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Numerical study of laminar mixed convection heat transfer of power-law non-Newtonian fluids in square enclosures by finite volume method

机译:有限体积法数值模拟幂律非牛顿流体在方形罩壳中的层流混合对流换热

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In this study, we have numerically considered mixed convection heat transfer in a square enclosure with cold left and right walls, insulated moving upper wall and hot fixed lower wall. The governing flows of two reliable articles were initially modeled and after validating calculations, the given flow of the study was solved by finite volume method.To examine the effects of different factors, such as Prandtl, Reynolds and Rayleigh numbers on heat transfer in a square enclosure, the laminar flow of Newtonian fluids was approximated and then laminar flow of non-Newtonian fluids, such ascarboxy methyl cellulose (CMC) andcarboxy poly methylene (Carbopol) water solutions were studied for different Richardson numbers. It was found from the results obtained in the present study that when Ri is less than 1, governing heat transfer inside the enclosure is forced convection for non-Newtonian fluids similar to Newtonian ones. When Ri increases, the effect of forced convection is reduced and natural convection heat transfer increases. It was also found that in constant Grashof numbers, ifndecreases, the dimensionless temperature increases. Also, ifnis constant, any increase in Grashof number causes a higher dimensionless temperature. It may be related to the fact that in similar conditions, any increase in forced convection, makes shear stresses more.
机译:在这项研究中,我们在数值上考虑了在具有冷左和右壁,隔热移动式上壁和热固定式下壁的方形外壳中的混合对流传热。首先对两篇可靠文章的控制流进行建模,并通过计算验证,然后通过有限体积法求解给定的研究流。研究方阵中Prandtl,Reynolds和Rayleigh数等因素对传热的影响。封闭,近似牛顿流体的层流,然后研究不同牛顿流体的层流,例如羧甲基纤维素(CMC)和羧基聚亚甲基(Carbopol)水溶液的不同理查森数。从本研究中获得的结果发现,当Ri小于1时,对于类似于牛顿流体的非牛顿流体,控制外壳内部的热传递是强制对流的。当Ri增加时,强制对流的作用减小并且自然对流传热增加。还发现,在恒定的Grashof数下,如果降低,则无因次温度升高。同样,如果常数保持不变,则Grashof数的任何增加都会导致更高的无量纲温度。这可能与以下事实有关:在类似条件下,强制对流的任何增加都会使剪切应力更大。

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