Numerical simulation of heat pipes in different applications

Abstract

Nowadays heat pipes are considered to be popular passive heat transfer technologies due to their high thermal performance. The heat pipe is a superior heat transfer apparatus in which latent heat of vaporization is employed to transfer heat for an extended distance under a limited operating temperature difference. Numerical simulation of heat transfer devices is a principal step before implementing in real-life applications as many parameters can be tested in cost-and time-effective behaviors. The present study provides a review of the numerical simulations of various heat pipes in different applications such as cooling of electronic components, heating, ventilation, and air conditioning (HVAC), nuclear reactors, solar energy systems, electric vehicles, waste heat recovery systems, cryogenic, etc. Firstly, this work introduces a background about the main components of heat pipes such as an evacuated tube, wick, and working fluid. The fluid flow and thermal performance characteristics of heat pips are discussed, considering the optimum parameters. Finally, the critical challenges and recommendations for future work encountering the broad application of heat pipes are thoroughly studied.

Publication DOI: https://doi.org/10.1016/j.ijft.2022.100199
Divisions: College of Engineering & Physical Sciences > School of Engineering and Technology > Mechanical, Biomedical & Design
College of Engineering & Physical Sciences
Additional Information: © 2022 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/)
Uncontrolled Keywords: Applications,Components and geometry,Heat pipe,Numerical simulation,Thermal performance,Types of heat pipe,Condensed Matter Physics,Mechanical Engineering,Fluid Flow and Transfer Processes
Publication ISSN: 2666-2027
Last Modified: 18 Nov 2024 08:31
Date Deposited: 26 Sep 2022 08:46
Full Text Link:
Related URLs: https://www.sci ... 0635?via%3Dihub (Publisher URL)
http://www.scop ... tnerID=8YFLogxK (Scopus URL)
PURE Output Type: Article
Published Date: 2022-11-01
Published Online Date: 2022-08-27
Accepted Date: 2022-08-01
Authors: Maghrabie, Hussein M.
Olabi, A.G.
Alami, Abdul Hai
Radi, Muaz Al
Zwayyed, Firas
salamah, Tareq
Wilberforce, Tabbi (ORCID Profile 0000-0003-1250-1745)
Abdelkareem, Mohammad Ali

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