄和光学上较厚的情况。在本文的第二部分中,使用该模型的一维扩展来研究在大气进入问题中感兴趣的H2 / He等离子体中产生的稳态法向冲击。辐射传输方程也与模型耦合,以分析辐射传输对化学动力学的影响,并与常用的稀薄和厚等离子体近似值进行比较。最重要的结果是重吸收对激发态浓度的影响,这又通过第二种碰撞在电子能量分布函数上创建了额外的结构。

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