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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 >Performance analysis of hybrid nanofluid in a heat sink equipped with sharp and streamlined micro pin-fins
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Performance analysis of hybrid nanofluid in a heat sink equipped with sharp and streamlined micro pin-fins

机译:散热器中杂交纳米流体的性能分析,配备尖锐且流线型微针翅片

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This manuscript is aimed at investigating the thermohydraulic characteristics of Al2O3 - Cu/water hybrid nanofluid in a micro pin-fin heat sink by implementing a multiphase Lagrangian-Eulerian approach. In modelling the nanofluid the influence of slip mechanisms i.e. Saffman lift and drag force, Brownian motion, gravity, virtual mass, thermophoresis and pressure gradient-induced force is included. In addition, the fin efficiency of the nanofluid cooled sharp and streamlined fin configurations is probed by analysing diamond, circular and elliptical fins arranged in the staggered assembly. Spherical shaped hybrid nanoparticles of 15 nm are studied for the particle volume fraction of 1%. The performance of heat sinks is evaluated by analysing the quantitative parameters including log mean temperature difference, average (Nu(avg)) and surface (Nu(s)) Nusselt number. Besides, the flow streamlines, thermal and vorticity contours represent the qualitative depiction of flow and thermal distributions. Results demonstrate that utilising nanofluid optimises Nu(avg) enhancement to maximum values of 25.14%, 19.65% and 24% for diamond, circular and elliptical fins, respectively. The thermal efficiency of nanofluid is highest across the upstream fins and it diminishes towards the downstream fins. At the highest pressure drop, the fin efficiency of the studied fin configurations is in the order of circular, elliptical and diamond fins. (C) 2019 Elsevier B.V. All rights reserved.
机译:该手稿旨在通过实施多相拉格朗日 - 欧拉 - 欧拉方法来研究Microp-Fin散热器中Al2O3 - Cu /水杂化纳米流体的热液压特性。在模拟纳米流体的影响下,包括糖举力和拖曳力,棕色运动,重力,虚拟质量,耐热阶段和压力梯度诱导的力。另外,通过分析布置在交错组件中的金刚石,圆形和椭圆形翅片来探测纳米流体冷却锋利和流线型翅片配置的翅片效率。研究了15nm的球形杂化纳米颗粒,用于粒子体积分数为1%。通过分析包括对数平均温差,平均(NU(AVG))和表面(NU(S))NUSERET NUMBERS的定量参数来评估散热器的性能。此外,流动流线,热和涡度轮廓代表了流动和热分布的定性描绘。结果表明,利用纳米流体优化Nu(AVG)增强分别为金刚石,圆形和椭圆形鳍片的最大值为25.14%,19.65%和24%。纳米流体的热效率在上游翅片上最高,并将其降低朝向下游翅片。在最高压降下,研究的翅片配置的鳍效率是圆形,椭圆形和金刚石鳍的顺序。 (c)2019年Elsevier B.V.保留所有权利。

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