首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Thermal property measurement and heat transfer analysis of acetamide and acetamide/expanded graphite composite phase change material for solar heat storage
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Thermal property measurement and heat transfer analysis of acetamide and acetamide/expanded graphite composite phase change material for solar heat storage

机译:太阳能储热用乙酰胺和乙酰胺/膨胀石墨复合相变材料的热性能测量和传热分析

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As a phase change material (PCM), acetamide (AC) can be a potential candidate for energy storage application in the active solar systems. Its utilization is however hampered by poor thermal conductivity. In this work, AC/expanded graphite (EG) composite PCM with 10 wt% (mass fraction) EG as the effective heat transfer promoter was prepared; its thermal properties were studied and compared with those of pure AC. Transient hot-wire tests showed that the addition of 10 wt% EG led to about five-fold increase in thermal conductivity. Investigations using a differential scanning calorimeter revealed that the melting/freezing points shifted from 66.95/42.46 °C for pure AC to 65.91/65.52 °C for AC/EG composite, and the latent heat decreased from 194.92 to 163.71 kJ kg~(-1). In addition, heat storage and retrieval tests in a latent thermal energy storage unit showed that the heat storage and retrieval durations were reduced by 45% and 78%, respectively. Further numerical investigations demonstrated that the less improvement in heat transfer rate during the storage process could be attributed to the weakened natural convection in liquid (melted) AC because of the presence of EG.
机译:作为相变材料(PCM),乙酰胺(AC)可能是有源太阳能系统中储能应用的潜在候选者。然而,由于导热性差,其利用率受到阻碍。在这项工作中,制备了具有10 wt%(质量分数)EG作为有效传热促进剂的AC /膨胀石墨(EG)复合PCM。对它的热性能进行了研究,并与纯AC进行了比较。瞬态热线测试表明,添加10 wt%的EG导致热导率提高大约五倍。使用差示扫描量热仪进行的研究表明,熔点/凝固点从纯AC的66.95 / 42.46°C变为AC / EG复合材料的65.91 / 65.52°C,潜热从194.92降低至163.71 kJ kg〜(-1) )。另外,在潜热能量存储单元中的储热和回收测试表明,储热和回收时间分别减少了45%和78%。进一步的数值研究表明,在存储过程中传热速率的改善较少,这归因于由于存在EG而导致液态(熔融)AC中自然对流减弱。

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