首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Natural convection of Cu-water nanofluid near water density inversion in horizontal annulus with different arrangements of discrete heat source - Sink pair
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Natural convection of Cu-water nanofluid near water density inversion in horizontal annulus with different arrangements of discrete heat source - Sink pair

机译:离散热源-水槽对布置不同的水平环空铜水纳米流体近水密度反演的自然对流

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In this paper, natural convection heat transfer is studied in two-dimensional horizontal concentric cylindrical annulus with discrete source-sink pairs. The effects of Cu nanoparticles on natural convection of water near its density maximum were considered in numerical simulations. Geometry consisting of two hot and cold sources (constant temperature) with different arrangements and the remained parts were assumed to be adiabatic. The governing equations were formulated using both the Boussinesq (B) and non-Boussinesq (NB) homogenous models and were solved on a non-uniform mesh using a pressure-based finite volume method. The computations were carried out for Pr = 13.31, Rayleigh number from 10(4) to 5 x 10(5) and volume fraction of nanoparticles from 0 to 0.08. This work with pure fluid and nanofluid was validated by previous studies and the results were shown in three cases under investigation. The results were presented from streamlines and isotherms flow field, local and average Nusselt number. It was found that different arrangements by different angles and density inversion affected founding best state of heat transfer in each case and general enhancement of heat transfer was obtained by adding volume fractions of nanoparticles, so average Nusselt number increased and an optimum design was also found. It was concluded that the B approximation in comparison to NB approximation gave rise to the higher heat transfer rate. The findings showed that which of cases was applicable to optimization design in industry and especial in heat exchanger. (C) 2016 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:在本文中,研究了二维的水平同心圆柱环带离散的源-汇对的自然对流换热。在数值模拟中考虑了铜纳米颗粒对接近其密度最大值的水自然对流的影响。由两个热源和冷源(恒定温度)组成的几何结构具有不同的排列方式,其余部分被认为是绝热的。控制方程是使用Boussinesq(B)和非Bousinesq(NB)均匀模型制定的,并使用基于压力的有限体积方法在非均匀网格上求解。计算是针对Pr = 13.31,瑞利数从10(4)到5 x 10(5)和纳米粒子的体积分数从0到0.08。先前的研究验证了使用纯流体和纳米流体进行的这项工作,结果在三个正在调查的案例中得到了证明。结果从流线和等温线流场,局部和平均努塞尔数给出。发现通过不同角度和密度反转的不同布置分别影响建立最佳传热状态,并且通过添加纳米颗粒的体积分数获得传热的总体增强,因此平均努塞尔数增加并且还发现了最佳设计。结论是,与NB近似相比,B近似引起了更高的传热速率。研究结果表明,哪种情况适用于工业领域的优化设计,尤其适用于热交换器。 (C)2016日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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