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A technical, financial and CO_2 emission analysis of the implementation of metal foam in a thermal battery for cold chain transport

机译:冷链输送热电池中金属泡沫的实施技术,财务和CO_2排放分析

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摘要

Latent thermal energy storage (LTES) can be a valuable component in a wide range of energy systems. The low thermal conductivity of most phase change materials (PCMs) has resulted in the development of several PCM enhancement methods. However, most of the comparisons of enhancement techniques implemented in LTES heat exchangers are based on a single operating point which limits the findings to the tested heat transfer fluid inlet temperature and mass flow rate. Furthermore, an analysis of the financial impact of an enhancement method is not available. In this article, the validity of implementing metal foam as a thermal conductivity enhancer is assessed in a cold chain application. A modular LTES design is constructed with and without metal foam. The charging time of both thermal batteries is experimentally correlated as a function of the heat transfer fluid inlet temperature and mass flow rate. The metal foam reduces the charging time of the battery between 24 % and 40 % depending on the heat transfer fluid inlet condition. Discounted savings for the implementation of metal foam of up to 10 times the investment cost are possible but depend on the number of cycles per year and the rate of return.
机译:潜热能存储(LTES)可以是各种能量系统中的有价值的组成部分。大多数相变材料(PCM)的低导热率导致多种PCM增强方法的开发。然而,在LTES热交换器中实现的增强技术的大多数比较基于单个操作点,这将结果限制为测试的传热流体入口温度和质量流量。此外,不可用对增强方法的财务影响的分析。在本文中,在冷链应用中评估了作为导热增强剂实施金属泡沫的有效性。模块化LTES设计构造有和没有金属泡沫。热电池的充电时间是通过传热流体入口温度和质量流量的函数进行实验相关的。根据传热流体入口条件,金属泡沫减少了24%和40%的电池的充电时间。折扣节省金属泡沫的投资成本高达10倍,但取决于每年的周期数和回报率。

著录项

  • 来源
    《Journal of Energy Storage》 |2021年第3期|102324.1-102324.13|共13页
  • 作者单位

    UGent Dept Electromech Syst & Met Engn Ghent Belgium|FlandersMake UGent Core lab EEDT MP Leuven Belgium;

    UGent Dept Electromech Syst & Met Engn Ghent Belgium|FlandersMake UGent Core lab EEDT MP Leuven Belgium|Univ Ghent Res Grp Thermal Energy Ind Kortrijk Belgium;

    UGent Dept Electromech Syst & Met Engn Ghent Belgium|FlandersMake UGent Core lab EEDT MP Leuven Belgium;

    UGent Dept Electromech Syst & Met Engn Ghent Belgium|FlandersMake UGent Core lab EEDT MP Leuven Belgium;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phase Change Material; Latent thermal energy storage; experimental; cost minimization;

    机译:相变材料;潜热能存储;实验;成本最小化;

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