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MHD natural convection and entropy generation of ferrofluid in an open trapezoidal cavity partially filled with a porous medium

机译:MHD自然对流和熵生成的漂流流体中的开放梯形腔内部分填充有多孔介质

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In this study, natural convection combined with entropy generation of Fe3O4-water nanofluid within an open trapezoidal cavity filled with a porous layer and a ferrofluid layer under the effect of uniform inclined magnetic field is numerically analyzed. Porous layer is located on the bottom wall and heated from the left inclined wall. Bottom wall, right and left tilted walls of the cavity are adiabatic except for the active part along the left inclined wall where hot temperature T-h is constant, upper open boundary is kept at constant cold temperature T-c. Governing equations with corresponding boundary conditions formulated in dimensionless stream function and vorticity using Brinkman-extended Darcy model for porous layer have been solved numerically using finite difference method. Numerical analysis has been carried out for a wide range of Hartmann number, magnetic field inclination angle, height of the porous layer and nanoparticles volume fraction. It has been found that an increase in Hartmann number leads to a growth of oscillations amplitude for average Nusselt number and average entropy generation. At the same time inclination angle alpha=pi/2 illustrates unstable behavior of heat and fluid flow. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在该研究中,在数值分析了在填充有多孔层的开口梯形腔内的Fe3O4-水纳米流体的自然对流与填充有多孔层的开口梯形腔内的熵产生和在均匀倾斜磁场的效果下的开口梯形腔内。多孔层位于底壁上并从左倾壁加热。腔室的底壁,左右倾斜壁是绝热的,除了沿左倾斜壁的有源部分,其中热温度T-H是恒定的,上开边保持在恒定的冷温度T-C处。使用有限差分法在数值上在数值上求解具有在无量纲流功能和使用Brinkman-Direct Darcy模型的维度流函数和涡旋中配制的相应边界条件的规范。已经为多种Hartmann数,磁场倾斜角度,多孔层的高度和纳米颗粒体积分数进行了数值分析。已经发现,Hartmann号的增加导致振荡振幅的增长,用于平均露天露天数和平均熵生成。在相同的时间倾斜角度α= PI / 2示出了热和流体流动的不稳定行为。 (c)2018年elestvier有限公司保留所有权利。

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