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Effects of conductive curved partition and magnetic field on natural convection and entropy generation in an inclined cavity filled with nanofluid

机译:导电弯曲隔板和磁场对纳米流体倾斜腔内自然对流和熵产生的影响

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In this study, natural convection and entropy generation analysis of nanofluid in an inclined cavity including a curved shaped conductive partition are performed under the impact of inclined magnetic field by using Galerkin weighted residual finite element method. Numerical simulations are performed for various values of Rayleigh number (between 10(4) and 10(6)), inclination angle of the cavity (between 0 degrees and 180 degrees), Hartmann number (between 0 and 50), orientation angle of the magnetic field (between 0 degrees and 90 degrees), curvatures of the conductive partition (between 0.01 and 0.1), conductivity ratio (between 0.01 and 100) and solid nanoparticle volume fraction (between 0 and 0.03). The average Nusselt number increases with higher values of Rayleigh number, inclusion of nano sized particles whereas it is reduced with higher values of Hartmann number. When the value of Hartmann number is increased from 0 to 50, 32% and 34% of average Nusselt number reduction is obtained for water and nanofluid. The cavity inclination angle has significant effects on the convective heat transfer characteristics. When the radii of the vertical and horizontal elliptic curved partitions are increased to 0.3H, 23% and 3.8% deterioration of average Nusselt number is obtained while significant enhancement in the heat transfer is observed when the conductivity of the partition is increased. The second law analysis was included in the study and entropy generation rate was found to vary with different parameters. Contributions of solid and fluid domains to the entropy generation rate were determined. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本研究中,通过使用Galerkin加权残留有限元方法在包括弯曲磁场的撞击下进行倾斜腔中纳米流体的自然对流和熵生成分析。对瑞利数的各种值进行数值模拟(10(4)和10(6)),腔的倾斜角度(在0度和180度之间),Hartmann号(在0到50之间),方向角磁场(0度和90度之间),导电隔板的曲率(0.01和0.1),电导率比(0.01和100之间)和固体纳米颗粒体积分数(0和0.03之间)。瑞利数量较高的平均露天数增加,纳米尺寸粒子的含有较高,而它具有较高的Hartmann数。当Hartmann号的值增加到50〜50时,为水和纳米流体获得32%和34%的平均水果数量减少。腔倾斜角对对流传热特性具有显着影响。当垂直和水平椭圆弯曲隔板的半径增加到0.3h时,获得了平均喷射数的23%和3.8%的劣化,同时观察分隔的电导率时观察到传热的显着增强。第二法律分析包含在研究中,发现熵产生率随不同的参数而变化。确定了固体和流体域对熵产生率的贡献。 (c)2019 Elsevier B.v.保留所有权利。

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