燃烧室
纹影摄影
超燃冲压发动机
点火系统
煤油
燃烧
隔离器
纹影
冲压发动机
超音速
马赫数
机械
物理
休克(循环)
材料科学
光学
流量(数学)
热力学
化学
流动可视化
工程类
内科学
有机化学
医学
电子工程
作者
Du Guangming,Ye Tian,Jialing Le,Fang Zhong,Yi Zhang
出处
期刊:Physics of Fluids
[American Institute of Physics]
日期:2023-01-01
卷期号:35 (1): 015138-015138
被引量:6
摘要
The effects of two kinds of dual-cavity configuration on ignition and flame stabilization in a high Mach number (Ma) kerosene-fueled scramjet were experimentally investigated in this study. To better understand the combustion characteristics, flow structure and flame development were studied by schlieren photography, flame self-illumination photography, and wall-pressure measurement. Results were obtained with an isolator inlet Ma 3.0, total pressure 2.9 MPa, and total temperature 1900 K, which correspond to Ma f 8.0 condition. The symmetrical dual-cavity configuration did not achieve kerosene auto-ignition, while the staggered dual-cavity configuration did achieve kerosene auto-ignition because shock waves were much more complex. In the staggered dual-cavity scramjet, flame stabilization was achieved after successful ignition by a lower equivalence ratio (ER) of kerosene, but when the ER of kerosene was increased to 0.8, flame stabilization was not achieved and the flow structure oscillated quasi-periodically.
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