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Hypersonic Mixing Enhancement by Compression at a High Convective Mach Number

机译:在高对流马赫数下通过压缩增强超音速混合

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摘要

The effect of an oblique shock and of a Prandtl-Meyer compression fan on the characteristics of the turbulent mixing of a square-cross-section hydrogen jet in hypervelocity air is presented. The air properties before the compression process are set to those found after the first shock of a two-shock external compression shcramjet inlet at a flight Mach number of 11 and an altitude of 34.5 km. The hydrogen properties are such that the convective Mach number is 1.2, the global equivalence ratio is 0.68, and the pressure of the hydrogen matches the pressure of the air at injection. Also presented is an algebraic expression approximating increase in mixing efficiency growth through compression. The algebraic expression is based on available empirical correlations for the turbulent mixing layer and is simplified for the special case of a high-convective-Mach-number mixing layer in which the Mach numbers of both streams are high. The numerical results are obtained by using the WARP code to solve the Favre-averaged Navier-Stokes equations closed by the Wilcox Kω turbulence model and the Wilcox dilatational dissipation correction, discretized by the Yee-Roe flux-limited scheme. Results obtained indicate increase in the mixing efficiency growth by 5.7 and 6.3 times through the oblique shock and the compression fan, respectively. Despite generating weaker axial vortices, the compression fan results into a greater increase mixing efficiency growth because of a higher density increase.
机译:提出了斜向冲击和Prandtl-Meyer压缩风扇对方形截面氢射流在超高速空气中湍流混合特性的影响。压缩过程之前的空气特性设置为在两次飞行的马赫数11和高度34.5 km时两次冲击外部压缩shcramjet进气口第一次受到冲击后发现的空气特性。氢的性质使得对流马赫数为1.2,总当量比为0.68,氢的压力与注入时的空气压力匹配。还提出了一个代数表达式,近似表示通过压缩来增加混合效率的增长。代数表达式基于湍流混合层的可用经验相关性,并且对于其中两个流的马赫数均较高的高对流马赫数混合层的特殊情况进行了简化。通过使用WARP代码求解由WilcoxKω湍流模型和Wilcox膨胀耗散校正(由Yee-Roe通量限制方案离散化)封闭的Favre平均Navier-Stokes方程,可以得到数值结果。获得的结果表明,通过斜向冲击和压缩风扇,混合效率分别提高了5.7和6.3倍。尽管产生了较弱的轴向涡流,但压缩风扇由于更高的密度增加而导致了更大的混合效率增长。

著录项

  • 来源
    《AIAA Journal》 |2004年第4期|p.787-795|共9页
  • 作者单位

    Department of Aerospace Engineering, Seoul National University, Seoul 151-744, Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天;航空;
  • 关键词

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