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Numerical investigation of a chemically reacting and rarefied hypersonic flow field

机译:化学反应和稀薄高超声波流场的数值研究

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Numerical simulations are carried out in the non-continuum flow regime to analyze flow features in the shock layer of a reentry vehicle. A new solver, rarefiedHypersonicFoam, has been developed based on the OpenFOAM platform, which can simulate the intermediate hypersonic reacting flow regime, where chemical non-equilibrium effects are imperative. The solver accommodates features to model air chemistry, multispecies transport, thermodynamic properties of high-temperature air, and non-equilibrium boundary conditions. The solver is validated with ballistic range experimental data for shock standoff distance and heat flux values over a conical reentry vehicle. Results have exhibited good agreement with the experimental data and show significant improvement when compared with the conventional high-speed compressible flow solver. The modified solver is used to analyze hypersonic flow over a bi-conic reentry capsule at different altitudes and velocities in the rarefied hypersonic flow regime. The results show that at lower altitude, chemical reactions absorb a considerable amount of heat compared to higher altitude. The rate of reaction reduces with the decrease in the flow velocity, which results in reduced heat flux values. It is observed that, if only rarefaction effects are considered in the solver, it overpredicts the heat flux values. Therefore, incorporation of chemical reactions while analyzing rarefied hypersonic flow fields is imperative.
机译:数值模拟在非连续流动制度中进行,以分析再入式车辆的冲击层中的流动特征。新的求解器稀有氟丙基猿公司已经基于OppoFoam平台开发,可以模拟中间超声波反应流动制度,其中化学非平衡效应是势在必行的。求解器可以采用型号空气化学,多层传输,高温空气的热力学性能的特点,以及非平衡边界条件。通过锥形再入式车辆验证求解器的弹性范围实验数据,用于减震距离和热通量值。结果与实验数据表现出良好的一致性,并与传统的高速可压缩流动求解器相比,显着改善。改进的求解器用于分析在稀有的超声波流量的不同高度和速度下的双圆锥再入胶囊上的过度流动。结果表明,与较高海拔较低的高度,化学反应与更高的高度相比吸收相当大的热量。随着流速的降低,反应速率降低,这导致了减少的热通量值。观察到,如果在求解器中考虑了稀疏效应,则它超出了热通量值。因此,在分析稀薄的超声波流场的同时纳入化学反应是必要的。

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