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PMID: 40854953 Published · epublish English Journal Article

CFD simulation of air layer effects on RT42 PCM melting in a square cell.

Scientific reports ·Vol. 15 ·No. 1 ·2025-08-25 ·页码 31308

Hammoodi KA, Abbas WN, Askar AH, Alomari MA, Hassan AM, Hussein HQ, Khalaf AF, Flayyih MA, Kadhim SA

Abstract

Latent heat storage technology has been receiving significant attention from scientists, researchers, and engineers working in solar heating and cooling, waste heat recovery, as well as building energy management. Phase change materials (PCMs) have been extensively utilized for this purpose due to their high energy storage capacity and cost-effectiveness. In this study, a numerical investigation was conducted to evaluate heat transfer in paraffin wax RT42 during its complete phase transition from solid to liquid within a square cell, both with and without an air layer on the left hot wall, with the rest of the walls thermally insulated. The enthalpy-porosity approach was quantitatively analysed using the ANSYS/FLUENT 16 program. The results indicate that the presence of a 1 mm thick air layer doubled the complete melting time, and a 2 mm thick air layer tripled the melting time compared to scenarios without an air layer. Additionally, it was shown that thermal conduction drives early melting, while density differences influence free convection in later stages. This study underscores the significant impact of air layers in delaying the melting process of PCMs paraffin wax in square latent heat storage units. Furthermore, guidelines for future investigation were provided, including examining the effects of adding air layers and providing a heat flow from the top or bottom of the square cell. This further research might assist in revealing more specifics of the interactions among the environment, phase change mechanisms, and heat transport in thermal energy storage systems.

Keywords
ANSYS/FLUENT Air layer CFD Melting process PCMs Square cell
作者与单位
共 9 位作者,点击展开单位 / ORCID
Hammoodi Karrar A
College of Engineering, University of Al Maarif, Al Anbar, 31001, Iraq.
Abbas Walaa Nasser
Petroleum Engineering Department, College of Engineering, University of Kerbala, Karbala, 56001, Iraq. | Air Conditioning Engineering Department, Faculty of Engineering, Warith Al- Anbiyaa University, Karbala, 56001, Iraq.
Askar Ali Habeeb
Department of Fluid and Heat Engineering, University of Miskolc, Miskolc, Hungary. [email protected]. | Institute of Physics and Electrical Engineering, University of Miskolc, Miskolc, Hungary. [email protected]. | College of Mechanical Engineering, University of Technology- Iraq, Baghdad, Iraq. [email protected].
Alomari Mohammed Azeez
Department of Mechanical Engineering, University of Al-Qadisiyah, Al-Diwaniyah, 58001, Iraq.
Hassan Ahmed M
Department of Mechanical Engineering, University of Al-Qadisiyah, Al-Diwaniyah, 58001, Iraq.
Hussein Hasan Qahtan
Faculty of Engineering, Kerbala University, Karbala, 56001, Iraq.
Khalaf Abbas Fadhil
Faculty of Engineering, Kerbala University, Karbala, 56001, Iraq.
Flayyih Mujtaba A
Prosthetics and Orthotics Engineering Department, College of Engineering and Technologies, Al-Mustaqbal University, Hillah, 51001, Iraq.
Kadhim Saif Ali
College of Mechanical Engineering, University of Technology- Iraq, Baghdad, Iraq.
Article Info
Journal
Scientific reports
Abbr.
Sci Rep
ISSN
2045-2322
Corresponding email
Published
2025-08-25
电子出版
2025-00-25
页码
31308
Language
English
Country/Region
England
NLM ID
101563288
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