Numerical investigation of hydrodynamic nanofluid convective flow in a porous enclosure

In this study, the steady state behavior of natural convection transport on a nanofluid in square enclosure was studied. The model equations were solved using Comsol Multiphysics; a solver for partial differential Navier–Stokes equations based on a two-dimensional Finite Element Method (FEM) over a...

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Váldodahkkit: Redouane FARES, Abderrahmane AISSA, Mohamed Amine MEDDEBER, Abdekrim AID
Materiálatiipa: Artihkal
Giella:English
Almmustuhtton: University "Hassiba Benbouali" de Chlef 2023-01-01
Ráidu:Revue Nature et Technologie
Fáttát:
Liŋkkat:https://journals.univ-chlef.dz/index.php/natec/article/view/126
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author Redouane FARES
Abderrahmane AISSA
Mohamed Amine MEDDEBER
Abdekrim AID
author_facet Redouane FARES
Abderrahmane AISSA
Mohamed Amine MEDDEBER
Abdekrim AID
author_sort Redouane FARES
collection DOAJ
description In this study, the steady state behavior of natural convection transport on a nanofluid in square enclosure was studied. The model equations were solved using Comsol Multiphysics; a solver for partial differential Navier–Stokes equations based on a two-dimensional Finite Element Method (FEM) over a range of Rayleigh numbers (103-106). Impact of the Rayleigh Number, the Darcy Number, the porosity, the solid fraction volume of porous medium and the nanoparticle concentration on natural convection are depicted. Obtained Results reveal that convection mode increases with rise of Rayleigh number. The simulated results were compared with other numerical data from the literature, which indicate that good agreement is founded.
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spelling doaj.art-6bffdb386c954e238dacad2b1958690e2023-12-16T17:26:59ZengUniversity "Hassiba Benbouali" de ChlefRevue Nature et Technologie1112-97782437-03122023-01-011001Numerical investigation of hydrodynamic nanofluid convective flow in a porous enclosureRedouane FARES0Abderrahmane AISSA1Mohamed Amine MEDDEBER2Abdekrim AID3University of sciences & Technologies Mohamed BOUDIAF of Oran, Algeria (LPQ3M), Mustapha STAMBOULI University of Mascara, Algeria (LPQ3M), Mustapha STAMBOULI University of Mascara, Algeria(LPQ3M), Mustapha STAMBOULI University of Mascara, Algeria In this study, the steady state behavior of natural convection transport on a nanofluid in square enclosure was studied. The model equations were solved using Comsol Multiphysics; a solver for partial differential Navier–Stokes equations based on a two-dimensional Finite Element Method (FEM) over a range of Rayleigh numbers (103-106). Impact of the Rayleigh Number, the Darcy Number, the porosity, the solid fraction volume of porous medium and the nanoparticle concentration on natural convection are depicted. Obtained Results reveal that convection mode increases with rise of Rayleigh number. The simulated results were compared with other numerical data from the literature, which indicate that good agreement is founded. https://journals.univ-chlef.dz/index.php/natec/article/view/126Free convectionHartmann numberVolume fractionNusselt number
spellingShingle Redouane FARES
Abderrahmane AISSA
Mohamed Amine MEDDEBER
Abdekrim AID
Numerical investigation of hydrodynamic nanofluid convective flow in a porous enclosure
Revue Nature et Technologie
Free convection
Hartmann number
Volume fraction
Nusselt number
title Numerical investigation of hydrodynamic nanofluid convective flow in a porous enclosure
title_full Numerical investigation of hydrodynamic nanofluid convective flow in a porous enclosure
title_fullStr Numerical investigation of hydrodynamic nanofluid convective flow in a porous enclosure
title_full_unstemmed Numerical investigation of hydrodynamic nanofluid convective flow in a porous enclosure
title_short Numerical investigation of hydrodynamic nanofluid convective flow in a porous enclosure
title_sort numerical investigation of hydrodynamic nanofluid convective flow in a porous enclosure
topic Free convection
Hartmann number
Volume fraction
Nusselt number
url https://journals.univ-chlef.dz/index.php/natec/article/view/126
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