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Numerical investigation of phase change materials (PCM) optimal melting properties and position in building elements under diverse conditions

机译:不同条件下相变材料(PCM)最佳熔化特性和在建筑构件中位置的数值研究

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摘要

The increasing popularity of phase change materials (PCM)-enhanced building products has initiated a scientific discussion concerning specific aspects of their applicability. This study aspires to provide justified answers to the research question of the optimal position of PCM into the building envelope, with emphasis on vernacular buildings, as well as to enlighten aspects of the appropriate melting behaviour of PCM materials. Parameters directly affecting the operation of the PCMs, namely their position within the building envelope, the external environmental conditions and the prevailing interior environmental conditions, have been investigated under diverse climatic conditions with the use of finite element method (FEM). The probability density function (PDF) of the temperature distribution at specific locations within the building envelope, at which realistically PCM layers can exist were derived, revealing the fact that in the case of non-conditioned indoor spaces, the PCM layer should actually be incorporated into the inner surface of the wall. The analysis was also conducted for different orientations and locations of the European continent, providing sufficient answers concerning the appropriate melting temperature of PCMs in the case of non-conditioned buildings. The environmental assessment of building envelopes incorporating PCM building products has also been examined, delivering the energy pay-back time of the PCM-enhanced building products. (C) 2019 Elsevier Ltd. All rights reserved.
机译:相变材料(PCM)增强的建筑产品的日益普及,引发了有关其适用性的具体方面的科学讨论。这项研究旨在为PCM进入建筑物围护结构的最佳位置的研究问题提供合理的答案,重点放在乡土建筑上,并启发PCM材料适当熔化行为的各个方面。已经使用有限元方法(FEM)在各种气候条件下研究了直接影响PCM操作的参数,即它们在建筑物围护结构内的位置,外部环境条件和主要的内部环境条件。推导了建筑物围护结构内特定位置的温度分布的概率密度函数(PDF),在该位置上可以实际存在PCM层,这揭示了以下事实:在无条件室内空间的情况下,实际上应包含PCM层进入墙壁的内表面。还针对欧洲大陆的不同方位和位置进行了分析,从而为无条件建筑情况下的PCM合适的熔化温度提供了充分的答案。还检查了包含PCM建筑产品的建筑围护结构的环境评估,从而提供了PCM增强建筑产品的能源回收时间。 (C)2019 Elsevier Ltd.保留所有权利。

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