Numerical Analysis of thermal behavior in agitated vessel with Non-Newtonian fluid

For some ten years, several analytical problems have not been solved by the Navier-Stokes equation; hence numerical methods also known by 'Computational Fluid Dynamic' (CFD) have been developed. In the present paper, we have described in depth numerical study of the basic fluid mechanics p...

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Main Authors: A Benmoussa, L Rahmani
Format: Article
Language:English
Published: MULTIPHYSICS 2018-09-01
Series:International Journal of Multiphysics
Online Access:http://journal.multiphysics.org/index.php/IJM/article/view/395
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author A Benmoussa
L Rahmani
author_facet A Benmoussa
L Rahmani
author_sort A Benmoussa
collection DOAJ
description For some ten years, several analytical problems have not been solved by the Navier-Stokes equation; hence numerical methods also known by 'Computational Fluid Dynamic' (CFD) have been developed. In the present paper, we have described in depth numerical study of the basic fluid mechanics problem and heat transfer of yield stress fluid flow with regularization model of Bercovier and Engelman [1] in a cylindrical vessel not chicaned equipped with an anchor stirrer by using computational fluid dynamics (CFD) based on the finite volumes method discretization of Navier - Stokes equations formulated in variables (U.V.P). We have studied the effect of inertia and the plasticity influence; we have analyzed also the influence of rheological parameters on the hydrodynamic flow behavior, such as the velocity components and the power consumption.
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spelling doaj.art-711bea8981134fc29cef745177a1b3cc2023-09-03T01:38:26ZengMULTIPHYSICSInternational Journal of Multiphysics1750-95482048-39612018-09-0112310.21152/1750-9548.12.3.209363Numerical Analysis of thermal behavior in agitated vessel with Non-Newtonian fluidA Benmoussa0L RahmaniEnergarid Laboratory, Univesity of Tahri Mohamed , Bechar, AlgeriaFor some ten years, several analytical problems have not been solved by the Navier-Stokes equation; hence numerical methods also known by 'Computational Fluid Dynamic' (CFD) have been developed. In the present paper, we have described in depth numerical study of the basic fluid mechanics problem and heat transfer of yield stress fluid flow with regularization model of Bercovier and Engelman [1] in a cylindrical vessel not chicaned equipped with an anchor stirrer by using computational fluid dynamics (CFD) based on the finite volumes method discretization of Navier - Stokes equations formulated in variables (U.V.P). We have studied the effect of inertia and the plasticity influence; we have analyzed also the influence of rheological parameters on the hydrodynamic flow behavior, such as the velocity components and the power consumption.http://journal.multiphysics.org/index.php/IJM/article/view/395
spellingShingle A Benmoussa
L Rahmani
Numerical Analysis of thermal behavior in agitated vessel with Non-Newtonian fluid
International Journal of Multiphysics
title Numerical Analysis of thermal behavior in agitated vessel with Non-Newtonian fluid
title_full Numerical Analysis of thermal behavior in agitated vessel with Non-Newtonian fluid
title_fullStr Numerical Analysis of thermal behavior in agitated vessel with Non-Newtonian fluid
title_full_unstemmed Numerical Analysis of thermal behavior in agitated vessel with Non-Newtonian fluid
title_short Numerical Analysis of thermal behavior in agitated vessel with Non-Newtonian fluid
title_sort numerical analysis of thermal behavior in agitated vessel with non newtonian fluid
url http://journal.multiphysics.org/index.php/IJM/article/view/395
work_keys_str_mv AT abenmoussa numericalanalysisofthermalbehaviorinagitatedvesselwithnonnewtonianfluid
AT lrahmani numericalanalysisofthermalbehaviorinagitatedvesselwithnonnewtonianfluid