LAPSE:2018.0772
Published Article
LAPSE:2018.0772
Phase Change Materials-Assisted Heat Flux Reduction: Experiment and Numerical Analysis
Hussein J. Akeiber, Seyed Ehsan Hosseini, Mazlan A. Wahid, Hasanen M. Hussen, Abdulrahman Th. Mohammad
October 23, 2018
Phase change materials (PCM) in the construction industry became attractive because of several interesting attributes, such as thermo-physical parameters, open air atmospheric condition usage, cost and the duty structure requirement. Thermal performance optimization of PCMs in terms of proficient storage of a large amount of heat or cold in a finite volume remains a challenging task. Implementation of PCMs in buildings to achieve thermal comfort for a specific climatic condition in Iraq is our main focus. From this standpoint, the present paper reports the experimental and numerical results on the lowering of heat flux inside a residential building using PCM, which is composed of oil (40%) and wax (60%). This PCM (paraffin), being plentiful and cost-effective, is extracted locally from waste petroleum products in Iraq. Experiments are performed with two rooms of identical internal dimensions in the presence and absence of PCM. A two-dimensional numerical transient heat transfer model is developed and solved using the finite difference method. A relatively simple geometry is chosen to initially verify the numerical solution procedure by incorporating in the computer program two-dimensional elliptic flows. It is demonstrated that the heat flux inside the room containing PCM is remarkably lower than the one devoid of PCM.
Keywords
heat flux, melting temperature, phase change material (PCM), wax
Suggested Citation
Akeiber HJ, Hosseini SE, Wahid MA, Hussen HM, Mohammad AT. Phase Change Materials-Assisted Heat Flux Reduction: Experiment and Numerical Analysis. (2018). LAPSE:2018.0772
Author Affiliations
Akeiber HJ: High-Speed Reacting Flow Laboratory, Faculty of Mechanical Engineering, Universiti Teknologi Malaysia, 81310 UTM Skudai, Johor 81310, Malaysia
Hosseini SE: High-Speed Reacting Flow Laboratory, Faculty of Mechanical Engineering, Universiti Teknologi Malaysia, 81310 UTM Skudai, Johor 81310, Malaysia
Wahid MA: High-Speed Reacting Flow Laboratory, Faculty of Mechanical Engineering, Universiti Teknologi Malaysia, 81310 UTM Skudai, Johor 81310, Malaysia
Hussen HM: Machine and Mechanical Department, University of Technology, Baghdad 35023, Iraq
Mohammad AT: Baqubah Technical Institute, Middle Technical University, Baghdad 06800, Iraq
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Journal Name
Energies
Volume
9
Issue
1
Article Number
E30
Year
2016
Publication Date
2016-01-07
Published Version
ISSN
1996-1073
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Original Submission
Other Meta
PII: en9010030, Publication Type: Journal Article
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LAPSE:2018.0772
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doi:10.3390/en9010030
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Oct 23, 2018
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CC BY 4.0
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Oct 23, 2018
 
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Original Submitter
Calvin Tsay
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