3-D Numerical Study of Hydromagnetic Double Diffusive Natural Convection and Entropy Generation in Cubic Cavity

In the present work, the effect of magnetic field on double diffusive natural convection in a cubic cavity filled with a binary mixture is numerically studied using the finite volume method. Two vertical walls are maintained at different temperatures and concentrations. The study is focused on the d...

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Main Authors: Chemseddine Maatki, Walid Hassen, L. Kolsi, Naif AlShammari, Mohamed Naceur Borjini, H. Ben Aissia
Format: Article
Language:English
Published: Isfahan University of Technology 2016-01-01
Series:Journal of Applied Fluid Mechanics
Subjects:
Online Access:http://jafmonline.net/JournalArchive/download?file_ID=40277&issue_ID=235
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spelling doaj-6bc24e12612f40399daacab7c27805c32020-11-24T21:37:54ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722016-01-019419151925.3-D Numerical Study of Hydromagnetic Double Diffusive Natural Convection and Entropy Generation in Cubic CavityChemseddine Maatki0Walid Hassen1L. Kolsi2Naif AlShammari3Mohamed Naceur Borjini4H. Ben Aissia5ENIMENIMCollege of Engineering, Mechanical Engineering Department, Haïl University, Saudi ArabiaUOH/MEENIMUnit of Metrology And Energy Systems, National Engineering School of Monastir, University of Monastir, TunisiaIn the present work, the effect of magnetic field on double diffusive natural convection in a cubic cavity filled with a binary mixture is numerically studied using the finite volume method. Two vertical walls are maintained at different temperatures and concentrations. The study is focused on the determination of the entropy generation due to heat and mass transfer, fluid friction and magnetic effect. The influence of the magnetic field on the three-dimensional flow, temperature and concentration fields, entropy generation and heat and mass transfer are revealed. The main important result of this study is that the increase of Hartmann number damped the flow and homogenized the entropy generation distribution in the entire cavity.http://jafmonline.net/JournalArchive/download?file_ID=40277&issue_ID=235Entropy generation; Magneto convection; Heat and mass transfer.
collection DOAJ
language English
format Article
sources DOAJ
author Chemseddine Maatki
Walid Hassen
L. Kolsi
Naif AlShammari
Mohamed Naceur Borjini
H. Ben Aissia
spellingShingle Chemseddine Maatki
Walid Hassen
L. Kolsi
Naif AlShammari
Mohamed Naceur Borjini
H. Ben Aissia
3-D Numerical Study of Hydromagnetic Double Diffusive Natural Convection and Entropy Generation in Cubic Cavity
Journal of Applied Fluid Mechanics
Entropy generation; Magneto convection; Heat and mass transfer.
author_facet Chemseddine Maatki
Walid Hassen
L. Kolsi
Naif AlShammari
Mohamed Naceur Borjini
H. Ben Aissia
author_sort Chemseddine Maatki
title 3-D Numerical Study of Hydromagnetic Double Diffusive Natural Convection and Entropy Generation in Cubic Cavity
title_short 3-D Numerical Study of Hydromagnetic Double Diffusive Natural Convection and Entropy Generation in Cubic Cavity
title_full 3-D Numerical Study of Hydromagnetic Double Diffusive Natural Convection and Entropy Generation in Cubic Cavity
title_fullStr 3-D Numerical Study of Hydromagnetic Double Diffusive Natural Convection and Entropy Generation in Cubic Cavity
title_full_unstemmed 3-D Numerical Study of Hydromagnetic Double Diffusive Natural Convection and Entropy Generation in Cubic Cavity
title_sort 3-d numerical study of hydromagnetic double diffusive natural convection and entropy generation in cubic cavity
publisher Isfahan University of Technology
series Journal of Applied Fluid Mechanics
issn 1735-3572
publishDate 2016-01-01
description In the present work, the effect of magnetic field on double diffusive natural convection in a cubic cavity filled with a binary mixture is numerically studied using the finite volume method. Two vertical walls are maintained at different temperatures and concentrations. The study is focused on the determination of the entropy generation due to heat and mass transfer, fluid friction and magnetic effect. The influence of the magnetic field on the three-dimensional flow, temperature and concentration fields, entropy generation and heat and mass transfer are revealed. The main important result of this study is that the increase of Hartmann number damped the flow and homogenized the entropy generation distribution in the entire cavity.
topic Entropy generation; Magneto convection; Heat and mass transfer.
url http://jafmonline.net/JournalArchive/download?file_ID=40277&issue_ID=235
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