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Investigation of the effect of geometric and operating parameters on thermal behavior of vertical shell-and-tube latent heat energy storage systems

机译:几何和运行参数对垂直管壳式潜热储能系统热性能影响的研究

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In this study, the effect of the geometrical and operational parameters on vertical cylindrical shell-and-tube LHTES systems is investigated. Four different ratios of the shell-to-tube radius are considered with the phase change material (PCM) on the shell side and the heat transfer fluid (HTF) flowing through the tube. The PCM temperature distributions are measured and compared experimentally among the studied storage units. A weighting method is utilized to calculate the average PCM temperature, liquid fraction, and stored energy fraction to evaluate the performance of the storage units. The results show that a shell to tube radius ratio of 5.4 offers better system performance in terms of the charging time and stored energy in the studied LHTES systems. Furthermore, the effects of HTF flow rate and temperature on the storage performance are studied. The HTF flow rate does not show a significant effect on the storage performance; however, the HTF temperature shows large impacts on the charging time. As the HTF temperature increases from 70 to 80 degrees C, the charging time reduces by up to 68% depending on the radius ratio. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了几何和运行参数对垂直圆柱壳管式LHTES系统的影响。考虑到壳与管半径的四个不同比率,其中壳侧的相变材料(PCM)和流经管的传热流体(HTF)。测量PCM温度分布并在所研究的存储单元之间进行实验比较。利用加权方法来计算平均PCM温度,液体分数和存储的能量分数,以评估存储单元的性能。结果表明,在所研究的LHTES系统中,壳与管半径之比为5.4可提供更好的系统性能,包括充电时间和存储的能量。此外,研究了HTF流量和温度对存储性能的影响。 HTF流量对存储性能没有显着影响。但是,HTF温度对充电时间影响很大。随着HTF温度从70摄氏度增加到80摄氏度,充电时间最多减少68%,具体取决于半径比。 (C)2017 Elsevier Ltd.保留所有权利。

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