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Numerical study of isothermal turbulent channel flows and mixed convection laminar cavity flows

机译:等温湍流通道和混合对流层流腔的数值研究

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摘要

A numerical study about three-dimensional steady state turbulent channel flows and laminar transient cavity flows with mixed convection heat transfer has been done. The solution of the conservation equations is obtained by means of Finite Element Method and Taylor-Galerkin explicit scheme. Large Eddy Simulation is employed for the treatment of turbulence. For the isothermal case, flows with Re = 3300 were simulated using the Smagorinsky and Dynamical subgrid models. The latter model allowed improving the average velocity profiles as well as turbulence statistics. The transient velocity and temperature fields were compared with results of the literature, leading to a deviation lower than 6%.
机译:对三维稳态湍流通道和层流瞬态腔内混合对流换热问题进行了数值研究。守恒方程的解是通过有限元法和泰勒-加勒金显式方法获得的。大涡模拟用于湍流的处理。对于等温情况,使用Smagorinsky模型和Dynamical子网格模型模拟Re = 3300的流动。后一种模型允许改进平均速度分布以及湍流统计。将瞬态速度和温度场与文献结果进行比较,得出的偏差小于6%。

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