Successive melting of a phase change material bounded in a finned trapezoidal domain

The storage of thermal energy in a trapezoidal aluminum enclosure via melting of PCM phase change material is studied. Experimental observations and numerical simulation are made to examine the process for the phase change of paraffin wax. The development of LHTES: latent heat thermal energy storage...

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Main Authors: Farooq Ahmad, Sajjad Hussain, Israr Ahmad, Taher S. Hassan, A. Othman Almatroud, Waris Ali, Ieemaan E. Farooq
Format: Article
Language:English
Published: Elsevier 2021-12-01
Series:Case Studies in Thermal Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214157X21005827
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spelling doaj-3d6db440987e4c898bae6026102eb8102021-10-03T04:40:47ZengElsevierCase Studies in Thermal Engineering2214-157X2021-12-0128101419Successive melting of a phase change material bounded in a finned trapezoidal domainFarooq Ahmad0Sajjad Hussain1Israr Ahmad2Taher S. Hassan3A. Othman Almatroud4Waris Ali5Ieemaan E. Farooq6Department of Mathematics, College of Sciences, University of Ha'il, Ha'il, Saudi Arabia; School of Mechanical and Aerospace Engineering, NANYANG Technological University, Singapore; Corresponding author. Department of Mathematics, College of Sciences, University of Ha'il, Ha'il, Saudi Arabia.School of Mechanical and Aerospace Engineering, NANYANG Technological University, Singapore; Govt. Postgraduate College Layyah (affiliated with B. Z. University, Multan) Punjab, PakistanUniversity of Technology and Applied Sciences, College of Applied Sciences Nizwa, OmanDepartment of Mathematics, College of Sciences, University of Ha'il, Ha'il, Saudi Arabia; Department of Mathematics, Faculty of Science, Mansoura University, Mansoura, 35516, EgyptDepartment of Mathematics, College of Sciences, University of Ha'il, Ha'il, Saudi ArabiaDepartment of Basic Sciences and Related Studies, Mehran University of Engineering and Technology, Jamshoro, PakistanDepartment of Mathematics, Govt. College University, Kachehry Road, Lahore, PakistanThe storage of thermal energy in a trapezoidal aluminum enclosure via melting of PCM phase change material is studied. Experimental observations and numerical simulation are made to examine the process for the phase change of paraffin wax. The development of LHTES: latent heat thermal energy storage system is a promising alternate option to manage the growing imbalance of energy consumption and supply. Successive melting of paraffin Rubitherm-RT35 is designed when it is heated from one side of the frame and the remaining sides are insulated. Two configurations are examined for the heat storage material: (a) paraffin wax only via experimental set up; (b) PCM melting in a fin extended aluminum structure via simulation. From the lab set up, melt fronts of melting PCM for various time lengths are photographed. In second procedure, improvement in thermal conductivity is desired through fin extension by utilizing software Multi-physics Comsol version 5.4. Transient heat conduction and enthalpy function built in the fluid-solid module are hired. Simulation procedure is carried out with fin augmentation. The melting time is notably reduced with enhancing technique of thermal conductivity via fins.http://www.sciencedirect.com/science/article/pii/S2214157X21005827Primary 80A2235Q79Secondary 81T8049Q10
collection DOAJ
language English
format Article
sources DOAJ
author Farooq Ahmad
Sajjad Hussain
Israr Ahmad
Taher S. Hassan
A. Othman Almatroud
Waris Ali
Ieemaan E. Farooq
spellingShingle Farooq Ahmad
Sajjad Hussain
Israr Ahmad
Taher S. Hassan
A. Othman Almatroud
Waris Ali
Ieemaan E. Farooq
Successive melting of a phase change material bounded in a finned trapezoidal domain
Case Studies in Thermal Engineering
Primary 80A22
35Q79
Secondary 81T80
49Q10
author_facet Farooq Ahmad
Sajjad Hussain
Israr Ahmad
Taher S. Hassan
A. Othman Almatroud
Waris Ali
Ieemaan E. Farooq
author_sort Farooq Ahmad
title Successive melting of a phase change material bounded in a finned trapezoidal domain
title_short Successive melting of a phase change material bounded in a finned trapezoidal domain
title_full Successive melting of a phase change material bounded in a finned trapezoidal domain
title_fullStr Successive melting of a phase change material bounded in a finned trapezoidal domain
title_full_unstemmed Successive melting of a phase change material bounded in a finned trapezoidal domain
title_sort successive melting of a phase change material bounded in a finned trapezoidal domain
publisher Elsevier
series Case Studies in Thermal Engineering
issn 2214-157X
publishDate 2021-12-01
description The storage of thermal energy in a trapezoidal aluminum enclosure via melting of PCM phase change material is studied. Experimental observations and numerical simulation are made to examine the process for the phase change of paraffin wax. The development of LHTES: latent heat thermal energy storage system is a promising alternate option to manage the growing imbalance of energy consumption and supply. Successive melting of paraffin Rubitherm-RT35 is designed when it is heated from one side of the frame and the remaining sides are insulated. Two configurations are examined for the heat storage material: (a) paraffin wax only via experimental set up; (b) PCM melting in a fin extended aluminum structure via simulation. From the lab set up, melt fronts of melting PCM for various time lengths are photographed. In second procedure, improvement in thermal conductivity is desired through fin extension by utilizing software Multi-physics Comsol version 5.4. Transient heat conduction and enthalpy function built in the fluid-solid module are hired. Simulation procedure is carried out with fin augmentation. The melting time is notably reduced with enhancing technique of thermal conductivity via fins.
topic Primary 80A22
35Q79
Secondary 81T80
49Q10
url http://www.sciencedirect.com/science/article/pii/S2214157X21005827
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