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A turbulence model sensitivity study for CH4/H2 bluff-body stabilized flames

机译:CH4 / H2钝体稳定火焰的湍流模型敏感性研究

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The objective of this work is to assess the performances of different turbulence models in predicting turbulent diffusion flames in conjunction with the flamelet model. The k-epsilon model, the Explicit Algebraic Stress Model (EASM) and the k-epsilon model with varied anisotropy parameter C-mu (LEA k-epsilon model) are first applied to the inert turbulent flow over a backward-facing step, demonstrating the quality of the turbulence models. Following this, they are used to simulate the CH4/H-2 bluff-body flame studied by the University of Sydney/Sandia. The numerical results are compared to experimental values of the mixture fraction, velocity field, temperature and constituent mass fractions. The comparisons show that the overall result depends on the turbulence model used, and indicate that the EASM and the LEA k-epsilon models perform better than the k-epsilon model and mimic most of the significant flow features.
机译:这项工作的目的是结合小火焰模型评估不同湍流模型在预测湍流扩散火焰中的性能。首先将kε模型,显式代数应力模型(EASM)和具有不同各向异性参数C-mu的kε模型(LEA kε模型)应用于反向步骤中的惰性湍流,这证明了湍流模型的质量。之后,它们被用来模拟由悉尼大学/桑迪亚分校研究的CH4 / H-2钝体火焰。将数值结果与混合物分数,速度场,温度和组成质量分数的实验值进行比较。比较结果表明,总体结果取决于所使用的湍流模型,并表明EASM和LEAk-ε模型的性能优于k-ε模型,并且可以模拟大多数重要的流动特征。

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