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超音速燃烧室内乙烯-空气混合物的双脉冲激光点火

Dual-pulse laser ignition of ethylene-air mixtures in a supersonic combustor.

作者信息

Yang Leichao, An Bin, Liang Jianhan, Li Xipeng, Wang Zhenguo

出版信息

Opt Express. 2018 Apr 2;26(7):7911-7919. doi: 10.1364/OE.26.007911.

Abstract

To reduce the energy of an individual laser pulse, dual-pulse laser ignitions (LIs) at various pulse intervals were investigated in a Mach 2.92 scramjet engine fueled with ethylene. For comparison, experiments on a single-pulse LI were also performed. Schlieren visualization and high-speed photography were employed to observe the ignition processes simultaneously. The results indicate that the energy of an individual laser pulse can be reduced by half via a dual-pulse LI method as compared with a single-pulse LI with the same total energy. The reduction of the individual laser pulse energy degrades the requirements on the laser source and the beam delivery system, which facilitates the practical application of LI in hypersonic vehicles. A pulse interval shorter than 40 μs is suggested for dual-pulse LI in the present study. Because of the intense heat loss and radical dissipation in high-speed flows, the pulse interval for dual-pulse LI should be short enough to narrow the spatial distribution of the initial flame kernel.

摘要

为了降低单个激光脉冲的能量,在以乙烯为燃料的马赫数2.92超燃冲压发动机中研究了不同脉冲间隔下的双脉冲激光点火(LI)。作为对比,还进行了单脉冲激光点火实验。采用纹影可视化和高速摄影同时观察点火过程。结果表明,与具有相同总能量的单脉冲激光点火相比,通过双脉冲激光点火方法可将单个激光脉冲的能量降低一半。单个激光脉冲能量的降低降低了对激光源和光束传输系统的要求,这有利于激光点火在高超声速飞行器中的实际应用。本研究建议双脉冲激光点火的脉冲间隔短于40微秒。由于高速气流中强烈的热损失和自由基耗散,双脉冲激光点火的脉冲间隔应足够短,以缩小初始火焰核的空间分布。

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