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A priori direct numerical simulation assessment of algebraic flame surface density models for turbulent premixed flames in the context of large eddy simulation

机译:大涡模拟背景下湍流预混火焰代数火焰表面密度模型的先验直接数值模拟评估

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Flame surface density (FSD) based reaction rate closure is one of the most important approaches in turbulent premixed flame modeling. The algebraic models for FSD based on power laws often require information about the fractal dimension D and the inner cut-off scale eta(i). In the present study, two three-dimensional direct numerical simulation (DNS) databases for freely propagating statistically planar turbulent prernixed flames are analyzed among which the flame in one case belongs to the corrugated flamelet (CF) regime, whereas the other falls well within the thin reaction zone (TRZ) regime. It is found that D for the flame in the TRZ regime is greater than the value obtained for the flame in the CF regime. For the flame within the TRZ regime, the fractal dimension is found to be 7/3, which is the same as D for a material surface in a turbulent environment. For the flame in the CF regime, eta(i) is found to scale with the Gibson scale, whereas eta(i) is found to scale with the Kolmogorov length scale for the flame in the TRZ regime. Based on these observations a new algebraic model for FSD is proposed, where D and eta(i) are expressed as functions of Karlovitz number. The performances of the new and existing algebraic models for FSD are compared with the corresponding values obtained from DNS databases. 0 2008 American Institute of Physics.
机译:基于火焰表面密度(FSD)的反应速率封闭是湍流预混火焰建模中最重要的方法之一。基于幂定律的FSD代数模型通常需要有关分形维数D和内部截止尺度eta(i)的信息。在本研究中,分析了用于自由传播统计平面湍流预混合火焰的两个三维直接数值模拟(DNS)数据库,其中一种火焰属于波纹小火焰(CF)方案,而另一种火焰属于波纹小火焰(CF)方案。薄反应区(TRZ)制度。发现在TRZ状态下火焰的D大于在CF状态下火焰的D。对于TRZ范围内的火焰,分形维数为7/3,与湍流环境中材料表面的D相同。对于CF模式下的火焰,发现eta(i)与吉布森标度成比例,而eta(i)对于TRZ模式下的火焰与Kolmogorov长度标度成比例。基于这些观察结果,提出了一种新的FSD代数模型,其中D和eta(i)表示为Karlovitz数的函数。将FSD的新代数模型和现有代数模型的性能与从DNS数据库获得的相应值进行比较。 0 2008美国物理研究所。

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