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Numerical Simulation of Al_2O_3–Water Nanofluid Flow and Heat Transfer in a Tube with Angled Rings

机译:Al_2O_3水纳米流体流动和倾斜环管中热传递的数值模拟

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A numerical investigation has been conducted to examine turbulent flow and heat transfer characteristics in a three-dimensional isothermal tube mounted with 60° angled rings (AR). The ARs with pitch spacing ratio, PR=1.0 and various blockage ratios (BR) ranging from 0.025-0.1 are introduced. The computations are based on a finite volume method and the SIMPLE algorithm has been implemented. The fluid flow and heat transfer characteristics are presented for Reynolds number (Re) ranging from 3000 to 12000. To generate a main counter-vortex pair flow in the tube, ARs at an attack angle of 60° are mounted repeatedly in the tube. Effect of different BRs at a single PR and nanofluid, Al_2O_3–water, with volume fractions 1% and 5% on heat transfer and friction loss is investigated. It is apparent that two main vortex flows created by the ARs exist and help to induce impinging flows on the tube wall leading to drastic increase in heat transfer rate over the tube. The increment in the BR gives rise to the increase in the Nusselt number and friction factor. The computational results reveal that the maximum thermal enhancement factor for the AR with BR=0.025 is found to be 1.8 at Re =3000. The results show that nanofluid, Al_2O_3 –water, can increase the thermal performance when increasing volume fraction to 5%.
机译:已经进行了数值研究,以检查安装有60°角环(AR)的三维等温管中的湍流和传热特性。引入了具有音高间距比,PR = 1.0的AR,以及0.025-0.1的各种堵塞比率(BR)。计算基于有限卷方法,并且已经实现了简单的算法。为雷诺数(RE)提供的流体流动和传热特性为3000至12000。为了在管中产生主反涡对流动,在管中反复安装在60°的迎物角度下的AR。研究了不同BRS在单个PR和纳米流体,Al_2O_3-水,体积分数1%和5%对传热和摩擦损失的影响。显而易见的是,由ARS产生的两个主要涡流流存在并有助于诱导撞击管壁上的流动,导致管中的传热速率的急剧增加。 BR中的增量导致营养数量和摩擦系数的增加。计算结果表明,使用BR = 0.025的AR的最大热增强因子在RE = 3000处被发现为1.8。结果表明,纳米流体,Al_2O_3 -WATE,可以在将体积分数增加到5%时提高热性能。

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