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Impact of Turbulent Flow and Mean Mixture Fraction Results on Mixing Model Behavior in Transported Scalar PDF Simulations of Turbulent Non-premixed Bluff Body Flames

机译:湍流和平均混合分数结果对运输标量中混合模型行为的影响PDF非湍流非预混钝体火焰的PDF模拟

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摘要

Numerical simulation results are presented for three turbulent jet diffusion flames, stabilized behind a bluff body (Sydney Flames HM1-3). Interaction between turbulence and combustion is modeled with the transported joint-scalar PDF approach. The focus of the study is on the impact of the quality of simulation results in physical space on the behavior of two micro-mixing models in composition space: the Euclidean Minimum Spanning Tree (‘EMST’) model and the modified Curl coalescence dispersion (‘CD’) model. Profiles of conditional means and variances of thermo-chemical quantities, conditioned on the mixture fraction, are discussed in the recirculation region and in the neck zone behind. The impact of the flow and mixing fields in physical space on the mixing model behavior in composition space is strong for the CD model and increases as the turbulence – chemistry interaction becomes stronger. The EMST conditional profiles, on the contrary, are hardly affected.
机译:给出了三个湍流射流扩散火焰的数值模拟结果,该火焰稳定在钝体后面(悉尼火焰HM1-3)。湍流和燃烧之间的相互作用是用运输的联合标量PDF方法建模的。该研究的重点是物理空间中模拟结果的质量对组成空间中两个微混合模型的行为的影响:欧几里得最小生成树('EMST')模型和改进的Curl合并分散(' CD')模型。在循环区域和后面的颈部区域中,讨论了以混合物分数为条件的条件均值和热化学量方差的分布图。对于CD模型,物理空间中的流动场和混合场对混合模型在成分空间中的行为的影响很大,并且随着湍流-化学相互作用的增强而增加。相反,EMST条件配置文件几乎不受影响。

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