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A numerical study of mixing in supersonic combustors with hypermixing injectors

机译:超音速燃烧器与超混合喷射器混合的数值研究

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摘要

A numerical study was conducted to evaluate the performance of wall mounted fuel-injectors designed for potential Supersonic Combustion Ramjet (SCRAM-jet) engine applications. The focus of this investigation was to numerically simulate existing combustor designs for the purpose of validating the numerical technique and the physical models developed. Three different injector designs of varying complexity were studied to fully understand the computational implications involved in accurate predictions. A dual transverse injection system and two streamwise injector designs were studied. The streamwise injectors were designed with swept ramps to enhance fuel-air mixing and combustion characteristics at supersonic speeds without the large flow blockage and drag contribution of the transverse injection system. For this study, the Mass-Averaged Navier-Stokes equations and the chemical species continuity equations were solved. The computations were performed using a finite-volume implicit numerical technique and multiple block structured grid system. The interfaces of the multiple block structured grid systems were numerically resolved using the flux-conservative technique. Detailed comparisons between the computations and existing experimental data are presented. These comparisons show that numerical predictions are in agreement with the experimental data. These comparisons also show that a number of turbulence model improvements are needed for accurate combustor flowfield predictions.
机译:进行了一项数值研究,以评估为潜在的超音速燃烧冲压发动机(SCRAM-jet)发动机应用设计的壁挂式燃油喷射器的性能。这项研究的重点是对现有燃烧室设计进行数值模拟,以验证数值技术和开发的物理模型。研究了三种不同复杂程度的不同注射器设计,以充分了解准确预测所涉及的计算含义。研究了双横向喷射系统和两个流向喷射器设计。流式喷油器设计有扫掠坡道,以增强超音速下的燃料-空气混合和燃烧特性,而没有大的流量阻塞和横向喷油系统的阻力贡献。对于本研究,求解了质量平均Navier-Stokes方程和化学物种连续性方程。计算是使用有限体积隐式数值技术和多块结构的网格系统进行的。多块结构网格系统的界面使用流量守恒技术进行数值解析。提出了计算与现有实验数据之间的详细比较。这些比较表明,数值预测与实验数据一致。这些比较还表明,精确的燃烧室流场预测需要大量湍流模型的改进。

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    Lee, J.;

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  • 年度 1992
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