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Performance evaluation of controllable separate heat pipes

Cao, Jingyu; Li, Jing; Zhao, Pinghui; Jiao, Dongsheng; Li, Pengcheng; Hu, Mingke; Pei, Gang

Authors

Jingyu Cao

Pinghui Zhao

Dongsheng Jiao

Pengcheng Li

Mingke Hu

Gang Pei



Abstract

© 2016 Elsevier Ltd. All rights reserved. A controllable separate heat pipe (CSHP) combined with cool storage can be an efficient and low-cost solution to release the necessary cool power and to improve the precision in the temperature control of cool-storage refrigerators powered by solar energy or electricity with time-of-use price policy. However, the precise temperature control performance of separate heat pipes under active control depends on system design and thus should be confirmed. In this study, a CSHP was developed and an active control method was achieved by interrupting its two-phase natural circulation flow. A one-dimensional steady-state model was used to calculate the critical fill ratio, heat transfer rate, and average working temperature of CSHP. A series of experiments was conducted to analyze the start-stop and heat transfer performances of CSHP at various R134a fill ratios and heat sink temperatures. Under different test conditions, the optimum working points were obtained through fitting. The most suitable control mode was determined and the start-stop performance of CSHP was examined in detail. CSHP starts up quickly in approximately 15 seconds and the quickest stopping time of CSHP approximates to 80 seconds. Therefore, the performance of CSHP under active control can be applied to cool-storage refrigerators.

Citation

Cao, J., Li, J., Zhao, P., Jiao, D., Li, P., Hu, M., & Pei, G. (2016). Performance evaluation of controllable separate heat pipes. Applied thermal engineering, 100, 518-527. https://doi.org/10.1016/j.applthermaleng.2016.02.044

Journal Article Type Article
Acceptance Date Feb 15, 2016
Online Publication Date Feb 23, 2016
Publication Date May 5, 2016
Deposit Date Mar 24, 2022
Publicly Available Date May 26, 2022
Journal Applied Thermal Engineering
Print ISSN 1359-4311
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 100
Pages 518-527
DOI https://doi.org/10.1016/j.applthermaleng.2016.02.044
Keywords Heat pipe; Thermosyphon loop; Start–stop; Refrigerator; Cool storage
Public URL https://hull-repository.worktribe.com/output/3602686

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