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A numerical model and validation of phase change material integrated thermoelectric radiant cooling panelopen access

Authors
Lim, HansolCho, Hye-JinCheon, Seong-YongLee, Soo-JinJeong, Jae-Weon
Issue Date
Aug-2019
Publisher
EDP Sciences
Citation
E3S Web of Conferences, CLIMA 2019 Conference Proceedings, v.111, pp.1 - 5
Indexed
SCOPUS
Journal Title
E3S Web of Conferences, CLIMA 2019 Conference Proceedings
Volume
111
Start Page
1
End Page
5
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/147323
DOI
10.1051/e3sconf/201911101001
ISSN
2555-0403
Abstract
A phase change material based radiant cooling panel with thermoelectric module (PCM-TERCP) is proposed in this study. It consists of two aluminium panels, and phase change materials (PCMs) sandwiched between the two panels. Thermoelectric modules (TEMs) are attached to one of the aluminium panels, and heat sinks are attached to the top side of TEMs. PCM-TERCP is a thermal energy storage concept equipment, in which TEMs freeze the PCM during the night whose melting temperature is 16°C. Therefore, the radiant cooling panel can maintain a surface temperature of 16°C without the operation of TEM during the day. Furthermore, it is necessary to design the PCM-TERCP in a way that it can maintain the panel surface temperature during the targeted operating time. Therefore, the numerical model was developed using finite difference method to evaluate the thermal behaviour of PCM-TERCP. Experiments were also conducted to validate the performance of the developed model. Using the developed model, the possible operation time was investigated to determine the overall heat transfer coefficient required between radiant cooling panel and TEM. Consequently, the results showed that a overall heat transfer coefficient of 394 W/m2K is required to maintain the surface temperature between 16°C to 18°C for a 3 hours operation.
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