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Comparison of Finite Rate Chemistry and Flamelet/Progress-Variable Models: Sandia Flames and the Effect of Differential Diffusion

机译:有限速率化学和爆发/进展变量模型的比较:桑迪亚火焰与差分扩散的影响

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摘要

In this study, large eddy simulations (LES) are conducted using both a finite-rate chemistry (FRC) model and a flamelet/progress-variable (FPV) model for a series of piloted partially premixed methane/air flames of increasing turbulence intensity (Sandia Flames D, E, and F). From Flame D to E to F, as flow velocity and strain rate increase, the flame is either pushed downstream and extended radially or weakened by enhanced local extinction. The two combustion models produce different spatial distributions of both time-averaged quantities and instantaneous flame field. The FPV model provides an overall better prediction of the time-averaged axial and radial profiles of Flame D, but a significantly worse prediction of Flame F, primarily because the FPV model significantly over predicts local extinction. In terms of the conditional statistics, in which the effects of spatial distribution of mixture fraction and subgrid-scale (SGS) modeling are largely "removed," the FRC model provides better predictions than the FPV model for all quantities at most locations and mixture fractions in all three flames. The effect of differential diffusion on the prediction of a species depends on the molecular diffusivity of that species; the effect is typically smaller than the difference between the FRC and FPV models.
机译:在该研究中,使用有限速率化学(FRC)模型和火炬/进展 - 变量(FPV)模型进行大型涡流模拟(LES),用于一系列导向的部分预混合甲烷/空气火焰增加的湍流强度(桑迪亚火焰d,e和f)。从火焰d到e到f,随着流速和应变速率的增加,火焰在下游推动并通过增强的局部灭绝径向延伸或削弱。两个燃烧模型产生了两种时间平均量和瞬时火焰场的不同空间分布。 FPV模型提供了对火焰D时平均轴向和径向分布的总体更好的预测,但是对火焰F的显着更差预测,主要是因为FPV模型显着地预测局部灭绝。在条件统计方面,其中混合分数和子级级(SGS)建模的空间分布的影响主要是“去除”,FRC模型提供比大多数位置和混合分数的所有量的FPV模型更好的预测在所有三个火焰中。差分扩散对物种预测的影响取决于该物种的分子扩散性;效果通常小于FRC和FPV型号之间的差异。

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