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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Experimental study of nanofluids flow and heat transfer over a backward-facing step channel
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Experimental study of nanofluids flow and heat transfer over a backward-facing step channel

机译:纳米流体流动与落后步进通道的试验研究

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The forced convective heat transfer and friction factor of nanofluids flow over a backward-facing step (BFS) in a channel with the base wall dissipating a uniform heat flux are experimentally investigated in this paper. Nanoparticles such as CuO and MgO dispersed in pure ethylene glycol (EG) with average diameters of 40 nm, and volume concentrations of 0, 1, 3, and 5% are considered as the working nanofluids. The results indicate that the heat transfer rate increases as the volume concentration of nanoparticles increased. The Nusselt number is enhanced up to 11% at 0.05 volume concentration compared to pure EG. The friction factor increases up to approximately 15% at Reynolds number (Re) of 5000 and volume concentrations of 0.01 and 0.03. The maximum value of the PEC in a BFS channel is 1.5 for the CuO-EG and 1.2 for the MgO-EG at a volume concentrations of 0.03 and Re = 20,000. (C) 2020 Elsevier B.V. All rights reserved.
机译:在本文实验研究了在具有碱基壁的通道中沿着面对面的步骤(BFS)在底壁上流过的强制对流传热和摩擦因子。 纳米颗粒如CuO和MgO分散在纯乙二醇(例如)的平均直径为40nm,并且0,1,3和5%的体积浓度被认为是工作纳米流体。 结果表明,随着纳米颗粒的体积浓度增加,传热速率增加。 与纯度相比,豆类数为0.05体积浓度的增强量高达11%。 摩擦系数在5000和0.01和0.03的体积浓度为5000和0.03的雷诺数(RE)时增加大约15%。 对于CuO-EG和1.2的PEC在BFS通道中的最大值为1.5,对于MGO - 例如以0.03的体积浓度和重新= 20,000。 (c)2020 Elsevier B.V.保留所有权利。

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