微封装PCM低温储热应用的热动力学评价

IF 2.2 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Materials Letters: X Pub Date : 2022-06-01 DOI:10.1016/j.mlblux.2022.100143
Atif Amim, Gaurav Priyadarshi, Tirtharaj Purushottam Babre, B. Kiran Naik
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引用次数: 1

摘要

在本研究中,分析了微封装相变材料(PCM)在低温(32°C - 53°C)储能应用中的热动力学。选择的微胶囊PCMs分别为CaCl2·6H2O、正十六烷、正十八烷、正二十烷、癸酸/月桂酸、石蜡(C30H62)和棕榈酸(C16H32O2)。选择环境空气作为与PCM材料相互作用的外部/传热流体。采用固液界面位置、熔融时间和熔液分数作为性能评价参数,对微胶囊化PCMs的热动力学进行了评价。在所有相变材料中,最佳相变材料为CaCl2·6H2O,相变直径为4 cm,外液温度为53℃,熔化时间为106 min。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Evaluation of thermal kinetics of microencapsulated PCM for low-temperature thermal energy storage application

In the present investigation, the microencapsulated phase change material (PCM) thermal kinetics for low-temperature thermal energy storage applications (32 °C–53 °C) is analysed. Microencapsulated PCMs selected are CaCl2·6H2O, n-Hexadecane, n-Octadecane, n-Eicosane, Capric/Lauric acid, Paraffin wax (C30H62), and Palmitic acid (C16H32O2), respectively. Ambient air is selected as the external/heat transfer fluid which interacts with PCM materials. The thermal kinetics of microencapsulated PCMs is evaluated by selecting the solid-liquid interface position with melting time and molten fraction as the performance evaluation parameters. Among all the phase change materials, the best PCM is found to be CaCl2·6H2O with 4 cm of PCM diameter, 53 °C of external fluid temperature, and 106 min of melting time.

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来源期刊
CiteScore
3.10
自引率
0.00%
发文量
50
审稿时长
114 days
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