首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat transfer enhancement of nano-encapsulated phase change material (NEPCM) using metal foam for thermal energy storage
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Heat transfer enhancement of nano-encapsulated phase change material (NEPCM) using metal foam for thermal energy storage

机译:使用金属泡沫的纳米封装相变材料(Nepcm)热传递增强用于热能储存

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摘要

This study provides a new shape-stabilized phase change material (PCM) composite for enhanced thermal energy storage with nano-encapsulated phase change material (NEPCM) embedded in copper metal foam since it combines the characteristics of high latent heat of core PCM(octadecane), shape stable from encapsulation (polystyrene) and high thermal conductivity and high area/volume ratio of copper metal foam. We experimentally investigate phase change heat transfer of Foam/NEPCM composite with the consideration of foam porosity effect and foam/NEPCM thermal non-equilibrium heat transfer. Compared with pure NEPCM, foam/NEPCM composite provides maximum wall temperature reduction of 47 °C and more uniform internal temperature due to thermal enhancement of metal foam and latent heat absorption of NEPCM. The molten PCM convection is fully constrained in NEPCM shell, which makes heat conduction the solitary heat transfer mechanism in foam/NEPCM composite during phase change. Attributed to its higher thermal conductivity and area/volume ratio, the lower porosity foam/NEPCM composite obtains lower heated wall temperature and internal temperature near the heated wall than the higher porosity composite does. Moreover, the thermal non-equilibrium is more obvious at the location near the heated wall inside foam/NEPCM composite than that farther away.
机译:本研究提供了一种新的形状稳定的相变材料(PCM)复合材料,用于增强热能储存,以嵌入铜金属泡沫中的纳米封装的相变材料(Nepcm),因为它结合了核心PCM(十八烷)的高潜热的特性从封装(聚苯乙烯)和铜金属泡沫的高导热率和高导热率和高面积/体积比的形状稳定。我们通过考虑泡沫孔隙效应和泡沫/氖气热非平衡热传递来实验研究泡沫/钕CM复合材料的相变传热。与纯Nepcm相比,由于金属泡沫的热增强和尼泊姆的潜热吸收,泡沫/钕铁材复合材料可提供47°C和内部温度更均匀的内部温度。熔融PCM对流完全约束在NEPCM壳中,在相变期间使泡沫/钕复合材料中的孤零性传热机制进行热传导机理。归因于其较高的导热率和面积/体积比,下孔隙率泡沫/ NEPCM复合材料比较高孔隙率复合材料获得较低的加热壁温度和内部温度。此外,热非平衡在泡沫/ Nepcm复合材料中的加热壁附近的位置比较远离更远的地方更明显。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2021年第2期|120737.1-120737.8|共8页
  • 作者单位

    Key Laboratory of Science and Technology on Combustion Internal Flow and Thermo-structure Northwestern Polytechnical University Xi'an China 710072;

    Institute of Engineering Thermophysics School of Mechanical Engineering Shanghai Jiao Tong University Shanghai China 200240;

    Key Laboratory of Science and Technology on Combustion Internal Flow and Thermo-structure Northwestern Polytechnical University Xi'an China 710072;

    Key Laboratory of Science and Technology on Combustion Internal Flow and Thermo-structure Northwestern Polytechnical University Xi'an China 710072;

    Key Laboratory of Science and Technology on Combustion Internal Flow and Thermo-structure Northwestern Polytechnical University Xi'an China 710072;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nano-encapsulated phase change material; Metal foam; Thermal enhancement; Thermal energy storage; Thermal non-equilibrium;

    机译:纳米封装的相变材料;金属泡沫;热增强;热能储存;热非平衡;

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