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使用多模光学参量振荡器对湍流火焰中的CH和NO进行平面激光诱导荧光和瑞利散射研究。

CH and NO planar laser-induced fluorescence and Rayleigh-scattering in turbulent flames using a multimode optical parametric oscillator.

作者信息

Miller Joseph D, Tröger Johannes W, Engel Sascha R, Seeger Thomas, Leipertz Alfred, Meyer Terrence R

出版信息

Appl Opt. 2021 Jan 1;60(1):98-108. doi: 10.1364/AO.406237.

Abstract

An optical parametric oscillator (OPO) is developed and characterized for the simultaneous generation of ultraviolet (UV) and near-UV nanosecond laser pulses for the single-shot Rayleigh scattering and planar laser-induced-fluorescence (PLIF) imaging of methylidyne (CH) and nitric oxide (NO) in turbulent flames. The OPO is pumped by a multichannel, 8-pulse Nd:YAG laser cluster that produces up to 225 mJ/pulse at 355 nm with pulse spacing of 100 µs. The pulsed OPO has a conversion efficiency of 9.6% to the signal wavelength of ∼430 when pumped by the multimode laser. Second harmonic conversion of the signal, with 3.8% efficiency, is used for the electronic excitation of the A-X (1,0) band of NO at ∼215, while the residual signal at 430 nm is used for direct excitation of the A-X (0,0) band of the CH radical and elastic Rayleigh scattering. The section of the OPO signal wavelength for simultaneous CH and NO PLIF imaging is performed with consideration of the pulse energy, interference from the reactant and product species, and the fluorescence signal intensity. The excitation wavelengths of 430.7 nm and 215.35 nm are studied in a laminar, premixed ---air flame. Single-shot CH and NO PLIF and Rayleigh scatter imaging is demonstrated in a turbulent -- diffusion flame using a high-speed intensified CMOS camera. Analysis of the complementary Rayleigh scattering and CH and NO PLIF enables identification and quantification of the high-temperature flame layers, the combustion product zones, and the fuel-jet core. Considerations for extension to simultaneous, 10-kHz-rate acquisition are discussed.

摘要

开发并表征了一种光学参量振荡器(OPO),用于同时产生紫外(UV)和近紫外纳秒激光脉冲,以对湍流火焰中的亚甲基(CH)和一氧化氮(NO)进行单次瑞利散射和平面激光诱导荧光(PLIF)成像。该OPO由一个多通道8脉冲Nd:YAG激光簇泵浦,该激光簇在355nm处产生高达225mJ/脉冲的能量,脉冲间隔为100µs。当由多模激光泵浦时,脉冲OPO对约430nm信号波长的转换效率为9.6%。信号的二次谐波转换效率为3.8%,用于在约215nm处对NO的A-X(1,0)带进行电子激发,而430nm处的残余信号用于直接激发CH自由基的A-X(0,0)带和弹性瑞利散射。在考虑脉冲能量、反应物和产物物种的干扰以及荧光信号强度的情况下,进行了用于同时CH和NO PLIF成像的OPO信号波长部分的研究。在层流预混空气火焰中研究了430.7nm和215.35nm的激发波长。使用高速增强型CMOS相机在湍流扩散火焰中展示了单次CH和NO PLIF以及瑞利散射成像。对互补瑞利散射以及CH和NO PLIF的分析能够识别和量化高温火焰层、燃烧产物区和燃料喷射核心。讨论了扩展到同时10kHz速率采集的考虑因素。

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