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Development and application of a multi-scale k-ε model for turbulent porous medium flows

机译:湍流多孔介质流多尺度k-ε模型的开发与应用

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A multi-scale k-ε eddy viscosity model for turbulence in porous media is developed. When the double averaging is applied to the momentum equation, the dispersive covariance, the macro-scale and micro-scale Reynolds stresses appear and need modelling to close the equation. The conventional eddy viscosity modelling is applied to model the second moments for engineering applications. A k-ε two-equation eddy viscosity model is employed for obtaining the volume averaged Reynolds stress which consists of the macro-scale and the micro-scale Reynolds stresses. The micro-scale Reynolds stress is also independently modelled and obtained by solving another set of k and ε equations, whilst an algebraic model is developed for the dispersive covariance. The presently proposed multi-scale four equations eddy viscosity model is evaluated in developed turbulent flows in homogeneous porous media, porous wall channel flows and porous rib-mounted channel flows with satisfactory accuracy.
机译:建立了多孔介质湍流的多尺度k-ε涡流模型。当对动量方程式进行两次平均时,会出现色散协方差,宏观和微观雷诺应力,需要进行建模以关闭方程式。常规的涡流粘度建模用于工程应用的第二矩建模。采用k-ε二方程涡流粘度模型得到体积平均的雷诺应力,其由宏观和微观的雷诺应力组成。微型雷诺应力也可以通过求解另一组k和ε方程独立建模和获得,同时为色散协方差开发了代数模型。在均匀的多孔介质中的湍流,多孔壁通道流动和肋骨上安装的通道流动中,以令人满意的精度评估了目前提出的多尺度四方程涡流粘度模型。

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