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Experimental Study on the Combustion Process in a Scramjet Combustor with a Rear-Wall-Expansion Geometry

机译:具有后壁膨胀几何形状的超燃冲压燃烧器燃烧过程的实验研究

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摘要

In this study, experiments were conducted in a Mach 2.92 supersonic flow to investigate the combustion process in an ethylene-fueled model scramjet combustor with a rear-wall-expansion geometry. It is concluded that at low equivalence ratios, successful ignitions would become rather hard in the cavity with a low rear wall height. Increasing the equivalence ratio could improve the ignition environment within such cavity geometry. During a stable combustion process, the rear-wall-expansion cavity with a higher rear wall height would always achieve an improvement in combustion performance in the combustor. At a relatively high equivalence ratio, when increasing the cavity rear wall height, the flame stabilization mode would vary from cavity shear layer-stabilized mode to cavity-assisted jet wake-stabilized mode, and finally to the thermal choking state. Besides, reaction zones flashback phenomenon is obviously observed during the flame propagation process at such equivalence ratio. It has been demonstrated that the cavity with a lower rear wall height is more able to prevent thermal choking in the combustor.
机译:在这项研究中,在马赫数为2.92的超声波流中进行了实验,以研究具有后壁膨胀几何形状的乙烯燃料模型超燃冲压燃烧器的燃烧过程。结论是,在低当量比的情况下,具有低后壁高度的空腔中的成功点火将变得相当困难。增加当量比可以改善这种空腔几何形状内的点火环境。在稳定的燃烧过程中,具有较高后壁高度的后壁膨胀腔将始终实现燃烧器燃烧性能的改善。在相对较高的当量比下,当增加腔体后壁高度时,火焰稳定模式将从腔体剪切层稳定模式变为腔体辅助射流尾流稳定模式,最后变为热阻塞状态。此外,在这样的当量比下,火焰传播过程中明显观察到反应区回火现象。已经证明,具有较低后壁高度的腔更能够防止燃烧器中的热阻塞。

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