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Computational Study of Shock Driven Multiphase Mixing in Scramjet Conditions

机译:超燃冲压条件下冲击驱动多相混合的计算研究

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Using a multiphase 3D LES approach simulations were conducted to study the fundamentals of multiphase turbulent mixing in a scramjet combustor. These simulations studied the effects of particle distribution, acceleration history, and particle lag effects. Heterogeneous, clumped, particle distributions, as are produced by fuel nozzles, were explored to determine the effect of particle distribution on multiphase scramjet mixing. The heterogeneity of the particle distributions is varied by examining different clump densities and distributions while maintaining a constant particle size distribution and mass ratio. Evaporation rates, particle lag distances, vapor mixing, and enstrophy, are reported from these simulations. Overall evaporation rates were found to be low, with vapor mixing largely driven by the amount of heterogeneity in the particle distribution. Of the distributions studied all produced a similar droplet evaporation rate with dense clumps found to produce a less isotropic flow field with higher enstrophy and vapor mixing.
机译:使用多相3D LES方法进行了仿真,以研究超燃冲压燃烧器中多相湍流混合的基本原理。这些模拟研究了粒子分布,加速历史和粒子滞后效应的影响。探索了燃料喷嘴产生的非均质,成团的颗粒分布,以确定颗粒分布对多相超燃冲压混合的影响。通过检查不同的团块密度和分布,同时保持恒定的粒度分布和质量比,可以改变颗粒分布的异质性。这些模拟报告了蒸发速率,颗粒滞后距离,蒸汽混合和涡流。发现总的蒸发速率很低,而蒸汽混合在很大程度上受颗粒分布中非均质性的驱动。在所研究的分布中,所有分布均产生了相似的液滴蒸发速率,并形成了密集的团块,这些团块产生了各向同性较小的流场,并具有较高的涡流和蒸汽混合。

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