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A comparative study of turbulence models performance for separating flow in a planar asymmetric diffuser

机译:平面非对称扩散器中分离流动的湍流模型性能的比较研究

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摘要

This paper presents a computational study of the separated flow in a planar asymmetric diffuser. The steady RANS equations for turbulent incompressible fluid flow and six turbulence closures are used in the present study. The commercial software code, FLUENT 6.3.26, was used for solving the set of governing equations using various turbulence models. Five of the used turbulence models are available directly in the code while the v~2-f turbulence model was implemented via user defined scalars (UDS) and user defined functions (UDF). A series of computational analysis is performed to assess the performance of turbulence models at different grid density. The results show that the standard k-ω, SST k-ω and v~2-f models clearly performed better than other models when an adverse pressure gradient was present. The RSM model shows an acceptable agreement with the velocity and turbulent kinetic energy profiles but it failed to predict the location of separation and attachment points. The standard k-ε and the low-Re k-ε delivered very poor results.
机译:本文介绍了平面非对称扩散器中分离流的计算研究。在本研究中使用了湍流不可压缩流体的稳态RANS方程和六个湍流封闭。商业软件代码FLUENT 6.3.26用于使用各种湍流模型求解控制方程组。其中的五个湍流模型直接在代码中可用,而v〜2-f湍流模型是通过用户定义的标量(UDS)和用户定义的函数(UDF)实现的。进行了一系列计算分析,以评估在不同网格密度下湍流模型的性能。结果表明,当存在不利的压力梯度时,标准的k-ω,SSTk-ω和v〜2-f模型明显优于其他模型。 RSM模型显示了与速度和湍动能曲线的可接受的一致性,但是它无法预测分离点和附着点的位置。标准k-ε和低Rek-ε的结果非常差。

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