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Progress in research on mixing techniques for transverse injection flow fields in supersonic crossflows*

机译:超声交叉流动横向喷射流场混合技术的研究进展*

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The transverse injection flow field has an important impact on the flowpath design of scramjet engines. At present a combination of the transverse injection scheme and any other flame holder has been widely employed in hypersonic propulsion systems to promote the mixing process between the fuel and the supersonic freestream; combustion efficiency has been improved thereby, as well as engine thrust. Research on mixing techniques for the transverse injection flow field is summarized from four aspects, namely the jet-to-crossflow pressure ratio, the geometric configuration of the injection port, the number of injection ports, and the injection angle. In conclusion, urgent investigations of mixing techniques of the transverse injection flow field are proposed, especially data mining in the quantitative analytical results for transverse injection flow field, based on results from multi-objective design optimization theory.
机译:横向喷射流场对斯普拉克喷头发动机的流动路径设计具有重要影响。目前,横向喷射方案和任何其他火焰保持器的组合已广泛用于高超声速推进系统,以促进燃料和超音速FreeStream之间的混合过程;由此改善了燃烧效率,以及发动机推力。横向喷射流场混合技术的研究总结了四个方面,即喷射到横流压力比,注射端口的几何结构,注射端口的数量和注射角度。总之,提出了横向喷射流场的混合技术的迫切研究,特别是基于多目标设计优化理论的结果的横向喷射流场的定量分析结果中的数据挖掘。

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