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首页> 外文期刊>International Communications in Heat and Mass Transfer >A combined experimental and computational study on the melting behavior of a medium temperature phase change storage material inside shell and tube heat exchanger
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A combined experimental and computational study on the melting behavior of a medium temperature phase change storage material inside shell and tube heat exchanger

机译:管壳式换热器内部中温相变储热材料熔融行为的实验与计算研究

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摘要

A combined experimental and numerical study is performed aiming to understand the role of buoyancy-driven convection during constrained melting of phase change materials (PCMs) inside a shell and tube heat exchanger. A series of experiments is conducted to investigate the effect of increasing the inlet temperature of the heat transfer fluid (HTF) on the charging process (melting) of the PCM. The computations are based on an iterative, finite-volume numerical procedure that incorporates a single-domain enthalpy formulation for simulation of the phase change phenomenon. It was observed from experimental results that the melting front appeared at different times at positions close to the HTF tube and progressing at different rates outwards towards the shell. The computational results show that by increasing the inlet water temperature to 80 ℃, the total melting time is decreased to 37%.
机译:进行了一项组合的实验和数值研究,旨在了解浮力驱动对流在管壳式换热器内部相变材料(PCM)受约束熔化期间的作用。进行了一系列实验,以研究提高传热流体(HTF)的入口温度对PCM的装料过程(熔化)的影响。这些计算基于迭代的有限体积数值过程,该过程结合了用于模拟相变现象的单域焓公式。从实验结果观察到,熔化前沿在靠近HTF管的位置出现在不同的时间,并以不同的速率朝着外壳向外发展。计算结果表明,将进水温度提高到80℃,总融化时间减少到37%。

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