Skip to main content

Lund University Publications

LUND UNIVERSITY LIBRARIES

Application and analysis of flip mechanism in the melting process of a triplex-tube latent heat energy storage unit

Li, Fangfei ; Huang, Xinyu ; Li, Yuanji ; Lu, Liu ; Meng, Xiangzhao ; Yang, Xiaohu and Sundén, Bengt LU (2023) In Energy Reports 9. p.3989-4004
Abstract

In order to improve the characteristics of uneven melting in the melting process of the horizontal latent heat energy storage system, the triplex-tube latent heat energy storage unit is taken as the research object, and the flip mechanism is applied to its melting process. Numerical simulation is used for the research, and the numerical model is verified by experimental data. The results show that under different dimensionless times, the melting performance of the unit can be significantly improved by a single flip. When the dimensionless time is 0.4576, it is found that the total melting time of the unit is reduced by 16.17 %, the average heat absorption rate is increased by 14.7 %, but the total heat energy absorption is reduced by... (More)

In order to improve the characteristics of uneven melting in the melting process of the horizontal latent heat energy storage system, the triplex-tube latent heat energy storage unit is taken as the research object, and the flip mechanism is applied to its melting process. Numerical simulation is used for the research, and the numerical model is verified by experimental data. The results show that under different dimensionless times, the melting performance of the unit can be significantly improved by a single flip. When the dimensionless time is 0.4576, it is found that the total melting time of the unit is reduced by 16.17 %, the average heat absorption rate is increased by 14.7 %, but the total heat energy absorption is reduced by 3.85 %. The results show that the addition of a flip can effectively shorten the melting time and increase the heat absorption rate, but it has a negative effect on the total heat absorption in one melting cycle. Moreover, through the comparison of dynamic flow rate, dynamic temperature response, and temperature interval, it is shown that the addition of flip effectively reduces the negative influence of the hard-to-melt zone on the melting performance of the unit during the melting process. The flip mechanism reduces the proportion of high-temperature phase change material in the melting process and makes the melting process more uniform.

(Less)
Please use this url to cite or link to this publication:
author
; ; ; ; ; and
organization
publishing date
type
Contribution to journal
publication status
published
subject
keywords
Flip mechanism, Heat storage rate, Latent heat energy storage, Melting properties
in
Energy Reports
volume
9
pages
16 pages
publisher
Elsevier
external identifiers
  • scopus:85149885307
ISSN
2352-4847
DOI
10.1016/j.egyr.2023.03.037
language
English
LU publication?
yes
id
e9137ab4-a8f5-4779-b663-5c745ecd3058
date added to LUP
2023-04-21 10:48:28
date last changed
2023-11-08 04:59:47
@article{e9137ab4-a8f5-4779-b663-5c745ecd3058,
  abstract     = {{<p>In order to improve the characteristics of uneven melting in the melting process of the horizontal latent heat energy storage system, the triplex-tube latent heat energy storage unit is taken as the research object, and the flip mechanism is applied to its melting process. Numerical simulation is used for the research, and the numerical model is verified by experimental data. The results show that under different dimensionless times, the melting performance of the unit can be significantly improved by a single flip. When the dimensionless time is 0.4576, it is found that the total melting time of the unit is reduced by 16.17 %, the average heat absorption rate is increased by 14.7 %, but the total heat energy absorption is reduced by 3.85 %. The results show that the addition of a flip can effectively shorten the melting time and increase the heat absorption rate, but it has a negative effect on the total heat absorption in one melting cycle. Moreover, through the comparison of dynamic flow rate, dynamic temperature response, and temperature interval, it is shown that the addition of flip effectively reduces the negative influence of the hard-to-melt zone on the melting performance of the unit during the melting process. The flip mechanism reduces the proportion of high-temperature phase change material in the melting process and makes the melting process more uniform.</p>}},
  author       = {{Li, Fangfei and Huang, Xinyu and Li, Yuanji and Lu, Liu and Meng, Xiangzhao and Yang, Xiaohu and Sundén, Bengt}},
  issn         = {{2352-4847}},
  keywords     = {{Flip mechanism; Heat storage rate; Latent heat energy storage; Melting properties}},
  language     = {{eng}},
  pages        = {{3989--4004}},
  publisher    = {{Elsevier}},
  series       = {{Energy Reports}},
  title        = {{Application and analysis of flip mechanism in the melting process of a triplex-tube latent heat energy storage unit}},
  url          = {{http://dx.doi.org/10.1016/j.egyr.2023.03.037}},
  doi          = {{10.1016/j.egyr.2023.03.037}},
  volume       = {{9}},
  year         = {{2023}},
}