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首页> 外文期刊>Applied optics >Strategies for laser-induced fluorescence detection of nitric oxide in high-pressure flames. I. A-X(0,0) excitation
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Strategies for laser-induced fluorescence detection of nitric oxide in high-pressure flames. I. A-X(0,0) excitation

机译:激光诱导高压火焰中一氧化氮荧光检测的策略。 I.A-X(0,0)激发

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Three different high-pressure flame measurement strategies for NO laser-induced fluorescence (LIF) with A-X(0,0) excitation have been studied previously with computational simulations and experiments in flames up to 15 bars. Interference from 02 LIF is a significant problem in lean flames for NO LIF measurements, and pressure broadening and quenching lead to increased interference with increased pressure. We investigate the NO LIF signal strength, interference by hot molecular oxygen, and temperature dependence of the three previous schemes and for two newly chosen excitation schemes with wavelength-resolved LIF measurements in premixed methane and air flames at pressures between 1 and 60 bars and a range of fuel/air ratios. In slightly lean flames with an equivalence ratio of 0.83 at 60 bars, the contribution of 02 LIT to the NO LIF signal varies between 8% and 29% for the previous schemes. The O-2 interference is best suppressed with excitation at 226.03 nm. (C) 2002 Optical Society of America. [References: 46]
机译:以前已经通过计算模拟和实验在高达15 bar的火焰中研究了三种具有A-X(0,0)激发的NO激光诱导的荧光(LIF)的三种不同高压火焰测量策略。对于NO LIF测量,来自02 LIF的干扰是稀薄火焰中的一个重要问题,并且压力展宽和淬火会导致对压力升高的干扰增加。我们调查了三个先前方案以及两个新选择的激发方案的NO LIF信号强度,热分子氧的干扰以及温度依赖性,这些方案在1至60 bar的压力下,在甲烷和空气中的预混合甲烷和空气火焰中具有波长分辨LIF测量。燃油/空气比的范围。在60 bar的当量比值为0.83的稀薄火焰中,对于以前的方案,02 LIT对NO LIF信号的贡献在8%到29%之间变化。在226.03 nm处激发可以最好地抑制O-2干扰。 (C)2002年美国眼镜学会。 [参考:46]

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