Numerical Study of Turbulent Mixed Convection in a Square Lid Driven Cavity with an Inside Hot Bloc

Komlan Djiwonou Woenagnon, K. N’wuitcha, K. A. Amou, M. Banna
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Abstract

In this study, we are interested in the two-dimensional numerical simulation of the turbulent mixed convection in the case of a square with two side lid-driven cavity containing a hot obstacle. The transfer equations coupled with those of the  K - ε closure model and the boundary conditions were presented and discretized using the finite volume method. The coupling between the velocity and pressure fields is achieved by the SIMPLE algorithm. The technique of line-by-line scanning with the Thomas algorithm (TDMA) is used for the iterative resolution of discretized equations. The control parameters of the present study are the temperature gradient between the hot walls and the cold walls, and the speed imposed on the mobile walls. Streamlines generally show flow characterized by the presence of two counter-rotating cells. The areas adjacent to the isothermal walls and to the moving walls are the site of the development of thermal and dynamic boundary layers, where significant temperature and velocity gradients have been observed, subsequently influencing the profiles of turbulent quantities such as turbulent viscosity, the production and dissipation of turbulent kinetic energy and the intensity of turbulence.
内热块方形盖驱动腔内湍流混合对流的数值研究
在本研究中,我们感兴趣的是二维数值模拟湍流混合对流的情况下,双方盖驱动的空腔含有热障碍物的正方形。提出了与K - ε闭合模型和边界条件耦合的传递方程,并用有限体积法进行了离散。采用SIMPLE算法实现了速度场和压力场之间的耦合。采用托马斯算法逐行扫描技术对离散方程进行迭代求解。本研究的控制参数是热壁和冷壁之间的温度梯度,以及施加在流动壁上的速度。流线通常以两个反向旋转单元的存在为特征。等温壁面和运动壁面附近的区域是热边界层和动力边界层发育的地方,在那里观察到显著的温度和速度梯度,随后影响湍流量的分布,如湍流粘度、湍流动能的产生和耗散以及湍流强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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