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Bottom Heated Mixed Convective Flow in Lid-Driven Cubical Cavities

机译:盖子驱动立方体中的底部加热混合对流流程

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The mixed convective flow of air in three-dimensional cubical lid-driven cavity flows are carried out numerically. The top lid assumed to be slide in its own plane at a constant speed. The horizontal walls are kept at an isothermal temperature in which the bottom wall has high temperature than the top. Numerical results are acquired for the control parameters arising in the system, namely, the Reynolds number (Re) in the range of 100-400 and the Richardson number (Ri) varying from 10~(-3) to 10. The fluid flow and heat transfer characteristics are visualized using the contours of streamlines, isotherms, vortex corelines with respect to different Ri and Re. The results are compared with the experimental/numerical results available in the literature and are found to be in good agreement.
机译:在数值上进行三维立方盖驱动腔流动中的空气的混合对流流。顶部盖子假设以恒定速度在自己的平面上滑动。水平壁保持在等温温度下,底壁具有高于顶部的温度。获得系统中产生的控制参数的数值结果,即雷诺数(RE)在100-400的范围内,Richardson数(RI)从10〜(3)到100到10。流体流动和使用流动线的轮廓,等温线,涡旋Corelines相对于不同的Ri和Re,可视化传热特性。将结果与文献中可用的实验/数值结果进行比较,并被发现符合良好的一致性。

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