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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 >CFD approach for two-phase CuO nanofluid flow through heat exchangers enhanced by double perforated louvered strip insert
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CFD approach for two-phase CuO nanofluid flow through heat exchangers enhanced by double perforated louvered strip insert

机译:通过双孔百叶窗带插入件通过热交换器进行两相CuO纳米流体流动的CFD方法

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摘要

In this study, turbulent flow characteristics of CuO-water nanofluid through heat exchanger pipe enhanced with louvered strips are numerically investigated. Nanoparticles volume fraction (phi) varied from 0 to 2%. The louvered strips are mounted in single and double geometries. The slant angle (theta) and the Reynolds number (Re) are within 15 degrees - 25 degrees and between 5000 and 14,000, respectively. (RNG) k - epsilon model is employed based on the finite volume technique. The results illustrated that strong flow disturbance between the wall and the louvered strip is the main reason for turbulent kinetic energy increment. Besides, the nanoparticles improve the thermophysical properties of the working fluid, which results in better heat transfer. The Nu number increases 15.6% by using nanofluid instead of water at Re = 14000. The highest thermal enhancement parameter of 1.99 is obtained at Re = 14000 by using double perforated louvered strip with theta = 25 degrees. The recirculating flow inside the holes can significantly improve the thermal performance. (C) 2020 Elsevier B.V. All rights reserved.
机译:在本研究中,数值研究了通过热交换器管通过热交换器管增强了CuO水纳米流体的湍流特性。纳米粒子体积分数(PHI)变化0至2%。百叶窗的条带安装在单一和双几何上。倾斜角度(θ)和雷诺数(RE)分别在15度 - 25度和5000和14,000之间。 (RNG)基于有限体积技术采用k - epsilon模型。结果表明,墙壁和百叶窗之间的强流量扰动是湍流动能增量的主要原因。此外,纳米颗粒改善了工作流体的热神科性质,这导致更好的热传递。通过在Re = 14000处使用纳米流体而不是水来增加15.6%。通过使用双穿孔的百叶窗带有Theta = 25度,在Re = 14000获得1.99的最高热增强参数。孔内的再循环流动可以显着提高热性能。 (c)2020 Elsevier B.V.保留所有权利。

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