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Numerical investigation of nanofluid laminar forced convection heat transfer between two horizontal concentric cylinders in the presence of porous medium

机译:多孔介质存在下两个水平同心圆柱型纳米流体层压型近径对流热传递的数值研究

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In this paper, the finite volume method is used to investigate the laminar forced convection of water-copper nanofluid between two porous horizontal concentric cylinders. The effects of Reynolds number, the volume fraction of nanoparticles, the geometry, and the porous medium porosity on heat transfer have been studied. The problem is investigated in two different geometries and Re = 10, 25, 50, 75,100, and volume fraction of nanoparticles 0, 0.2, 0.5, 2, and 5% that were related to Copper nanoparticles and the porous medium porosity of 0.5, 0.9. The results indicated that in each geometry, the corresponding Nusselt number increase in the porosity of 0.9 is greater than that of the case with the porosity of 0.5. The results show that the increase in the heat transfer coefficient in the second geometry is greater than the first geometry and in porosity 0.9 is greater than porosity 0.5. These increase values are 6 and 3%, respectively. The increase in the average temperature of the inner cylinder surface in the five mentioned Reynolds values and both geometries is investigated. This increase in temperature in Re = 10 is greater than other Reynolds numbers. The corresponding temperature increases of Re = 10, for the first and second geometries, are 1.8 and 2.2%, respectively. Investigation of the effects of volume fraction of nanoparticles on Nusselt number and heat transfer coefficient shows that both parameters increase by increasing in the volume fraction of nanoparticles. The results show that the increase in the volume fraction of nanoparticles causes the increase in average temperature of the surface. The results show that these increases of temperature that take place in the volume fractions of 0.5, 2, and 5% of nanoparticles are equal to 0.6, 1.14, and 2.3% and relative to the water, respectively.
机译:在本文中,使用有限体积法研究两个多孔水平同心圆柱之间的水 - 铜纳米流体的层状强制对流。研究了雷诺数,纳米颗粒的体积分数,几何形状和多孔介质孔隙率的影响已经研究过。在两种不同的几何形状和Re = 10,25,50,75,100中研究了问题,纳米颗粒0,0.2,0.5,2和5%的体积分数与铜纳米颗粒相关,多孔介质孔隙率为0.5,0.9 。结果表明,在每个几何形状中,孔隙率的相应的良好数量增加0.9的孔隙率为0.5的壳体。结果表明,第二几何形状中的传热系数的增加大于第一几何形状,孔隙率为0.9大于孔隙率0.5。这些增加值分别为6%,3%。研究了五个雷诺值中的内筒表面的平均温度的增加和两个几何形状。重新= 10的温度增加大于其他雷诺数。对于第一和第二几何形状的Re = 10的相应温度增加分别为1.8和2.2%。纳米颗粒体积分数对露珠数和传热系数的研究表明,通过增加纳米颗粒的体积分数增加了两个参数。结果表明,纳米颗粒的体积分数的增加导致表面的平均温度增加。结果表明,在0.5,2和5%纳米粒子的体积分数中发生的这些温度的增加分别等于0.6,1.14和2.3%,相对于水。

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