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Quantitative technique for imaging mixture fraction, temperature, and the hydroxyl radical in turbulent diffusion flames

机译:用于对湍流扩散火焰中的混合物组分,温度和羟基自由基进行成像的定量技术

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摘要

A technique for obtaining simultaneous quantitative images of the hydroxyl radical, OH, temperature, mixture fraction, and scalar dissipation rates in turbulent diffusion flames is described. Mixture fraction is obtained from images of Rayleigh and fuel Raman scattering. We quantified the OH laser-induced fluorescence (LIF) images using detailed calibration and a correction for quenching and population distribution effects based on the simultaneous mixture fraction and temperature images. This correction was derived from calculations of laminar counterflow diffusion flames for identical fuel mixtures. These laminar flame computations are further used to estimate the errors in the measured OH concentrations. The technique is applied to piloted, nonpremixed flames over a range of jet velocities. The measured mixture fraction, temperature, and OH concentrations are in good agreement with those obtained earlier in similar flames using the single-point Raman/Rayleigh/LIF technique.#1997 Optical Society of America
机译:描述了一种用于获得湍流扩散火焰中的羟基自由基,OH,温度,混合物分数和标量耗散速率的同时定量图像的技术。从瑞利和燃料拉曼散射的图像获得混合分数。我们使用详细的校准和基于同时混合分数和温度图像的猝灭和种群分布效应的校正,对OH激光诱导的荧光(LIF)图像进行了量化。该修正来自相同燃料混合物的层流逆流扩散火焰的计算。这些层流火焰计算进一步用于估计测得的OH浓度中的误差。该技术适用于各种射流速度下的引燃非预混合火焰。使用单点拉曼/瑞利/ LIF技术测得的混合物分数,温度和OH浓度与较早在类似火焰中获得的浓度非常一致。#1997美国光学学会

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