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Non-Equilibrium Supersonic CO2 Flows with Real Gas Effects near a Blunt Body

机译:非平衡超音速二氧化碳流量,钝器靠近钝器效果

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The paper deals with the numerical simulation of a supersonic viscous flow containing CO2 molecules near a space body entering the Mars atmosphere. The gas dynamic equations in a shock layer are coupled to the equations of vibrational and chemical kinetics in the mixture CO 2/C0/02/C/0 using three theoretical models for CO2 vibrational excitation. Threetemperature and two-temperature non-equilibrium approaches as well as the one-temperature thermal equilibrium model have been applied. A comparison of gas flow parameters and heat transfer calculated on the basis of different approximations is presented, and the effect of CO 2 vibrational non-equilibrium is discussed. Transport coefficients in a flow are computed using rigorous kinetic theory algorithms which have been incorporated directly to the numerical schemes. The effect of bulk viscosity in a shock layer is studied.
机译:本文涉及在进入火星气氛的空间体附近的包含CO2分子的超音速粘性流量的数值模拟。减震层中的气体动力学方程使用三种理论模型在混合物CO 2 / CO / 02 / C / 0中耦合到振动和化学动力学的方程,用于CO 2振动激发。施加了分流间和两个温度的非平衡方法以及一次温度热平衡模型。提出了基于不同近似计算的气体流量参数和传热的比较,讨论了CO 2振动非平衡的影响。流动中的传输系数使用已经将直接纳入数值方案的严格的动力学理论算法来计算。研究了体积粘度在减震层中的影响。

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