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      Analytical and numerical investigation of heat transfer of porous fin in a local thermal non-equilibrium state

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          Abstract

          This research employs a local thermal non-equilibrium (LTNE) model to analyze the heat transfer phenomenon through a porous fin, considering natural convection and radiation effects. The infiltration velocity within the porous medium is evaluated using the Darcy model, and buoyancy effects are accounted for using the Boussinesq approximation. The Akbari-Ganji method (AGM) is applied to address the governing energy equations. The accuracy of the proposed solution is verified by comparing it with numerical results obtained from the finite difference method (FDM), the finite element method (FEM), and earlier investigations. The results are presented regarding the total average Nusselt number and temperature profiles. These results shed light on the influence of several important parameters, such as the thermal conductivity ratio, dimensionless thickness, convectional heat transfer, and external and internal radiation. The analysis reveals that decreasing Rayleigh and Biot numbers reduces the temperature profiles of the solid phase. Additionally, when the Rayleigh number is low but the assigned Biot number is high, the temperature difference between the solid and fluid phases diminishes. Furthermore, increased thermal conductivity ratio and dimensionless thickness for assigned Biot and Rayleigh numbers lead to higher solid phase temperatures. The Nusselt number exhibits a decreasing trend with a decreasing thermal conductivity ratio but increases with higher Rayleigh and Biot numbers and increased external radiation.

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          Using Porous Fins for Heat Transfer Enhancement

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            Thermal analysis of natural convection and radiation in porous fins

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              Heat transfer study through porous fins (Si3N4 and AL) with temperature-dependent heat generation

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                Author and article information

                Contributors
                Journal
                Heliyon
                Heliyon
                Heliyon
                Elsevier
                2405-8440
                19 February 2024
                29 February 2024
                19 February 2024
                : 10
                : 4
                : e26424
                Affiliations
                [a ]Department of Mechanical Engineering, Faculty of Engineering, North Tehran Branch, Islamic Azad University, Tehran, Iran
                [b ]Department of Mechanical Engineering, Babol Noshirvani University of Technology, P.O. Box 484, Babol, Iran
                Author notes
                []Corresponding author. b.jalili@ 123456iau-tnb.ac.ir
                Article
                S2405-8440(24)02455-1 e26424
                10.1016/j.heliyon.2024.e26424
                10901006
                38420422
                a4e97199-0972-4929-8587-fa1b57f539a9
                © 2024 The Authors

                This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).

                History
                : 27 March 2023
                : 13 February 2024
                : 13 February 2024
                Categories
                Research Article

                heat transfer,porous fin,non-equilibrium,akbari-ganji method,finite element method

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