Natural Convection Heat Transfer in an Inclined Open-Ended Square Cavity with Partially Active Side Wall

This paper reports a numerical study of flow behaviors and natural convection heat transfer characteristics in an inclined open-ended square cavity filled with air. The cavity is formed by adiabatic top and bottom walls and partially heated vertical wall facing the opening. Governing equations in vo...

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Main Author: Jasim M. Mahdi
Format: Article
Language:English
Published: Al-Khwarizmi College of Engineering – University of Baghdad 2012-01-01
Series:Al-Khawarizmi Engineering Journal
Subjects:
Online Access:http://www.iasj.net/iasj?func=fulltext&aId=56326
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spelling doaj-9d665331a92649c680e1f23b9aa363892020-11-24T22:05:34Zeng Al-Khwarizmi College of Engineering – University of BaghdadAl-Khawarizmi Engineering Journal1818-11712012-01-01838194Natural Convection Heat Transfer in an Inclined Open-Ended Square Cavity with Partially Active Side Wall Jasim M. MahdiThis paper reports a numerical study of flow behaviors and natural convection heat transfer characteristics in an inclined open-ended square cavity filled with air. The cavity is formed by adiabatic top and bottom walls and partially heated vertical wall facing the opening. Governing equations in vorticity-stream function form are discretized via finite-difference method and are solved numerically by iterative successive under relaxation (SUR) technique. A computer program to solve mathematical model has been developed and written as a code for MATLAB software. Results in the form of streamlines, isotherms, and average Nusselt number, are obtained for a wide range of Rayleigh numbers 103-106 with Prandtl number 0.71 (air) , inclination angles measured from the horizontal direction 0º-60º , dimensionless lengths of the active part 0.4-1 ,and different locations of the thermally active part at the vertical wall. The Results show that heat transfer rate is high when the length of the active part is increased or the active part is located at middle of vertical wall. Further, the heat transfer rate is poor as inclination angle is increased. http://www.iasj.net/iasj?func=fulltext&aId=56326Natural convectionsquare cavitypartially active side wall.
collection DOAJ
language English
format Article
sources DOAJ
author Jasim M. Mahdi
spellingShingle Jasim M. Mahdi
Natural Convection Heat Transfer in an Inclined Open-Ended Square Cavity with Partially Active Side Wall
Al-Khawarizmi Engineering Journal
Natural convection
square cavity
partially active side wall.
author_facet Jasim M. Mahdi
author_sort Jasim M. Mahdi
title Natural Convection Heat Transfer in an Inclined Open-Ended Square Cavity with Partially Active Side Wall
title_short Natural Convection Heat Transfer in an Inclined Open-Ended Square Cavity with Partially Active Side Wall
title_full Natural Convection Heat Transfer in an Inclined Open-Ended Square Cavity with Partially Active Side Wall
title_fullStr Natural Convection Heat Transfer in an Inclined Open-Ended Square Cavity with Partially Active Side Wall
title_full_unstemmed Natural Convection Heat Transfer in an Inclined Open-Ended Square Cavity with Partially Active Side Wall
title_sort natural convection heat transfer in an inclined open-ended square cavity with partially active side wall
publisher Al-Khwarizmi College of Engineering – University of Baghdad
series Al-Khawarizmi Engineering Journal
issn 1818-1171
publishDate 2012-01-01
description This paper reports a numerical study of flow behaviors and natural convection heat transfer characteristics in an inclined open-ended square cavity filled with air. The cavity is formed by adiabatic top and bottom walls and partially heated vertical wall facing the opening. Governing equations in vorticity-stream function form are discretized via finite-difference method and are solved numerically by iterative successive under relaxation (SUR) technique. A computer program to solve mathematical model has been developed and written as a code for MATLAB software. Results in the form of streamlines, isotherms, and average Nusselt number, are obtained for a wide range of Rayleigh numbers 103-106 with Prandtl number 0.71 (air) , inclination angles measured from the horizontal direction 0º-60º , dimensionless lengths of the active part 0.4-1 ,and different locations of the thermally active part at the vertical wall. The Results show that heat transfer rate is high when the length of the active part is increased or the active part is located at middle of vertical wall. Further, the heat transfer rate is poor as inclination angle is increased.
topic Natural convection
square cavity
partially active side wall.
url http://www.iasj.net/iasj?func=fulltext&aId=56326
work_keys_str_mv AT jasimmmahdi naturalconvectionheattransferinaninclinedopenendedsquarecavitywithpartiallyactivesidewall
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