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Experimental and numerical investigation of PCM capsules as insulation materials inserted into a hollow brick wall

机译:PCM胶囊作为绝缘材料插入空心砖墙的实验和数值研究

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In this study, an experimental and numerical work aims to analyze and investigate PCM capsules' use as an insulation material into the hollow bricks that form a wall. A novel model of plug and play wall system consisting of two identical rooms was designed and fabricated to test two southern walls with and without PCM in the outdoor natural condition. The mathematical model was used to investigate the novel wall's detailed performance, not just verifying the results. Therefore, a three-dimensional mathematical model using the FORTRAN language based on a finite volume scheme with enthalpy method was built and used to analyze the walls and natural convection inside the rooms. The numerical results were matched well with experimental measurement. Compared with the not treated wall, the results show that the encapsulation of PCM in the treated wall will lead to reduce the inner surface wall and room temperature by about 4.7 degrees C, increase the time lag by 2 h, reduce the temperature fluctuation by 23.84% and the decrement factor was 0.7. (C) 2021 Elsevier B.V. All rights reserved.
机译:在这项研究中,实验和数值作品旨在分析和研究PCM胶囊作为绝缘材料进入形成墙壁的空心砖。设计和制造由两个相同的房间组成的插头和游戏墙系统模型,以测试两个南墙,在户外自然条件下有一个,没有PCM。数学模型用于调查新颖的墙的详细性能,而不仅仅是验证结果。因此,建立了一种基于有限卷法的FORTRAN语言的三维数学模型,并用于分析房间内的墙壁和自然对流。使用实验测量匹配数值结果良好。与未处理的墙相比,结果表明,在处理过的壁上的PCM封装将导致内表面壁和室温减少约4.7℃,增加时间滞后2小时,将温度波动降低23.84 %和减量系数为0.7。 (c)2021 elestvier b.v.保留所有权利。

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