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Molecular weight and injector configuration effects on the transverse injection flow field properties in supersonic flows

机译:分子量和喷射器构型对超声速流动中横向喷射流场特性的影响

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摘要

The transverse injection flow field in the high speed conditions is more complex than that in the low speed, and more information should be explored to improve the overall performance of the airbreathing hypersonic propulsion system. The three-dimensional Reynolds-averaged Navier-Stokes (RANS) equations and the two equation SST k-ω has been employed to explore the influences of the molecular weight (hydrogen and nitrogen) and injector configuration (circular, square, diamond and equilateral triangular) on the mean flow field properties in the transverse injection strategy, and the wide range of the jet-to-crossflow pressure ratio (4.86, 10.29, 17.72 and 25.15) has been considered as well. The obtained results show that the low jet-to-crossflow pressure ratio can promote the mixing process between the injectant and the supersonic crossflow irrespective of the injectant species and the injector configuration, and the large molecular weight of the injectant can promote the mixing process as well when the jet-to-crossflow pressure ratio is fixed. The case with the equilateral triangular injector owns the highest mixing efficiency in the range considered in the current study, and it may be induced by the remarkable influence of the counter-rotating vortex pair. The injectant mole fraction decreases more rapidly with the increase of the streamwise distance for the case with the low jet-to-crossflow pressure ratio, and the jet plume spreads in the spanwise direction more rapidly for the case with the diamond injector irrespective of the injectant species.
机译:高速条件下的横向喷射流场比低速条件下的更为复杂,应该探索更多信息以改善呼吸高超声速推进系统的整体性能。使用三维雷诺平均Navier-Stokes(RANS)方程和两个SSTk-ω方程来研究分子量(氢和氮)和注射器构型(圆形,正方形,菱形和等边三角形)的影响)在横向注入策略中的平均流场特性上,也考虑了射流与横流压力比的较大范围(4.86、10.29、17.72和25.15)。所得结果表明,低的射流与横流的压力比可以促进喷射剂与超声速横流之间的混合过程,而与喷射剂的种类和喷射器的构型无关,并且大的分子量可以促进喷射过程中的混合过程。当射流与横流的压力比固定时,压力会很好。等边三角形喷射器的情况在当前研究的范围内具有最高的混合效率,这可能是由反向旋转涡流对的显着影响引起的。对于低射流与横流压力比的情况,射流的摩尔分数随着流向距离的增加而更快地减小,而对于金刚石射流器而言,与射流无关,射流羽流在翼展方向上的扩散速度更快。种类。

著录项

  • 来源
    《Aerospace science and technology》 |2014年第1期|94-102|共9页
  • 作者单位

    Science and Technology on Scramjet Laboratory, National University of Defense Technology, Changsha, Hunan 410073, People's Republic of China;

    College of Aerospace Science and Engineering, National University of Defense Technology, Changsha, Hunan 410073, People's Republic of China;

    Science and Technology on Scramjet Laboratory, National University of Defense Technology, Changsha, Hunan 410073, People's Republic of China;

    Science and Technology on Scramjet Laboratory, National University of Defense Technology, Changsha, Hunan 410073, People's Republic of China;

  • 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
  • 关键词

    Aerospace propulsion system; Transverse injection; Supersonic crossflow; Molecular weight; Jet-to-crossflow pressure ratio; Jet plume;

    机译:航空航天推进系统;横向注入;超音速横流;分子量;射流与横流的压力比;喷射羽;

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