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Mixed convection in a channel with buoyancy force over backward and forward facing steps: The effects of inclination and geometry

机译:在向后和向前朝向的浮力力的渠道中混合对流:倾斜和几何的影响

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摘要

This paper presents the computational results of heat transfer for a 2D laminar flow with different channel tilts with forward facing step and backward facing step, taking into account buoyancy forces for various bottom wall lengths. The inclination angle influence on the distribution of velocity and temperature is investigated. The validated numerical algorithm was used to the problem forward and backward facing steps with buoyancy force and at various tilt angles. From the obtained numerical results, it can be noticed that the length of the lower part of the channel has a very strong effect on the flow fluctuation and temperature distribution over the entire channel. It should be noticed that the tilt angle also has a very strong effect on the distribution of flow and temperature. Thus, taking into account the buoyancy force changes the shape of the main recirculation region, but at the same time, regardless of the different tilt angles, the number of vortices does not change, but only the size of the vortices changes. It should also be noticed that when the buoyancy force is taken into account, cooling occurs more efficiently in the middle of the channel.
机译:本文介绍了具有不同通道倾斜的2D层流的传热的计算结果,其具有前方的步骤和落后步骤,考虑了各种底壁长度的浮力力。研究了对速度和温度分布的倾斜角度影响。经过验证的数值算法用于对浮力力和各种倾斜角度的向前和向后面对面的步骤。从获得的数值结果来看,可以注意到通道下部的长度对整个通道上的流量波动和温度分布具有非常强烈的影响。应该注意的是,倾斜角也对流动和温度分布具有非常强烈的影响。因此,考虑到浮力力改变主再循环区域的形状,但同时,无论不同的倾斜角如何,涡流的数量都不会改变,但只有涡流的大小变化。还应该注意到,当考虑浮力力时,在通道中间更有效地发生冷却。

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