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Initiation of homogeneous combustion in a high-velocity jet of a fuel-air mixture by an optical discharge

机译:通过光学放电在燃料 - 空气混合物的高速射流中启动均匀燃烧

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摘要

The effect of a focused pulsed-periodic beam of a CO2 laser on initiation and evolution of combustion in subsonic and supersonic flows of homogeneous fuel-air mixtures (H-2 + air and CH4 + air) is experimentally studied. The beam generated by the CO2 laser propagates across the flow and is focused by a lens at the jet axis. The flow structure is determined by a schlieren system with a slot and a plane knife aligned in the streamwise direction. The image is recorded by a high-speed camera with an exposure time of 1.5 mu s and a frame frequency of 1000 s(-1). The structure of the combustion region is studied by an example of inherent luminescence of the flame at the wavelengths of OH and CH radicals. The distribution of the emission intensity of the mixture components in the optical discharge region is investigated in the present experiments by methods of emission spectroscopy.
机译:通过实验研究了CO2激光对CO2激光的聚焦脉冲周期束对亚源燃料 - 空气混合物(H-2 +空气和CH4 +空中)的燃烧的启动和演化的影响。 由CO2激光器产生的光束在流过流体上传播,并通过喷射轴处的透镜聚焦。 流动结构由Schlieren系统确定,其中槽和在流动方向上对齐的平面刀。 图像由高速摄像机记录,其曝光时间为1.5μs和1000 s(-1)的帧频率。 通过在OH和CH基团的波长处的火焰的固有发光的示例研究了燃烧区域的结构。 通过发射光谱法在本实验中研究了光学放电区中混合物组分的发射强度的分布。

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