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Application of a laser induced fluorescence model to the numerical simulation of detonation waves in hydrogen-oxygen-diluent mixtures

机译:激光诱导荧光模型在氢氧稀释剂混合物爆轰波数值模拟中的应用

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摘要

A laser-induced-fluorescence model has been implemented and used to post-process detonation wave numerical simulation results to allow a direct comparison with previous experimental visualizations of detonations in hydrogen–oxygen–diluent mixtures. The model is first applied to steady one-dimensional simulation results obtained with detailed chemistry. The effects on the fluorescence intensity of the model parameters are examined to explore the dominant processes. The dominant interference process in the experiments carried out to date is the absorption of incident laser light by the high concentration of OH in and behind the reaction zone. The model is then applied to unsteady two-dimensional simulation results obtained with reduced chemical schemes to obtain synthetic PLIF image. The results demonstrate good qualitative agreement between the experimental and calculated laser-induced-fluorescence intensities. The model limitations and the experimental uncertainties are discussed together with a critical evaluation of the modeling approach.
机译:已经实施了激光诱导的荧光模型,并将其用于后处理爆轰波数值模拟结果,以便与以前的氢-氧-稀释剂混合物中的爆轰实验可视化结果进行直接比较。该模型首先应用于通过详细化学过程获得的稳定的一维模拟结果。研究了模型参数对荧光强度的影响,以探索主要过程。迄今为止进行的实验中主要的干扰过程是反应区内和反应区后高浓度的OH吸收入射激光。然后将该模型应用于通过简化化学方案获得的非稳态二维仿真结果,以获得合成PLIF图像。结果证明了实验和计算的激光诱导的荧光强度之间良好的定性一致性。讨论了模型局限性和实验不确定性以及对建模方法的严格评估。

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