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首页> 外文期刊>Journal of propulsion and power >Experimental Investigation of Supersonic Model Combustor with Distributed Injection of Supercritical Kerosene
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Experimental Investigation of Supersonic Model Combustor with Distributed Injection of Supercritical Kerosene

机译:超临界煤油分布喷射超音速模型燃烧器的实验研究

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摘要

Supersonic combustion with distributed injection of supercritical kerosene in a model scramjet engine was experimentally investigated in a Mach 2.92 facility with stagnation temperatures of approximately 1430 K. Multicavities were used to stabilize and enhance the combustion in the supersonic combustor. Supercritical kerosene at temperatures of approximately 780 K was prepared using a heat exchanger driven by the hot gas from a preburner and injected into the combustor at equivalence ratios of 1.0. Static pressure distribution in the axial direction was measured along the centerline of the model combustor top walls. A high-speed imaging camera was used to capture flame luminosity and combustion region distribution. In the experiments, combustor performances with different injection locations, injection stages, cavity locations, and numbers of cavities were investigated systematically. The experimental results showed that the injection penetration and local combustion had a strong coupling with the upstream flow. The combustion region and heat release distribution changes obviously due to the various cavity-injection schemes, and the combustion performance could be improved when the injection location and distribution of supercritical kerosene mass flow rate were optimized.
机译:在Mach 2.92设施中,在停滞温度约为1430 K的情况下,对模型超燃煤油在模型超燃发动机中的分布式喷射进行了超音速燃烧实验。多腔用于稳定和增强超音速燃烧器的燃烧。使用由预燃器产生的热气体驱动的热交换器制备温度约为780 K的超临界煤油,并以当量比1.0注入燃烧室。沿模型燃烧器顶壁的中心线测量轴向静压力分布。使用高速成像相机捕获火焰的亮度和燃烧区域分布。在实验中,系统地研究了不同喷射位置,喷射阶段,腔位置和腔数的燃烧器性能。实验结果表明,注入渗透和局部燃烧与上游流动具有很强的耦合性。由于不同的腔体喷射方式,燃烧区域和放热分布发生明显变化,优化了超临界煤油质量流量的喷射位置和分布,可以改善燃烧性能。

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  • 来源
    《Journal of propulsion and power》 |2014年第6期|1537-1542|共6页
  • 作者单位

    National University of Defense Technology, 410073 Changsha, People's Republic of China;

    National University of Defense Technology, 410073 Changsha, People's Republic of China;

    National University of Defense Technology, 410073 Changsha, People's Republic of China;

    National University of Defense Technology, 410073 Changsha, People's Republic of China;

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