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Characterization of a CH planar laser-induced fluorescence imaging system using a kHz-rate multimode-pumped optical parametric oscillator

机译:使用kHz速率多模泵浦光参量振荡器的CH平面激光诱导荧光成像系统的表征

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摘要

The performance characteristics of a new CH planar laser-induced fluorescence (PLIF) imaging system composed of a kHz-rate multimode-pumped optical parametric oscillator (OPO) and high-speed intensified CMOS camera are investigated in laminar and turbulent CH4-H2-air flames. A multi-channel Nd:YAG cluster that produces up to 225 mJ at 355 nm with multiple-pulse spacing of 100 μs (corresponding to 10 kHz) is used to pump an OPO to produce up to 6 mJ at 431 nm for direct excitation of the A-X (0, 0) band of the CH radical. Single-shot signal-to-noise ratios of 82∶1 and 7.5∶1 are recorded in laminar premixed flames relative to noise in the background and within the flame layer, respectively. The spatial resolution and image quality are sufficient to accurately measure the CH layer thickness of ∼0.4 mm while imaging the detailed evolution of turbulent flame structures over a 20 mm span. Background interferences due to polycyclic-aromatic hydrocarbons and Rayleigh scattering are minimized and, along with signal linearity, allow semi-quantitative analysis of CH signals on a shot-to-shot basis. The effects of design features, such as cavity finesse and passive injection seeding, on conversion efficiency, stability, and linewidth of the OPO output are also discussed.
机译:在层流和湍流CH4-H2-空气中研究了由kHz速率多模泵浦光学参量振荡器(OPO)和高速增强CMOS相机组成的新型CH平面激光诱导荧光(PLIF)成像系统的性能特征火焰。一个多通道Nd:YAG簇在355 nm处产生高达225 mJ的光,多脉冲间隔为100μs(相当于10 kHz),用于泵浦OPO以在431 nm处产生高达6 mJ的光,用于直接激发CH自由基的AX(0,0)谱带。相对于背景噪声和火焰层内噪声,层流预混火焰中的单次信噪比分别为82∶1和7.5∶1。空间分辨率和图像质量足以准确测量约0.4 mm的CH层厚度,同时对20 mm跨度内湍流火焰结构的详细演变进行成像。由于多环芳族烃和瑞利散射引起的背景干扰被最小化,并且与信号线性度一起,允许逐次对CH信号进行半定量分析。还讨论了诸如腔细度和被动注入晶种等设计特征对OPO输出的转换效率,稳定性和线宽的影响。

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