储能科学与技术 ›› 2020, Vol. 9 ›› Issue (4): 1105-1112.doi: 10.19799/j.cnki.2095-4239.2020.0044

• 储能材料与器件 • 上一篇    下一篇

纳米增强型复合相变材料的传热特性

刘丽辉(), 莫雅菁, 孙小琴, 李杰(), 李传常, 谢宝姗   

  1. 长沙理工大学能源与动力工程学院,湖南 长沙 410004
  • 收稿日期:2020-01-18 修回日期:2020-02-16 出版日期:2020-07-05 发布日期:2020-06-30
  • 通讯作者: 李杰 E-mail:1491330248@qq.com;lijie@csust.edu.cn
  • 作者简介:刘丽辉(1996—),女,硕士研究生,主要研究方向为相变材料传热性能研究,E-mail:1491330248@qq.com
  • 基金资助:
    国家重点研发计划(2018YFE011200);国家自然科学基金项目(51608051)

Thermal behavior of the nanoenhanced phase change materials

LIU"Lihui(), MO"Yajing, SUN"Xiaoqin, LI"Jie(), LI"Chuanchang, XIE"Baoshan   

  1. School of Energy and Power Engineering, Changsha University of Science & Technology, Changsha 410004, Hunan,China
  • Received:2020-01-18 Revised:2020-02-16 Online:2020-07-05 Published:2020-06-30
  • Contact: Jie LI E-mail:1491330248@qq.com;lijie@csust.edu.cn

摘要:

高导热颗粒常被用来增强相变材料(phase change materials,PCMs)的固有导热性能。为研究纳米颗粒种类、含量和分散剂对纳米增强型复合相变材料(nano-enhanced PCMs, NePCMs)传热过程的影响,本文采用纳米石墨(nano graphite,NG)和纳米椰壳炭(nano coconut shell based-carbon,NC)来提高石蜡的导热性能,使用T型热电偶监测不同边界温度下各复合相变材料熔化过程的温度变化,并用红外热像仪观察整体的温度分布。实验结果表明:纳米颗粒能够增强PCMs的热传递性能,且相同浓度下添加纳米石墨的石蜡传热速率更快,但纳米颗粒在相变过程中易分散不均匀;分散剂能够改善纳米颗粒在PCMs中的分散性能从而增强NePCMs的传热速率,其中用油酸作分散剂时能最大程度促进NePCMs的传热;分散良好的情况下,NePCMs的传热性能随其浓度的增大而增强。

关键词: 复合相变材料, 石蜡, 纳米椰壳炭, 纳米石墨, 传热, 分散剂

Abstract:

Highly conductive particles have been used to improve the thermal conductivity of phase change materials (PCMs). To investigate the influence of the type and concentration of nano-particles and dispersants on the heat transfer process of PCMs, nano graphite (NG) and nano coconut shell based-carbon (NC) were used in the study to improve the thermal conductivity of paraffin. Type T thermocouples were used to monitor the temperature variation during melting under different boundary temperatures in a climate chamber. Thermovision tests were conducted to illustrate the temperature distribution. It was found that nano-particles were able to enhance the heat transfer of PCMs. The heat transfer of the PCMs with NG outperformed the PCMs with NC under same concentration. However, the distribution of nano-particles within the PCMs was not uniform. Dispersant, especially oleic acid, was able to improve the distribution of nano-particles, resulting in the improvement of heat transfer of NePCMs. When the nano-particles distributed evenly in the PCMs, the heat transfer rate of NePCMs increased with increasing concentration.

Key words: nano-enhanced phase change materials (NePCMs), paraffin, nano-coconut shell-based carbon, nano-graphite, heat transfer, dispersant

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