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Thermal performance evaluation of macro-packed phase change materials (PCMs) using heat transfer analysis device

机译:使用传热分析装置评估宏堆积相变材料(PCM)的热性能

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The application of PCMs to various fields is difficult, due to their phase instability in the liquid state. To solve this problem, PCMs need shape stabilization. However, a mock-up experiment in this study showed that thermal performance is less than excellent because of the small amount of applied PCM. Therefore, in this study, we suggest a macro-packed PCM as a method to increase the content of the PCMs. The macro-packed PCM was prepared using n-octadecane, n-eicosane, and n-docosane. The phase transitions of these PCMs occurred at 29.76 degrees C, 35.75 degrees C, and 43.16 degrees C during heating, and their latent heats were 256.5 J/g, 189.0 J/g, and 241.3 J/g. As a result of the TGA, it was confirmed that other mixtures were not mixed. Also, after these PCMs were packed, the thermal conductivity was higher than pure PCMs. Finally, according to the thermal performance evaluation, the thermal performance of the macro-packed PCM containing the n-octadecane is considered to be the best, making it useful in real applications as a finishing material in buildings. (C) 2016 Elsevier B.V. All rights reserved.
机译:由于PCM在液态下的相不稳定,因此很难将其应用于各种领域。为了解决这个问题,PCM需要形状稳定。但是,该研究中的模拟实验表明,由于应用的PCM很少,因此热性能不佳。因此,在这项研究中,我们建议使用宏压缩PCM作为增加PCM内容的方法。使用正十八烷,正二十烷和正二十二烷制备宏堆积的PCM。这些PCM的相变在加热期间分别在29.76℃,35.75℃和43.16℃发生,并且它们的潜热为256.5J / g,189.0J / g和241.3J / g。通过TGA,确认没有混合其他混合物。而且,在这些PCM被包装后,其导热系数高于纯PCM。最后,根据热性能评估,包含正十八烷的宏堆积PCM的热性能被认为是最好的,使其在实际应用中可用作建筑物的饰面材料。 (C)2016 Elsevier B.V.保留所有权利。

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