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Kinetic modeling of unsteady hypersonic flows over a tick geometry

机译:蜱几何不稳定过度流动的动力学建模

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Hypersonic separated flows over the so-called "tick" geometry have been studied using the time accurate direct simulation Monte Carlo (DSMC) method and global linear theory. The free stream condition for two experimental cases studied in the free piston shock tunnel (named T-ADFA) was modeled. These two cases span a Knudsen number from transitional to continuum, a Mach number of about 10, a free stream enthalpy from 10 to 3 MJ/kg, a Reynolds number varying by a factor of four, and a leading edge geometry varied from sharp to one with a bevel of 0.2 mm. For the first time, the time dependence of flow macroparameters on the leading edge nose radius and the Reynolds number are studied using global linear theory. High fidelity DSMC simulations showed that the temporal behavior of the separation region, which has significant effects on the surface parameters, depends closely on the leading edge bluntness and wall temperature. The formation of a secondary vortex was seen in about 2 ms for the sharp leading edge, whereas in the rounded leading edge geometry, it formed at earlier 0.7 ms. At a steady state, the size and structure of the separation zone, vortex structures, and surface parameters predicted by DSMC were found to be in good agreement with computational fluid dynamics for the higher density case. Finally, linear stability theory showed that for some leading edge shapes and flow densities, the time to reach the steady state was longer than the facility measurement time. Published under license by AIP Publishing.
机译:使用时间准确的直接仿真蒙特卡罗(DSMC)方法和全局线性理论研究了超声分离的流过所谓的“勾选”几何。建模在自由活塞冲击隧道(命名为T-ADFA)中研究的两个实验案例的自由流条件。这两种情况跨越过渡到连续核的knudsen数,马赫数约为10,自由流焓从10到3 mj / kg,雷诺数变化四个倍数,并且前缘几何形状从锐利变化。一个斜面为0.2毫米。首次使用全局线性理论研究了流动宏观脉冲率在前缘鼻径和雷诺数的时间依赖性。高保真性DSMC模拟表明,对表面参数产生显着影响的分离区域的时间行为尤其取决于前缘钝性和壁温。对于尖锐的前缘,在大约2毫秒内看到次级涡流的形成,而在圆形的前缘几何形状中,它在早于0.7ms形成。在稳定状态下,发现DSMC预测的分离区,涡旋结构和表面参数的尺寸和结构与较高密度外壳的计算流体动力学吻合良好。最后,线性稳定性理论表明,对于某些前导边缘形状和流密,达到稳定状态的时间比设施测量时间长。通过AIP发布在许可证下发布。

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