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首页> 外文期刊>Journal of propulsion and power >Porous Versus Porthole Fuel Injection in a Radical Farming Scramjet: Numerical Analysis
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Porous Versus Porthole Fuel Injection in a Radical Farming Scramjet: Numerical Analysis

机译:激进农用超燃冲压发动机中多孔与舷窗燃料喷射的关系:数值分析

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摘要

Numerically computed engine performance of a nominally two-dimensional radical farming scramjet with porous (permeable carbon/carbon ceramic) and porthole fuel injection is presented. Inflow conditions with Mach number, stagnation pressure, and enthalpy of 6.44, 40.2 MPa, and 4.31 MJ/kg, respectively, and fuel/air equivalence ratio of 0.44 were maintained, along with engine geometry. Hydrogen fuel was injected at an axial location of 92.33 nun downstream of the leading edge for each investigated injection method. Results from this study show that porous fuel-injection results in enhanced mixing and combustion compared to porthole fuel injection. This is particularly evident within the first half of the combustion chamber, where porous fuel injection resulted in mixing and combustion efficiencies of 76 and 63%, respectively. At the same location, porthole fuel injection resulted in efficiencies respectively of 58 and 46 %. Key mechanisms contributing to the observed improved performance were the formation of an attached oblique fuel-injection shock and associated stronger shock-expansion train ingested by the engine, enhanced spreading of the fuel in all directions, and a more rapidly growing mixing layer.
机译:介绍了具有多孔(可渗透碳/碳陶瓷)和舷窗燃料喷射的名义二维自由基农用超燃冲压发动机的数值计算发动机性能。马赫数,停滞压力和焓分别为6.44、40.2 MPa和4.31 MJ / kg,燃油/空气当量比为0.44的进气条件以及发动机的几何形状得以保持。对于每种研究的喷射方法,在前缘下游92.33 nun的轴向位置处喷射氢燃料。这项研究的结果表明,与舷窗燃料喷射相比,多孔燃料喷射可增强混合和燃烧。这在燃烧室的前半部尤其明显,在该处的多孔燃料喷射分别导致混合效率和燃烧效率分别为76%和63%。在同一位置,舷窗燃料喷射分别产生58%和46%的效率。导致观察到的性能改善的关键机制是:形成了倾斜的燃油喷射冲击,并被发动机吸收了相关的更强的冲击-扩展列;增强了燃料在所有方向上的扩散;以及更快的混合层。

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  • 来源
    《Journal of propulsion and power》 |2015年第3期|789-804|共16页
  • 作者单位

    Queensland University of Technology, Brisbane, Queensland 4001, Australia;

    University of New South Wales, Canberra, British Columbia 2610, Australia;

    DLR, German Aerospace Center, 70569 Stuttgart, Germany;

    DLR, German Aerospace Center, 70569 Stuttgart, Germany;

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