Vibrational-Chemical Kinetics in Mars Entry Problems

E. Kustova, E. Nagnibeda, I. Armenise
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引用次数: 26

Abstract

The paper deals with kinetic theory methods modelling of reacting gas flows near spacecrafts entering the Mars atmosphere. For mixtures containing CO2 molecules, the complete kinetic scheme including all vibrational energy transitions, dissociation, recombination and exchange chemical reactions is proposed. For the prediction of gas dynamic parameters and heat transfer to the surface of a spacecraft, a detailed approach taking into account state-to-state CO2 vibrational and chemical kinetics as well as multi-temperature approaches based on quasi-stationary vibrational distributions are used. A more accurate but complicated and time consuming state-to-state model is applied for the numerical simulation of a one-dimensional flow in a boundary layer near the entering body surface. More simple quasi- stationary three-temperature, two-temperature and one-temperature approaches are used for the numerical study of a 2-D viscous shock layer under entry conditions. The vibrational distributions near the surface are far from the local vibrational and chemical equilibrium and a noticeable difference is found between the values of CO2 vibrational-specific energies at the surface obtained by means of the state-to-state and quasi-stationary approaches. At the same time, for all considered approaches, the kinetic model for vibrational distributions and chemical reactions has a weak influence on the heat transfer to the non-catalytic vehicle surface.
火星进入问题中的振动化学动力学
本文讨论了进入火星大气层的航天器附近反应气流的动力学理论和建模方法。对于含有CO2分子的混合物,提出了包含所有振动能量跃迁、解离、复合和交换化学反应的完整动力学方案。对于航天器表面气体动力学参数和传热的预测,采用了考虑状态间CO2振动动力学和化学动力学的详细方法以及基于准平稳振动分布的多温度方法。本文采用一种更精确但复杂且耗时的状态-状态模型,对进入体表面附近边界层内的一维流动进行数值模拟。采用较为简单的准稳态三温、二温和一温方法对二维粘性激波层进行了数值研究。表面附近的振动分布与局部振动和化学平衡相距甚远,用状态-状态方法和准平稳方法得到的CO2表面振动比能值存在显著差异。同时,对于所有考虑的方法,振动分布和化学反应的动力学模型对非催化载体表面的传热影响很小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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