Analysis of the flow and heat transfer characteristics for MHD free convection in an enclosure with a heated obstacle

Finite element method based on Galerkin weighted Residual approach is used to solve two-dimensional governing mass, momentum and energy equations for steady state, natural convection flow in presence of magnetic field inside a square enclosure. The cavity consists of three adiabatic walls and one c...

Full description

Bibliographic Details
Main Authors: S. Parvin, R. Nasrin
Format: Article
Language:English
Published: Vilnius University Press 2011-01-01
Series:Nonlinear Analysis
Subjects:
MHD
Online Access:http://www.zurnalai.vu.lt/nonlinear-analysis/article/view/14117
id doaj-04770558fc5c4069aa2703357f8eeb1a
record_format Article
spelling doaj-04770558fc5c4069aa2703357f8eeb1a2020-11-24T22:01:02ZengVilnius University PressNonlinear Analysis1392-51132335-89632011-01-01161Analysis of the flow and heat transfer characteristics for MHD free convection in an enclosure with a heated obstacleS. Parvin0R. Nasrin1Bangladesh University of Engineering and TechnologyBangladesh University of Engineering and Technology Finite element method based on Galerkin weighted Residual approach is used to solve two-dimensional governing mass, momentum and energy equations for steady state, natural convection flow in presence of magnetic field inside a square enclosure. The cavity consists of three adiabatic walls and one constantly heated wall. A uniformly heated circular solid body is located at the centre of the enclosure. The aim of this study is to describe the effects of MHD on the flow and thermal fields in presence of such heated obstacle. The investigations are conducted for different values of Rayleigh number (Ra) and Hartmann number (Ha). Various characteristics of streamlines, isotherms and heat transfer rate in terms of the average Nusselt number (Nu) are presented for different parameters. The effect of physical parameter (D) is also shown here. The results indicate that the flow pattern and temperature field are significantly dependent on the above mentioned parameters. http://www.zurnalai.vu.lt/nonlinear-analysis/article/view/14117MHDfree convectionheated obstacleenclosurefinite element method
collection DOAJ
language English
format Article
sources DOAJ
author S. Parvin
R. Nasrin
spellingShingle S. Parvin
R. Nasrin
Analysis of the flow and heat transfer characteristics for MHD free convection in an enclosure with a heated obstacle
Nonlinear Analysis
MHD
free convection
heated obstacle
enclosure
finite element method
author_facet S. Parvin
R. Nasrin
author_sort S. Parvin
title Analysis of the flow and heat transfer characteristics for MHD free convection in an enclosure with a heated obstacle
title_short Analysis of the flow and heat transfer characteristics for MHD free convection in an enclosure with a heated obstacle
title_full Analysis of the flow and heat transfer characteristics for MHD free convection in an enclosure with a heated obstacle
title_fullStr Analysis of the flow and heat transfer characteristics for MHD free convection in an enclosure with a heated obstacle
title_full_unstemmed Analysis of the flow and heat transfer characteristics for MHD free convection in an enclosure with a heated obstacle
title_sort analysis of the flow and heat transfer characteristics for mhd free convection in an enclosure with a heated obstacle
publisher Vilnius University Press
series Nonlinear Analysis
issn 1392-5113
2335-8963
publishDate 2011-01-01
description Finite element method based on Galerkin weighted Residual approach is used to solve two-dimensional governing mass, momentum and energy equations for steady state, natural convection flow in presence of magnetic field inside a square enclosure. The cavity consists of three adiabatic walls and one constantly heated wall. A uniformly heated circular solid body is located at the centre of the enclosure. The aim of this study is to describe the effects of MHD on the flow and thermal fields in presence of such heated obstacle. The investigations are conducted for different values of Rayleigh number (Ra) and Hartmann number (Ha). Various characteristics of streamlines, isotherms and heat transfer rate in terms of the average Nusselt number (Nu) are presented for different parameters. The effect of physical parameter (D) is also shown here. The results indicate that the flow pattern and temperature field are significantly dependent on the above mentioned parameters.
topic MHD
free convection
heated obstacle
enclosure
finite element method
url http://www.zurnalai.vu.lt/nonlinear-analysis/article/view/14117
work_keys_str_mv AT sparvin analysisoftheflowandheattransfercharacteristicsformhdfreeconvectioninanenclosurewithaheatedobstacle
AT rnasrin analysisoftheflowandheattransfercharacteristicsformhdfreeconvectioninanenclosurewithaheatedobstacle
_version_ 1725842095097249792