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Transient thermal response of multi-walled carbon nanotube phase change materials in building walls

机译:建筑墙壁多壁碳纳米管相变材料的瞬态热响应

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The low thermal conductivity of organic phase change materials has hindered their widespread use in building applications. In this study, it is attempted to overcome this limitation by investigating the transient thermal performance of adding multi-walled carbon nanotube (MWCNT) to n-octadecane. As such, this macroencapsulated, nano-enhanced phase change material (NePCM) was located within a multi-layer wall and its heat transfer was simulated through to the roof and wall sides. The panel?s interior wall temperature distribution, the daily/seasonal charging/discharging cycle, and the effect of the MWCNT?s aspect ratio variation on thermal performance were analysed for a range of weather conditions. The acquired results showed that increasing the PCM?s thermal conductivity, by MWCNT addition, yields a preferable outcome regarding thermal comfort in the selected winter and autumn days, but not on the summer days. By adding 3 wt% of MWCNT, the panel?s latent heat activation increased by 50.1%, 18.5%, and 39.7% for summer, autumn, and winter days, respectively. Furthermore, increasing the MWCNT?s aspect ratio showed a noticeable enhancement effect on the thermal conductivity, until a limit for NePCMs, with a higher nanotube concentration. ? 2021 Elsevier Ltd. All rights reserved.
机译:有机相变材料的低导热率阻碍了它们在建筑应用中的广泛使用。在这项研究中,试图通过研究将多壁碳纳米管(MWCNT)加入N-十八烷烷的瞬态热性能来克服这种限制。这样,这种宏观伸展的纳米增强相变材料(Nepcm)位于多层壁内,并且将其热传递模拟到屋顶和壁侧。分析了面板的内壁温度分布,日常/季节充电/放电循环,以及MWCNT的纵横比变化对热性能的效果进行了一系列天气条件。所获得的结果表明,通过MWCNT加入增加PCM的导热率,产生关于选定的冬季和秋季的热舒适性的优选结果,但不是在夏日。通过加入3wt%的MWCNT,面板潜伏的热激活分别增加了50.1%,18.5%和39.7%,分别为夏季,秋季和冬季。此外,增加MWCNT的纵横比对导热率的显着增强效果显示出明显的增强效果,直到纳米管浓度较高的NEPCMS的极限。还是2021 elestvier有限公司保留所有权利。

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