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首页> 外文期刊>Heat Transfer Research >MIXED CONVECTION FLUID FLOW AND HEAT TRANSFER OF THE Al2O3-WATER NANOFLUID WITH VARIABLE PROPERTIES IN A CAVITY WITH AN INSIDE QUADRILATERAL OBSTACLE
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MIXED CONVECTION FLUID FLOW AND HEAT TRANSFER OF THE Al2O3-WATER NANOFLUID WITH VARIABLE PROPERTIES IN A CAVITY WITH AN INSIDE QUADRILATERAL OBSTACLE

机译:具有四边形内侧障碍物的腔内具有可变特性的Al2O3-水纳米流体的混合对流流动和传热

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摘要

This investigation is focused on mixed convection fluid flow and heat transfer of Al2O3-water inside a square enclosure containing a hot rectangular obstacle at its bottom wall. The governing equations have been solved using the finite volume method. The SIMPLER algorithm was employed to couple the velocity and pressure fields. Utilizing the developed code, a parametric study was conducted and the impact of important parameters such as the solid volume fraction, Richardson number, size of the hot obstacle on the fluid flow and thermal fields and heat transfer inside the enclosure were investigated. The results show that for all Richardson numbers, the average Nusselt number increases with increase in the volume fraction of nanoparticles. Moreover, at all values of the Richardson number, heat transfer decreases when the height of the heated obstacle increases.
机译:这项研究的重点是混合对流流体流动和Al2O3-水在一个方形外壳内的热传导,该方形外壳的底壁处有一个热矩形障碍物。控制方程已使用有限体积法求解。 SIMPLER算法用于耦合速度场和压力场。使用开发的代码,进行了参数研究,并研究了重要参数(如固体体积分数,Richardson数,热障碍物的大小)对流体流动和热场以及外壳内部传热的影响。结果表明,对于所有Richardson数,平均Nusselt数均随纳米粒子体积分数的增加而增加。此外,在所有理查森数的值下,当加热障碍物的高度增加时,热传递会减少。

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