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Effects of Reaction Progress Variable Definition on the Flame Surface Density Transport Statistics and Closure for Different Combustion Regimes

机译:反应进程变量定义对不同燃烧方式下火焰表面密度传递统计和关闭的影响

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The implications of the choice of reaction progress variable on the performances of the flame surface density (FSD) based mean reaction rate closure and the well-established sub-models of the FSD transport have been analysed in context of Reynolds Averaged Navier Stokes simulations. For this purpose, a detailed chemistry direct numerical simulation (DNS) database of freely-propagating statistically planar air flames (with an equivalence ratio of 0.7) spanning the corrugated flamelets (CF), thin reaction zones (TRZ) and broken reaction zones (BRZ) regimes of premixed turbulent combustion has been considered. The FSD and the unclosed terms of its transport equation have been analysed for reaction progress variables defined based on normalised and mass fractions and temperature. The performances of the closures for turbulent flux of FSD, and tangential strain rate term have been found to be mostly unaffected by the choice of reaction progress variable. However, the well-established existing models for the unresolved tangential strain rate term have been found not to perform well for the cases representing the CF and TRZ regimes of premixed combustion. The performance of a well-established existing model for the combined propagation and curvature terms has been found to be significantly dependent on the choice of reaction progress variable. Furthermore, the surface-averaged value of the density-weighted displacement speed cannot be approximated by the corresponding unstretched laminar flame value especially for the flames in the BRZ regime. Detailed explanations have been provided for the observed behaviours of the FSD based reaction rate closure and sub-models for the unclosed terms of the FSD transport equation in different combustion regimes for different choices of reaction progress variable.
机译:在Reynolds平均Navier Stokes模拟的背景下,分析了反应进度变量的选择对基于火焰表面密度(FSD)的平均反应速率关闭和FSD传输的已建立子模型的性能的影响。为此,建立了详细的化学直接数值模拟(DNS)数据库,该数据库在波纹小火焰(CF),稀薄反应区(TRZ)和破碎反应区(BRZ)上自由传播的统计平面空气火焰(当量比为0.7) )已经考虑了预混湍流燃烧的方式。已对FSD及其运输方程式的未封闭项进行了分析,以了解基于归一化质量分数和质量分数以及温度定义的反应进程变量。已经发现,对于FSD的湍流通量和切向应变率项,封闭件的性能在很大程度上不受反应进度变量的选择的影响。但是,已经发现,对于表示预混燃烧的CF和TRZ形式的情况,未解决的切向应变率项的已建立的现有模型效果不佳。已经发现,针对传播和曲率项的组合,建立良好的现有模型的性能在很大程度上取决于反应进度变量的选择。此外,密度加权位移速度的表面平均值无法通过相应的未拉伸层流火焰值来近似,尤其是对于BRZ体制中的火焰。对于基于FSD的反应速率关闭和FSD输运方程中未封闭项的子模型在不同燃烧方案中对反应进程变量的不同选择所观察到的行为,已经提供了详细的解释。

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