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Experimental analysis of the thermal performance of plastering mortars comprising hybrid phase change materials for increased energy efficiency in buildings

机译:包含混合相变材料以提高建筑物能源效率的灰浆热性能的实验分析

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摘要

Several research studies have forwarded the possibility of incorporating microencapsulated phase change materials (PCM) in plastering mortars for building façades, in pursuit of increased energy efficiency associated to theheat storage capacity of PCM. Nonetheless, most of these studies are centred in the use of a single type of PCM, which is bound to be more adequate for a given season of the year (e.g. winter or summer) than for other seasons, particularly in the case of South-European countries. The study proposed in this work regards the evaluation of thepossibility of using more than one kind of PCM (with distinct melting ranges) in plastering mortars, in order to achieve adequately advantageous performance in both heating and cooling seasons. In order to characterize the PCM there are two parameters (enthalpy and phase change temperature) that should be adequately measured. The main purpose of this study was to show feasibility and to evaluate the behaviour of mortars that contain hybrid PCM’s with Differential Scanning Calorimeter testing (DSC). The knowledge obtained from the experimental testing shallestablish bases for a framework of numerical simulation of real scale applications, which can be used to ascertain the feasibility of the hybrid PCM concept for increased energy efficiency in buildings.
机译:一些研究已经提出了在建筑立面抹灰砂浆中掺入微囊化相变材料(PCM)的可能性,以寻求与PCM的储热能力相关的提高的能源效率。尽管如此,这些研究大多集中在使用单一类型的PCM,对于一年中的某个特定季节(例如冬季或夏季),PCM必定比其他季节更合适,尤其是在南部地区。欧洲国家。在这项工作中提出的研究是关于在灰泥中使用一种以上的PCM(具有不同的熔化范围)的可能性的评估,以便在加热和冷却季节都获得足够的有利性能。为了表征PCM,应充分测量两个参数(焓和相变温度)。这项研究的主要目的是通过差示扫描量热仪测试(DSC)来显示可行性,并评估包含混合PCM的砂浆的性能。从实验测试中获得的知识应为实际规模应用的数值模拟框架奠定基础,可用于确定混合PCM概念提高建筑物能源效率的可行性。

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