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Improvement in thermal properties of PCM/Expanded vermiculite/ expanded graphite shape stabilized composite PCM for building energy applications

机译:用于建筑能源应用的PCM /膨胀蛭石/膨胀石墨形状稳定复合PCM的热性能的提高

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This work investigates the combined effect of loading Expanded Graphite (EG) and Expanded Vermiculite (EV) on the thermophysical properties of the low-cost commercially available PCM (OM37) and there capability of regulating the indoor temperature when embedded in the building element. Shape Stabi-lized Composite Phase Change Material (ss-CPCM) was prepared using PCM, EV, and EG through physical blending followed by vacuum impregnation. Latent heat storage capacity, phase change parameters, melting and freezing response, thermal stability, thermal reliability, and leakage proof performance was investigated. Melting enthalpy of 114.23 J/g, 111.56 J/g, 105.08 J/g, and 99.32 J/g at melting temperature of 40.61 degrees C, 39.12 degrees C, 38.83 degrees C, and 37.41 degrees C was obtained for ss-CPCM-1, 3, 5, and 7 respectively. A rise of 114.4% in the thermal conductivity was observed by adding 7 wt% of EG in ss-CPCM. ss-CPCM loaded with 7 wt% of EG heats 25.9% faster and cools 19.2% faster in comparison to pristine PCM. The prepared ss-CPCM preserves its thermal characteristics even after 1000 heating and cooling cycles. Moreover, when embedded in the wallboard, the ss-CPCM-7 has shown the excellent capability of regulating indoor temperature. (C) 2021 Elsevier Ltd. All rights reserved.
机译:该工作研究了加载扩增石墨(例如)和膨胀的蛭石(EV)对低成本市售PCM(OM37)的热性物理性能的综合作用,以及在嵌入建筑元件中时调节室内温度的能力。使用PCM,EV和例如通过物理混合然后真空浸渍制备形状稳定的复合相变材料(SS-CPCM)。研究了潜热储存能力,相变参数,熔化和冷冻响应,热稳定性,热可靠性和泄漏性能。熔融焓为114.23J / g,111.56J / g,105.08J / g和99.32 j / g,39.12℃,38.83℃和37.41℃和37.41℃的熔融温度为SS-CPCM-分别为1,3,5和7。通过在SS-CPCM中加入7wt%,观察到导热率的114.4%的增加。与原始PCM相比,SS-CPCM占25.9%,例如加热25.9%,更快地冷却19.2%。即使在1000加热和冷却循环之后,制备的SS-CPCM也可以保留其热特性。此外,当嵌入墙板时,SS-CPCM-7显示出调节室内温度的优异​​能力。 (c)2021 elestvier有限公司保留所有权利。

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