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Downstream flow condition effects on the RR -> MR transition of asymmetric shock waves in steady flows

机译:下游流动条件对稳态流中非对称激波RR-> MR跃迁的影响

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摘要

In this paper, the regular reflection (RR) to Mach reflection (MR) transition of asymmetric shock waves is theoretically studied by employing the classical two- and three-shock theories. Computations are conducted to evaluate the effects of expansion fans, which are inherent flow structures in asymmetric reflection of shock waves, on the RR -> MR transition. Comparison shows good agreement among the theoretical, numerical and experimental results. Some discrepancies between experiment and theory reported in previous studies are also explained based on the present theoretical analysis. The advanced RR -> MR transition triggered by a transverse wave is also discussed for the interaction of a hypersonic flow and a double-wedge-like geometry.
机译:本文采用经典的两波和三波理论对非对称冲击波的正反射(RR)到马赫反射(MR)进行了理论研究。进行计算以评估膨胀风扇对RR-> MR过渡的影响,膨胀风扇是冲击波非对称反射中的固有流动结构。比较表明,理论,数值和实验结果吻合良好。在目前的理论分析的基础上,也解释了先前研究中报道的实验与理论之间的一些差异。还讨论了由横波触发的高级RR-> MR跃迁,用于高超声速流和双楔形几何形状的相互作用。

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