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Flame thermometry using laser-induced-grating spectroscopy of nitric oxide

机译:一氧化氮的激光诱导光栅光谱法测定火焰温度

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摘要

A systematic study of laser-induced thermal-grating scattering (LITGS) using nitric oxide as an absorbing species is presented as a means of thermometry in air-fed combustion. The relative contributions to the scattered signal from degenerate four-wave mixing, DFWM, and from laser-induced thermal-grating scattering, LITGS, are studied in the time domain for NO in N2 buffer gas up to 4 bar, using a pulsed laser system to excite the (0,0) γ-bands of NO at 226.21 nm. LITGS signals from combustion-generated NO in a laminar, pre-mixed CH4/O2/N2 flame on an in-house constructed slot burner were used to derive temperature values as a function of O2 concentration and position in the flame at 1 and 2.5 bar total pressure. Temperature values consistent with the calculated adiabatic flame temperature were derived from averaged LITGS signals over 50–100 single shots at 10 Hz repetition rate in the range 1600–2400 K with a pressure-dependent uncertainty of ± 1.8% at 1 bar to ± 1.4% at 2.5 bar. Based on observed signal-to-noise ratios, the minimum detectable concentration of NO in the flame is estimated to be 80 ppm for a 5 s measurement time at 10 Hz repetition rate.
机译:提出了一种使用一氧化氮作为吸收物质的激光诱导热光栅散射(LITGS)的系统研究,作为空气燃烧中的测温手段。使用脉冲激光系统,在时域中研究了最高4 bar的N2缓冲气体中NO的退化四波混频DFWM和激光诱导的热光栅散射LITGS对散射信号的相对贡献激发226.21 nm处NO的(0,0)γ谱带。在内部构造的狭缝燃烧器中的层状,预先混合的CH4 / O2 / N2火焰中,燃烧产生的NO产生的LITGS信号用于得出温度值,该温度值是O2浓度和火焰在1和2.5bar处的位置的函数总压力。温度值与计算出的绝热火焰温度一致,是从50–100次单次发射的平均LITGS信号得出的,其重复频率为10Hz,重复频率为1600–2400K,在1巴下压力依赖性不确定度为±1.8%至±1.4%在2.5巴。根据观察到的信噪比,在10 Hz重复频率下的5个测量时间内,火焰中NO的最低可检测浓度估计为80 ppm。

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