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The effect of inclination angle and hot wall configuration on Cu-water nanofluid natural convection inside a porous square cavity

机译:倾斜角度和热壁构造对多孔方腔内Cu水纳米流体自然对流的影响

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摘要

Natural Convection of Cu-water nanofluid in an inclined cavity filled with porous media has been investigated using two-phase mixture model. The co-effect of cavity's inclination angle, heater configuration, use of nanofluid and porous media on heat transfer enhancement has been studied with detailed investigation of the decision variables effect (Rayleigh number, Darcy number, inclination angle, and volume fraction of Cu nanoparticles) on heat transfer characteristics. The investigation considers the laminar flow for natural convection (10(4) = Ra = 10(6)). Darcy-Brinckman-Forchheimer model has been used as for the simulation of porous media and two-phase mixture model has been applied to model the behavior of nanofluid. In accordance it has been shown that simultaneous use of nanofluid with porous media in weak convection flows is beneficial, but for strong natural convection fields that would be unfavorable and decreases heat transfer rate. It has been concluded that the effect of inclination angle highly depends on the hot wall location as in some states having the square cavity inclined would be of benefit while in another case the total heat transfer would decline. The results show that proper selection of heater configuration (side wall or corner heating) and inclination angle inline with nanofluid concentration and porous media properties can highly affect heat transfer performance. Furthermore, optimal solutions might exist for different conditions. (C) 2017 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:使用两相混合物模型研究了填充有多孔介质的倾斜腔中Cu水纳米流体的自然对流。研究了腔倾角,加热器配置,纳米流体和多孔介质对传热增强的影响,详细研究了决策变量效应(瑞利数,达西数,倾斜角度和Cu纳米粒子的体积分数)关于传热特性。该研究考虑了用于自然对流的层流(10(4)= Ra,= 10(6))。 Darcy-Brinckman-Forchheimer模型已被用作多孔介质的模拟,两相混合模型已应用于模拟纳米流体的行为。已经表明,在弱对流流中同时使用具有多孔介质的纳米流体是有益的,但对于强烈的自然对流场,这将是不利的并且降低传热速率。得出的结论是,倾斜角度高度依赖于热墙位置,如在具有方形腔的一些状态下,倾斜的各个态在另一种情况下,在另一种情况下,总热传递将下降。 The results show that proper selection of heater configuration (side wall or corner heating) and inclination angle inline with nanofluid concentration and porous media properties can highly affect heat transfer performance.此外,不同条件可能存在最佳解决方案。 (c)2017年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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