Experimental Study of Mixed Convection in an Enclosure with a Cold Movable Top Wall and Hot Bottom Wall

  Mixed convection heat transfer to air inside an enclosure is investigated experimentally. The bottom wall of the enclosure is maintained at higher temperature than that of the top wall which keeps in oscillation motion, whereas the left and right walls are well insulated. The differential temp...

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Main Authors: Nabil J. Yasin J. Yasin, Dhia Al-Deen H. Alwan, Ayad S. Abdulla
Format: Article
Language:English
Published: Al-Khwarizmi College of Engineering – University of Baghdad 2017-12-01
Series:Al-Khawarizmi Engineering Journal
Subjects:
Online Access:http://alkej.uobaghdad.edu.iq/index.php/alkej/article/view/189
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spelling doaj-c665e4ae3e384e57937bfeb076f4ff342020-11-25T01:05:10Zeng Al-Khwarizmi College of Engineering – University of BaghdadAl-Khawarizmi Engineering Journal1818-11712312-07892017-12-01101Experimental Study of Mixed Convection in an Enclosure with a Cold Movable Top Wall and Hot Bottom WallNabil J. Yasin J. Yasin0Dhia Al-Deen H. Alwan1Ayad S. Abdulla2Department of Airconditioning and Referigeration Engineering / Engineering Technical College of BaghdadDepartment of Airconditioning and Referigeration Engineering / Engineering Technical College of BaghdadDepartment of Airconditioning and Referigeration Engineering / Engineering Technical College of Mosul   Mixed convection heat transfer to air inside an enclosure is investigated experimentally. The bottom wall of the enclosure is maintained at higher temperature than that of the top wall which keeps in oscillation motion, whereas the left and right walls are well insulated. The differential temperature of the bottom and top walls changed several times in order to accurately characterize the temperature distribution over a considerable range of Richardson number. Adjustable aspect ratio box was built as a test rig to determine the effects of Richardson number and aspect ratio on the flow behavior of the air inside the enclosure. The flow fields and the average Nusselt number profiles were presented in this work. The results show that, at a constant value of the Richardson number, average Nusselt number (Nuav.) increases with aspect ratio. Furthermore, as Richardson number decreases, the time period decreases with constant values of aspect ratio. http://alkej.uobaghdad.edu.iq/index.php/alkej/article/view/189Mixed convectionExperimentalAspect ratioEnclosureOscillating motion
collection DOAJ
language English
format Article
sources DOAJ
author Nabil J. Yasin J. Yasin
Dhia Al-Deen H. Alwan
Ayad S. Abdulla
spellingShingle Nabil J. Yasin J. Yasin
Dhia Al-Deen H. Alwan
Ayad S. Abdulla
Experimental Study of Mixed Convection in an Enclosure with a Cold Movable Top Wall and Hot Bottom Wall
Al-Khawarizmi Engineering Journal
Mixed convection
Experimental
Aspect ratio
Enclosure
Oscillating motion
author_facet Nabil J. Yasin J. Yasin
Dhia Al-Deen H. Alwan
Ayad S. Abdulla
author_sort Nabil J. Yasin J. Yasin
title Experimental Study of Mixed Convection in an Enclosure with a Cold Movable Top Wall and Hot Bottom Wall
title_short Experimental Study of Mixed Convection in an Enclosure with a Cold Movable Top Wall and Hot Bottom Wall
title_full Experimental Study of Mixed Convection in an Enclosure with a Cold Movable Top Wall and Hot Bottom Wall
title_fullStr Experimental Study of Mixed Convection in an Enclosure with a Cold Movable Top Wall and Hot Bottom Wall
title_full_unstemmed Experimental Study of Mixed Convection in an Enclosure with a Cold Movable Top Wall and Hot Bottom Wall
title_sort experimental study of mixed convection in an enclosure with a cold movable top wall and hot bottom wall
publisher Al-Khwarizmi College of Engineering – University of Baghdad
series Al-Khawarizmi Engineering Journal
issn 1818-1171
2312-0789
publishDate 2017-12-01
description   Mixed convection heat transfer to air inside an enclosure is investigated experimentally. The bottom wall of the enclosure is maintained at higher temperature than that of the top wall which keeps in oscillation motion, whereas the left and right walls are well insulated. The differential temperature of the bottom and top walls changed several times in order to accurately characterize the temperature distribution over a considerable range of Richardson number. Adjustable aspect ratio box was built as a test rig to determine the effects of Richardson number and aspect ratio on the flow behavior of the air inside the enclosure. The flow fields and the average Nusselt number profiles were presented in this work. The results show that, at a constant value of the Richardson number, average Nusselt number (Nuav.) increases with aspect ratio. Furthermore, as Richardson number decreases, the time period decreases with constant values of aspect ratio.
topic Mixed convection
Experimental
Aspect ratio
Enclosure
Oscillating motion
url http://alkej.uobaghdad.edu.iq/index.php/alkej/article/view/189
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