A Comparative Study for Compressible Turbulence Models

H. Khlifi, Adnan Bourehla
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引用次数: 0

Abstract

The incompressible models for the pressure-strain correlation are unable to correctly predict the turbulence flows evolving with significant compressibility. Huang and Fu use a damping function of the turbulent Mach number to modify two numerical coefficients of the incompressible model for the pressure strain developed by Launder, Reece and Rodi. This model predicts the spreading rate and the shear stress behavior in compressible turbulent mixing well. However, the model does not show the well-known compressibility effects on the compressible homogenous shear flow. In the present work, the model of Huang-Fu is revised, all resulting model coefficients become dependent on the turbulent Mach number, the gradient Mach number and the convective Mach number. The proposed model is tested in different compressible turbulent homogeneous shear flow and mixing layers cases. In general, the predicted results from the proposed model are in an acceptable agreement with DNS and experiment data.
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可压缩湍流模型的比较研究
压力-应变相关的不可压缩模型不能正确预测具有显著可压缩性的湍流。Huang和Fu使用湍流马赫数的阻尼函数来修改Launder, Reece和Rodi开发的压力应变不可压缩模型的两个数值系数。该模型很好地预测了可压缩湍流混合中的扩散速率和剪应力行为。然而,该模型并未显示出众所周知的可压缩均质剪切流的可压缩性效应。本文对黄甫模型进行了修正,得到的所有模型系数都依赖于湍流马赫数、梯度马赫数和对流马赫数。在不同的可压缩均匀剪切流和混合层情况下对该模型进行了验证。总的来说,该模型的预测结果与DNS和实验数据符合得很好。
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