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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Characterization of medium-temperature phase change materials for solar thermal energy storage using temperature history method
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Characterization of medium-temperature phase change materials for solar thermal energy storage using temperature history method

机译:使用温度历史法对中温相变材料进行中温相变材料

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摘要

In this work, thermal properties of five phase change materials (PCMs) with medium phase change temperature including mannitol, sebacic acid (SA), SA/expanded graphite (EG) composite, LiNO3-KCl eutectic salt and LiNO3-KCl/EG composite, were characterized using temperature history (T-history) method with improved accuracy. The studies on mannitol showed that although the T-history method could yield a supercooling degree which was lower than that from differential scanning calorimetry (DSC) determination, the severe supercooling and great latent heat loss during mannitol's solidification were still the problems which hindered the use of this material. As for the rest materials, slight or no supercooling phenomena were observed and the obtained phase change temperatures were well matched to literature data. The latent heat measurements of these four materials proved a proportional relationship between the PCM/EG composite's latent heat and PCM's mass fraction. However, the latent heat values determined by T-history were higher than the DSC results. Therefore, repeated studies were still required to further evaluate the latent heat storage densities of these materials. The results in this work could play key roles in design, simulation and modification of latent thermal energy storage (LTES) systems based on these medium-temperature PCMs for solar heat applications.
机译:在这项工作中,五相改变材料(PCM)的热性能,中相变温,包括甘露醇,Sebacic酸(SA),SA /膨胀石墨(例如)复合材料,LiNO3-KCl共晶盐和LiNO3-Kcl /例如复合材料,使用具有改进的精度的温度历史(T-HARESS)方法来表征。甘露醇的研究表明,虽然T历史方法可以产生低于差分扫描量热法(DSC)测定的过冷度,但甘露醇凝固过程中的严重过冷和潜热损失仍然存在阻碍使用的问题这种材料。对于剩余的材料,观察到轻微或没有过冷现象,并且获得的相变温度与文献数据相匹配。这四种材料的潜热测量结果证明了PCM /例如复合材料潜热和PCM的质量分数之间的比例关系。然而,由T历史确定的潜热值高于DSC结果。因此,仍然需要重复的研究进一步评估这些材料的潜热储存密度。这项工作的结果可以在基于这些中温PCMS的太阳能热应用的基于这些中温PCM的设计,仿真和修改的设计,仿真和修改中的关键作用。

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