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Hypersonic Viscous Drag Reduction via Multiporthole Injector Arrays

机译:通过多孔喷射器阵列降低高超声速粘性阻力

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摘要

A numerical study has been performed to investigate the film-cooling drag reduction performance of a small-scale multiport injector array, in addition to its potential for improved boundary-layer combustion-induced drag reduction. Hydrogen fuel is injected on a flat plate through an array consisting of four streamwise aligned flush circular portholes into a Mach 4.5 crossflow. Parametric studies were conducted on injectant mass flow rate and streamwise jet-to-jet spacing using the Reynolds-averaged Navier-Stokes equations with Menter's Shear Stress Transport turbulence model. Complex jet interactions were found in the injection region with a variety of flow features dependent upon the specific configuration. These flow features were found to have subtle effects on the overall system performance. Total viscous drag reductions of up to 60% over a plate length of 0.5 m were achieved, with local drag reductions of over 90 % hi the near field. Significant wall heat transfer reductions were also found in all cases. Drag reduction and wall heat transfer rates were strongly influenced by injectant mass flow rate, and only moderately effected by streamwise spacing. The maximum drag reduction performance was found for the highest injectant mass flow rate and closest streamwise jet-to-jet spacing. In contrast, mixing performance generally improved with reduced mass flow rate and increased streamwise spacing.
机译:进行了数值研究,以研究小型多端口喷射器阵列的薄膜冷却减阻性能,以及改善边界层燃烧诱导减阻的潜力。氢燃料通过由四个沿流向对齐的齐平圆形舷窗组成的阵列注入平板中,并进入4.5马赫的错流。使用雷诺平均的Navier-Stokes方程和Menter的剪切应力传输湍流模型对喷射器的质量流速和射流间的射流间距进行了参数研究。在注入区域中发现复杂的射流相互作用,取决于特定的构造,其流动特性多种多样。发现这些流动特征对整体系统性能具有微妙的影响。在0.5 m的板长范围内,总的粘滞阻力减小了60%,而在近场时局部阻力减小了90%以上。在所有情况下,还发现壁传热明显减少。减阻和壁传热速率受喷射器质量流率的强烈影响,而受流向间距的影响则中等。对于最高的喷射器质量流率和最接近的射流到射流间距,发现了最大的减阻性能。相反,混合性能通常随着降低的质量流量和增加的流向间距而改善。

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  • 来源
    《Journal of propulsion and power》 |2013年第5期|1087-1096|共10页
  • 作者单位

    University of Queensland, Brisbane, Queensland 4072, Australia School of Mechanical and Mining Engineering;

    University of Queensland, Brisbane, Queensland 4072, Australia School of Mechanical and Mining Engineering;

    University of Queensland, Brisbane, Queensland 4072, Australia School of Mechanical and Mining Engineering;

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