Title : ( Thermal optimization of flat plate closed-loop oscillating heat pipes using microencapsulated phase change materials suspensions in hollow evaporator sections: an experimental study )
Authors: Mohammad Dolatyari , Mohammad Sardarabadi , Amirreza Okhravi Mohebi , Mohammad Passandideh-Fard ,Access to full-text not allowed by authors
Abstract
Flat plate closed-loop oscillating heat pipes (FP-CLOHPs) are efficient devices that use oscillatory fluid motion for heat transfer between evaporator and condenser sections. This study presents a novel approach to enhance thermal performance by modifying the working fluid’s properties instead of expanding the FP-CLOHP structure. It investigates the effects of microencapsulated phase change materials (ME\\\\\\\\PCMs) combined with water and polyethylene glycol, specifically focusing on 2% and 5% volume suspensions. The study analyzes varying filling ratios (25%, 50%, and 75%) and inclination angles (0◦, 30◦, 60◦, and 90◦) on thermal resistance, temperature differences between the evaporator and condenser, and the time to reach a critical temperature of 80◦C. Results reveal that the 2%vol ME\\\\\\\\PCM suspension outperforms both deionized water and the 5%vol ME\\\\\\\\PCM suspension, showing lower thermal resistance and longer time to reach critical temperature. An optimal filling ratio of 50% is established, providing a 6% and 32% thermal resistance improvement over the 25% and 75% ratios, respectively. The vertical orientation (90◦ inclination) achieves the lowest thermal resistance, aided by gravitydriven fluid circulation. Overall, this innovative design significantly enhances heat transfer efficiency compared to conventional FP-CLOHP configurations.
Keywords
, Flat Plate Closed, Loop Oscillating Heat Pipes (FP, CLOHPs) Microencapsulated Phase Change Materials (ME\\\\\\\\PCMs) Thermal efficiency improvement Working fluid modification@article{paperid:1104982,
author = {Dolatyari, Mohammad and محمد سردارابادی and Okhravi Mohebi, Amirreza and Passandideh-Fard, Mohammad},
title = {Thermal optimization of flat plate closed-loop oscillating heat pipes using microencapsulated phase change materials suspensions in hollow evaporator sections: an experimental study},
journal = {Applied Thermal Engineering},
year = {2025},
volume = {272},
month = {August},
issn = {1359-4311},
pages = {126255--126255-14},
numpages = {0},
keywords = {Flat Plate Closed-Loop Oscillating Heat Pipes
(FP-CLOHPs)
Microencapsulated Phase Change Materials
(ME\\\\\\\\PCMs)
Thermal efficiency improvement
Working fluid modification},
}
%0 Journal Article
%T Thermal optimization of flat plate closed-loop oscillating heat pipes using microencapsulated phase change materials suspensions in hollow evaporator sections: an experimental study
%A Dolatyari, Mohammad
%A محمد سردارابادی
%A Okhravi Mohebi, Amirreza
%A Passandideh-Fard, Mohammad
%J Applied Thermal Engineering
%@ 1359-4311
%D 2025
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