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Computational and experimental study of laminar premixed and nonpremixed flames

机译:层流预混和非增殖火焰的计算与实验研究

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The coupling of adaptive numerical methods with large memory parallel/vector computers has produced an extremely powerful tool with which to probe flame structure. In this presentation we investigate both numerically and experimentally axisymmetric laminar flames. Specifically, we illustrate the application of coflow flames to problems in soot formation and oxidation and propellant modeling. Computationally, we solve the governing conservation equations of mass, momentum, species balance and energy with detailed transport and finite rate chemistry submodels. Experimentally, we apply spontaneous Raman spectroscopy and laser induced fluorescence to generate profiles of the temperature, the major and some minor species of the flame.
机译:具有大型内存并联/载体计算机的自适应数值方法的耦合产生了一个极其强大的工具,探测火焰结构。在本演示文献中,我们研究了数控和实验轴对称层状火焰。具体地,我们说明了Coflow火焰在烟灰形成和氧化和推进剂建模中的应用。计算地,通过详细的运输和有限速率化学子模型,解决了质量,动量,物种平衡和能量的控制保护方程。通过实验,我们应用自发拉曼光谱和激光诱导的荧光,产生温度的谱,主要和一些次要的火焰。

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