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Axisymmetric and three-dimensional flow simulation of a mixed compression supersonic air inlet

机译:混合压缩超声波空气入口的轴对称和三维流动模拟

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The flow through an axisymmetric supersonic mixed-compression air inlet has been simulated numerically to investigate the effects and the necessity of the three-dimensional (3D) modeling in comparison with the axisymmetric one. For this purpose, a supersonic inlet has been simulated numerically via axisymmetric and 3D CFD solvers, using the steady state Reynolds-averaged Navier-Stokes equations along with the SST k-omega turbulence model, for a free-stream Mach number of 2.0 and at zero degrees angle of attack. The grid for the 3D cases was a 14.4-degree sector, instead of a 360-degree domain one, with rotational periodic boundary condition for the side boundaries. The results show that both static and total pressure distributions match well with the experimental data for both the axisymmetric and the 3D simulations. If the prediction of performance parameters is the main goal of simulations, it seems that the axisymmetric simulation provides adequate accuracy, and the 3D simulation one is not the best choice. The 3D numerical simulation results in an in-depth study on the supersonic inlets, including the shock wave-boundary layer interaction, the location of the terminal normal shock wave, and consequently the separation point. For an axisymmetric supersonic inlet in an axisymmetric flow condition, 3D effects are not strong enough to have a significant influence on the inlet performance for all operational conditions. However, it seems that 3D effects play an important role in both critical and supercritical operating conditions during the steady state operation. (C) 2020 Beihang University. Production and hosting by Elsevier B.V. on behalf of KeAi.
机译:通过轴对称超声波混合空气入口的流程已经在数值上模拟,以研究与轴对称相比的三维(3D)建模的效果和必要性。为此目的,通过轴对称和3D CFD溶解器使用稳态雷诺平均的Navier-Stokes方程与SST K-Omega湍流模型一起模拟超声波入口,用于自由流2.0和AT零度的攻角。 3D情况的网格是14.4度扇区,而不是360度域,具有副边界的旋转周期性边界条件。结果表明,静态和总压力分布均匀匹配轴对称和3D仿真的实验数据。如果性能参数的预测是模拟的主要目标,似乎轴对称仿真似乎提供了足够的精度,并且3D模拟一个不是最佳选择。 3D数值模拟导致对超音速入口的深入研究,包括冲击波边界层相互作用,终端正常冲击波的位置,从而实现分离点。对于轴对称流动条件下的轴对称超音速入口,3D效应不足以对所有操作条件的入口性能产生显着影响。然而,似乎3D效果在稳态操作期间在临界和超临界操作条件中发挥着重要作用。 (c)2020年北冈大学。 Bealsvier B.V.生产和托管。代表柯伊。

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