首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >In situ investigation of laser-induced ignition and the early stages of methane-air combustion at high pressures using a rapidly tuned diode laser at 2.55 mu m
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In situ investigation of laser-induced ignition and the early stages of methane-air combustion at high pressures using a rapidly tuned diode laser at 2.55 mu m

机译:使用2.55μm的快速调谐二极管激光器对高压下的激光诱导点火和甲烷-空气燃烧的早期进行原位研究

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摘要

The laser-induced ignition of methane/air-mixtures at elevated pressures was investigated by an absorption spectroscopic technique. A room temperature continuous wave InGaAsSb/AlGaAsSb quantum well ridge diode laser was wavelength tuned around 2.55 mum by periodically modulating the injection current from 0 to 174 mA at a 5 kHz repetition rate. The laser heat sink temperature was fixed at 291 K. The infrared laser beam was sent through the pressurized combustion vessel perpendicularly to the igniting laser beam (Nd:YAG laser, 10 ns pulse duration, 20 mJ) at the position of the ignition spark. Fuel-rich to fuel-lean mixtures of methane/air (air equivalence ratio 0.89, 1.06, 1.41, 2.50) were investigated at initial pressures of up to 3 MPa. The initial temperature was 473 K, the volume of the combustion vessel 0.9 x 10(-3) m(3). The formation of water vapor in the vicinity of the laser spark was tracked by the diode laser. The time resolution of the measurements was 0.2 ms for a total continuous measurement time of up to 1 s. In this way, the laser-induced ignition and its accompanying effects could be investigated on a time scale spanning four orders of magnitude. Apart from the absorbance of water vapor which could be determined semi-quantitatively (due to the effects of severe pressure broadening at high pressures and the ignorance of the exact temperature distribution after ignition), the emissions from the flame (broadband, 1-10 mum) and a gas inhomogeneity index were recorded. The gas inhomogeneity index was obtained by extracting a frequency variable from the time-dependent fluctuations of the transmitted laser intensities and calculating its derivation. The absorbance of water vapor, the emissions from the flame and the gas inhomogeneity index were found to be a powerful tool to characterize laser-induced ignition. Major implications of in situ species concentration measurements at high pressures for the design and development of high-load combustors are presented. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 51]
机译:通过吸收光谱技术研究了在高压下甲烷/空气混合物的激光诱导点火。通过以5 kHz的重复频率周期性地将注入电流从0调节到174 mA,将室温连续波InGaAsSb / AlGaAsSb量子阱脊二极管激光器的波长调谐为2.55 mum。激光散热器的温度固定为291K。在点火火花的位置,红外激光束垂直于点火激光束(Nd:YAG激光,脉冲持续时间为10 ns,20 mJ)通过加压燃烧容器。在最高3 MPa的初始压力下研究了甲烷/空气的富燃料比贫燃料混合物(空气当量比为0.89、1.06、1.41、2.50)。初始温度为473 K,燃烧容器的体积为0.9 x 10(-3)m(3)。二极管激光器跟踪了激光火花附近水蒸气的形成。测量的时间分辨率为0.2 ms,总连续测量时间长达1 s。以此方式,可以在跨越四个数量级的时间尺度上研究激光诱导的点火及其伴随效应。除了可以半定量确定的水蒸气吸收率(由于高压下严重的压力展宽和点火后精确的温度分布的无知的影响)之外,火焰的发射(宽带,1-10毫米) ),并记录气体不均匀指数。通过从透射激光强度随时间变化的频率中提取频率变量并计算其导数,可以获得气体不均匀性指标。发现水蒸气的吸光度,火焰排放和气体不均匀性指数是表征激光诱导点火的有力工具。提出了在高压下进行原位物种浓度测量对高负荷燃烧室的设计和开发的主要意义。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:51]

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