Applied thermal engineering2022,Vol.20315.DOI:10.1016/j.applthermaleng.2021.117776

Influence of phase change material volume shrinkage on the cyclic process of thermal energy storage: A visualization study

Chen, Li Wang, Liang Wang, Yifei Chen, Haisheng Lin, Xipeng
Applied thermal engineering2022,Vol.20315.DOI:10.1016/j.applthermaleng.2021.117776

Influence of phase change material volume shrinkage on the cyclic process of thermal energy storage: A visualization study

Chen, Li 1Wang, Liang 2Wang, Yifei 2Chen, Haisheng 2Lin, Xipeng3
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作者信息

  • 1. Univ Sci & Technol China
  • 2. Chinese Acad Sci
  • 3. Natl Energy Large Scale Phys Energy Storage Techn
  • 折叠

Abstract

Although latent heat thermal energy storage using PCMs is widely used in the field of energy storage, a few challenges still remain. Among them, the PCM volume shrinkage during solidification has a serious impact on the current discharging process and the subsequent charging process. In this study, detailed analyses of unconstrained melting mode, especially solidification mode were studied, and an acceptable and reliable image processing technique with an uncertainty of about 0.9% was developed. In addition, the effects of cooling times (90-180 min), initial temperatures (42-60 degrees C), and cooling temperatures (12-30 degrees C), as well as the effects of heating times (30, 60 min), initial temperatures (18, 24 degrees C), and heating temperatures (54, 60 degrees C) were investigated. The results show that numerous shrinkage voids and porosity with attached air bubbles are formed inside the solidified PCM, which may reduce its effective thermal conductivity and hinder any heat transfer. The air bubbles attached to the shrinkage voids are released during the next melting process, forming several floating bubbles. The cooling and heating temperatures have a greater influence on the heat transfer rate than the initial temperature. Decrease of cooling temperature (18 degrees C) and increase of heating temperature (6 degrees C) will result in shorter solidification time (up to 46.51%) and melting time (up to 11.46%). The different solidification conditions have little effect on the subsequent melting process due to the same solidification mode.

Key words

Image processing technique/Liquid fraction/Visualization/Volume shrinkage/Unconstrained melting/Solidification/HEAT-TRANSFER CHARACTERISTICS/SOLIDIFICATION/PARAFFIN/PERFORMANCE/CAPSULES

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出版年

2022
Applied thermal engineering

Applied thermal engineering

EISCI
ISSN:1359-4311
被引量4
参考文献量41
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