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Numerical study of the oscillations induced by shock/shock interaction in hypersonic double-wedge flows

机译:高超音速双楔流激波/激波相互作用引起的振荡的数值研究

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摘要

In this paper, the shock pattern oscillations induced by shock/shock interactions over double-wedge geometries in hypersonic flows were studied numerically by solving 2D inviscid Euler equations for a multi-species system. Laminar viscous effects were considered in some cases. Temperature-dependent thermodynamic properties were employed in the state and energy equations for consideration of the distinct change of the thermodynamic state. It was shown that the oscillation results in high-frequency fluctuations of heating and pressure loads over wedge surfaces. In a case with a relatively lower free-stream Mach number, the shock/shock interaction structure maintains a seven-shock configuration during the entire oscillation process. On the other hand, the oscillation is accompanied by a transition between a six-shock configuration (regular interaction) and a seven-shock configuration (Mach interaction) in a case with a higher free-stream Mach number. Numerical results also indicate that the critical wedge angle for the transition from a steady to an oscillation solution is higher compared to the corresponding value in earlier numerical research in which the perfect diatomic gas model was used.
机译:在本文中,通过求解多物种系统的二维无粘性欧拉方程,数值研究了高超声速流中双楔形几何结构上的激波/激波相互作用引起的激振模式振荡。在某些情况下考虑了层流粘性效应。考虑到热力学状态的明显变化,在状态方程和能量方程中采用了温度相关的热力学性质。结果表明,振动会导致楔形表面上的加热和压力负载发生高频波动。在自由流马赫数相对较低的情况下,冲击/冲击相互作用结构在整个振荡过程中保持七冲击构造。另一方面,在自由流马赫数较高的情况下,振荡伴随着六冲击构型(规则相互作用)和七冲击构型(马赫相互作用)之间的转变。数值结果还表明,与从较早的数值研究(使用完美的双原子气体模型)中的相应值相比,从稳态到振动解的临界楔角更高。

著录项

  • 来源
    《Shock Waves》 |2008年第1期|41-51|共11页
  • 作者单位

    Research Center for Aircraft Parts Technology School of Mechanical and Aerospace Engineering Gyeongsang National University Jinju 660-701 South Korea;

    Research Center for Aircraft Parts Technology School of Mechanical and Aerospace Engineering Gyeongsang National University Jinju 660-701 South Korea;

    LHD Institute of Mechanics Beijing 100080 China;

    Research Center for Aircraft Parts Technology School of Mechanical and Aerospace Engineering Gyeongsang National University Jinju 660-701 South Korea;

    LHD Institute of Mechanics Beijing 100080 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Shock/shock interaction; Oscillation; Hypersonic; Double-wedge; Numerical study; 47.40.Ki; 47.40.Nm;

    机译:冲击/冲击相互作用;振荡;超人格;双楔;数值研究;47.40.Ki;47.40.Nm;

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