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Effects of Al2O3-Cu/water hybrid nanofluid on heat transfer and flow characteristics in turbulent regime

机译:Al2O3-Cu /水杂化纳米流体对湍流传热和流动特性的影响

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摘要

In this paper, forced convection of a turbulent flow of pure water, Al2O3/water nanofluid and Al2O3-Cu/water hybrid nanofluid (a new advanced nanofluid composited of Cu and Al2O3 nanoparticles) through a uniform heated circular tube is numerically analyzed. This paper examines the effects of these three fluids as the working fluids, a wide range of Reynolds number (10 000 <= Re <= 10 0000) and also the volume concentration (0% < phi < 2%) on heat transfer and hydrodynamic performance. The finite volume discretization method is employed to solve the set of the governing equations. The results indicate that employing hybrid nanofluid improves the heat transfer rate with respect to pure water and nanofluid, yet it reveals an adverse effect on friction factor and appears severely outweighed by pressure drop penalty. However, the average increase of the average Nusselt number (when compared to pure water) in Al2O3-Cu/water hybrid nanofluid is 32.07% and the amount for the average increase of friction factor would be 13.76%.
机译:在本文中,通过均匀加热的圆形管,对纯水,Al2O3 /水纳米流体和Al2O3-Cu /水杂化纳米流体(一种由Cu和Al2O3纳米颗粒复合而成的新型先进纳米流体)的湍流强迫对流进行了数值分析。本文研究了这三种流体作为工作流体,广泛的雷诺数(10000 <= Re <= 100000)以及体积浓度(0%hi <2%)对传热和流体动力学的影响。性能。采用有限体积离散化方法求解控制方程组。结果表明,使用混合纳米流体可以提高相对于纯水和纳米流体的传热速率,但它显示出对摩擦系数的不利影响,并且压降损失明显超过了该因素。但是,Al2O3-Cu /水杂化纳米流体中平均Nusselt数(与纯水相比)的平均增加为32.07%,摩擦系数的平均增加量为13.76%。

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