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Entropy generation analysis during MHD natural convection flow of hybrid nanofluid in a square cavity containing a corrugated conducting block

机译:杂交纳米流体中MHD自然对流流动期间的熵生成分析,含有波纹导电块的方腔中的杂交纳米流体

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Purpose - The purpose of this paper is to study the influence of magnetic field on entropy generation and natural convection inside an enclosure filled with a hybrid nanofluid and having a conducting wavy solid block. Also, the effect of fluid-solid thermal conductivity ratio is investigated. Design/methodology/approach - The governing equations that are formulated in the dimensionless form are discretized via finite volume method. The velocity-pressure coupling is assured by the SIMPLE algorithm. Heat transfer balance is used to verify the convergence. The validation of the numerical results was performed by comparing qualitatively and quantitatively the results with previously published investigations. Findings - The results indicate that the magnetic field and the conductivity ratio of the wavy solid block can significantly affect the dynamic and thermal field and, consequently, the heat transfer rate and entropy generation because of heat transfer, fluid friction and magnetic force. Originality/value - To the best of the authors' knowledge, the present numerical study is the first attempt to use hybrid nanofluid for studying the entropy generation because of magnetohydrodynamic natural convective flow in a square cavity with the presence of a wavy circular conductive cylinder. Irreversibilities due to magnetic effect are taken into account. The effect of fluid-solid thermal conductivity ratio is considered.
机译:目的 - 本文的目的是研究磁场对填充有杂交纳米流体的外壳内的熵产生和自然对流的影响,并具有导电波状固体块。而且,研究了流体固态导热率比的影响。设计/方法/方法 - 以无量纲形式配制的控制方程通过有限体积法离散化。通过简单的算法确保速度压力耦合。传热平衡用于验证收敛。通过与先前公布的调查进行定性和定量的结果来进行数值结果的验证。结果 - 结果表明,波浪固体块的磁场和电导率可以显着影响动态和热场,因此,由于传热,流体摩擦和磁力,传热速率和熵产生。原创性/价值 - 据作者所知,目前的数值研究是首次使用混合纳米流体来研究熵生成的尝试,因为在方腔中具有波浪圆形导电圆筒的磁性流体动力学自然对流流动。考虑到由于磁效应导致的不缩义。考虑流体 - 固态导热率比的影响。

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