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Heat transfer in a suddenly expanded turbulent flow past a porous insert using linear and non-linear eddy-viscosity models

机译:使用线性和非线性涡粘度模型,突然膨胀的湍流中的热传递通过多孔插入物

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This work presents numerical results for heat transfer in turbulent flow past a backward-facing-step channel with a porous insert using linear and non-linear eddy viscosity macroscopic models. The non-linear turbulence models are known to perform better than classical eddy-diffusivity models due to their ability to simulate important characteristics of the flow. Parameters such as porosity, permeability and thickness of the porous insert are varied in order to analyze their effects on the flow pattern, particularly on the damping of the recirculating bubble after the porous insertion. The numerical technique employed for discretizing the governing equations is the control-volume method. The SIMPLE algorithm is used to correct the pressure field. Wall functions for velocity and temperature are used in order to bypass fine computational close to the wall. Comparisons of results simulated with both linear and non-linear turbulence models are presented.
机译:该工作具有使用线性和非线性涡粘度宏观模型的湍流在湍流中的热传递传热在湍流中传热的数值结果。已知非线性湍流模型是由于其模拟流动的重要特征的能力而比经典涡流模型更好。多孔插入件的孔隙,渗透性和厚度的参数变化,以便分析它们对流动模式的影响,特别是在多孔插入后的再循环泡的阻尼。用于离散化控制方程的数值技术是控制体积方法。简单的算法用于校正压力场。用于速度和温度的壁函数,以绕过靠近墙壁的精细计算。提出了用线性和非线性湍流模型模拟的结果的比较。

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