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Experimental Comparison of Radiant Ceiling Panels and Ceiling Panels Containing Phase Change material (PCM)

机译:辐射天花板和包含相变材料(PCM)的天花板的实验比较

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Two commercially available ceiling panels, one metal and one gypsum incorporating microencapsulated PCM were compared experimentally to determine their limitations and ability to provide an adequate indoor thermal environment. The experiments took place from February to May 2018 in a climate chamber at the Technical university of Denmark. In total, seven scenarios were evaluated, five with active cooling, where the flow rate and solar heat gains were varied, and two without. Results showed that according to EN 15251:2007, the RCPs maintained the best indoor thermal environment for 91% of occupancy time in Category III – operative temperature between 22oC and 27oC, and 75% in Category II – operative temperature between 23oC and 26oC, for a 140 kg/h flow rate and the reference solar heat gains. Alternatively, the PCM panels maintained Category III for only 48% of the time, while only 30% in Category II for a 220 kg/h flow rate and the reference solar heat gains. The PCM panel presented the ability to store the heat for a later time. However, the PCM panels’ solution proved inadequate in terms of heat storage capacity, pipe positioning and thermal conductivity while improvements are required in order to employ them in new and renovated buildings.
机译:实验比较了两块市售的天花板,一块金属和一块掺有微囊化PCM的石膏,以确定它们的局限性和提供适当室内热环境的能力。该实验于2018年2月至5月在丹麦技术大学的气候室进行。总共评估了7种方案,其中5种采用主动冷却,流量和太阳热能获得变化,另外2种没有。结果表明,根据EN 15251:2007,RCP保持最佳的室内热环境,在III类(工作温度在22oC至27oC之间)中占91%的占用时间,在II类(工作温度在23oC至26oC之间)中占75%。 140 kg / h的流量和参考太阳热能的获得。另外,PCM面板仅在48%的时间内保持III类,而在II类中仅以30千克的流量和220公斤/小时的流量获得参考热量。 PCM面板具有稍后存储热量的能力。但是,事实证明,PCM面板的解决方案在储热能力,管道定位和导热性方面不足,同时还需要进行改进才能将其应用于新建和翻新的建筑物中。

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