Retzer Ulrich, Pan Rongchao, Werblinski Thomas, Huber Franz J T, Slipchenko Mikhail N, Meyer Terrence R, Zigan Lars, Will Stefan
Opt Express. 2018 Jul 9;26(14):18105-18114. doi: 10.1364/OE.26.018105.
The paper presents simultaneous high-speed (7.5 kHz) planar laser-induced fluorescence (PLIF) of formaldehyde (CHO) and the hydroxyl-radical (OH) for visualization of the flame structure and heat release zone in a non-premixed unsteady CH/O/N flame. For this purpose, a dye laser designed for high-speed operation is pumped by the second-harmonic 532 nm output of a Nd:YAG burst-mode laser to produce a tunable, 566 nm beam. After frequency doubling a high-energy kHz-rate narrowband pulse train of approximately 2.2 mJ/pulse at 283 nm is used for excitation of the OH radical. Simultaneously, CHO is excited by the frequency-tripled output of the same Nd:YAG laser, providing a high-frequency pulse train over 10 ms in duration at high pulse energies (>100 mJ/pulse). The excitation energies enable signal-to-noise ratios (SNRs) of ~10 and ~60 for CHO and OH PLIF, respectively, using a single high-speed intensified CMOS camera equipped with an image doubler. This allows sufficient SNR for investigation of the temporal evolution of the primary heat release zone and the local flame structure at kHz rates from the spatial overlap of the OH- and CHO-PLIF signals.
本文展示了甲醛(CHO)和羟基自由基(OH)的同步高速(7.5 kHz)平面激光诱导荧光(PLIF),用于可视化非预混非稳态CH/O/N火焰中的火焰结构和热释放区。为此,一台专为高速运行设计的染料激光器由Nd:YAG脉冲模式激光器的二次谐波532 nm输出泵浦,以产生可调谐的566 nm光束。在倍频后,一个在283 nm处能量约为2.2 mJ/脉冲的高能kHz速率窄带脉冲序列用于激发OH自由基。同时,CHO由同一Nd:YAG激光器的三倍频输出激发,在高脉冲能量(>100 mJ/脉冲)下提供持续时间超过10 ms的高频脉冲序列。使用配备图像倍增器的单个高速增强型CMOS相机,激发能量分别使CHO和OH PLIF的信噪比(SNR)达到约10和约60。这为从OH-和CHO-PLIF信号的空间重叠以kHz速率研究一次热释放区的时间演变和局部火焰结构提供了足够的SNR。