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Development of a thermally activated ceiling panel with PCM for application in lightweight and retrofitted buildings

机译:开发带有PCM的热激活天花板,用于轻型和翻新建筑

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This paper describes the development of a thermally activated ceiling panel for incorporation in lightweight and retrofitted buildings. The system allows use of renewable energy sources for the heating and cooling of office and industrial buildings. The design for the new ceiling panel exploits the properties of the phase change material (PCM) paraffin. Its high thermal storage capacity during phase change―up to 300 Wh/(m~2 day)―enables the overall panel thickness to be limited to a mere 5 cm. Active control of the thermal storage is achieved by means of an integrated water capillary tube system. The research project also included the development of a numerical model for computation of the thermal behavior of wall and ceiling systems incorporating PCMs. Simulation calculations were performed to determine the necessary thermal properties of the ceiling panels and specify requirements for the materials to be used. Laboratory tests were performed to verify the system's performance and a pilot application is soon to be tried out in practice.
机译:本文介绍了用于轻质和翻新建筑中的热活化天花板的开发。该系统允许将可再生能源用于办公室和工业建筑的加热和冷却。新天花板的设计利用了相变材料(PCM)石蜡的特性。其在相变期间的高蓄热能力(高达300 Wh /(m〜2天))可将整个面板厚度限制为仅5 cm。通过集成的水毛细管系统可以实现对蓄热器的主动控制。该研究项目还包括开发一个数值模型,用于计算结合了PCM的墙和天花板系统的热性能。进行模拟计算以确定天花板的必要热性能,并指定要使用的材料的要求。进行了实验室测试以验证系统的性能,并且很快将在实践中试用该试点应用程序。

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