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首页> 外文期刊>Acta astronautica >Numerical simulation of a CO_2, CO, O_2, O, C mixture: Validation through comparisons with results obtained in a ground-based facility and thermochemical effects
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Numerical simulation of a CO_2, CO, O_2, O, C mixture: Validation through comparisons with results obtained in a ground-based facility and thermochemical effects

机译:CO_2,CO,O_2,O,C混合物的数值模拟:通过比较验证在基于地面设施和热化学作用中获得的结果

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摘要

Various issues of numerical simulation of high-enthalpy non-equilibrium flows of a gas mixture of CO2, CO, O-2, O, and C are discussed. Navier-Stokes equations are considered within the framework of one-, two-, and three-temperature approximations with allowance for chemical reactions. In the one-temperature approximation, chemical reactions are modelled by the Arrhenius law. In the multi-temperature approximations, simulations are performed with the use of the Treanor-Marrone model for carbon dioxide dissociation and the Park model for dissociation of diatomic gas molecules, which take into account vibrational non-equilibrium of molecules. The Arrhenius law is also used for calculating recombination reactions and also forward and backward exchange reactions. Translational-vibrational and vibrational-vibrational energy exchange is simulated by a simplified Landau-Teller model. Some examples of flows with the use of the above-mentioned approximations are calculated. It is demonstrated that the one-temperature approach ensures an adequate reproduction of experimental data on the shock standoff distance, heat flux, and pressure coefficient on the cone, which are obtained in a high-enthalpy wind tunnel. The calculation of the flow around a cylinder under Martian re-entry conditions reveals a significant effect of thermochemical non-equilibrium.
机译:讨论了CO 2,CO,O-2,O和C气体混合物的高焓非平衡流量的各种问题。 Navier-Stokes方程被认为是在一个,两个和三温度近似的框架内,具有化学反应的津贴。在一次温度近似下,化学反应由Arrhenius Lave建模。在多温度近似下,利用用于二氧化碳解离的TreeNor-marrone模型和用于解离硅基气体分子的公园模型进行仿真,这考虑了分子的振动非平衡。 Arrhenius法也用于计算重组反应,也用于转发和向后交换反应。通过简化的Landau-Teller模型模拟了转化振动和振动振动能量交换。计算使用使用上述近似的流动的一些示例。结果证明,单温方法确保在高焓风隧道中获得的冲击静止距离,热通量和压力系数的实验数据的充分再现。 Martian再进入条件下圆柱体周围的流动揭示了热化学非平衡的显着效果。

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