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Long-term functionality of a passive phase-change materials building application after more than a decade of operation

机译:经过多十年的操作后,无源相位改变材料建筑应用的长期功能

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For over two decades, latent heat storage (PCM) systems in building applications have been regarded as a promising technology for preventing overheating in the warm season without increasing cooling energy demand. This study aimed to investigate whether PCM can have a noticeable influence on thermal comfort even after up to 14 years of operation, which has not yet been investigated. For this, we collected PCM material samples in some buildings, which we then examined in the DSC laboratory, and analysed a real building application in southern Germany in detail by collecting measurement data and creating building simulations. The DSC measurements revealed a decrease in performance by 12-26%. However, the simulation results did not show a clear decrease in the performance of the PCM. Instead, they indicated that the paraffin-based PCM still had a positive effect on thermal comfort, reducing room temperatures by a maximum of 1.06 K and in average by 0.34 K during working hours. The PCM also reduced cooling degree hours by 15% during the hot months of July and August. An analysis of the user behaviour showed that there might be potential for improving thermal performance, especially through better use of blinds, windows and night ventilation. (c) 2021 Elsevier B.V. All rights reserved.
机译:超过二十多年来,建筑应用中的潜热存储(PCM)系统被认为是防止温暖季节过热的有希望的技术,而不会增加冷却能量需求。本研究旨在调查PCM是否可以在长达14年的操作之后对热舒适有明显的影响,这尚未调查。为此,我们在某些建筑物中收集了PCM材料样本,然后我们在DSC实验室中检查,并通过收集测量数据并创建建筑模拟,详细分析了德国南部的真实建筑应用。 DSC测量显示性能降低12-26%。然而,模拟结果没有显示PCM性能的明显减少。相反,它们表明,基于石蜡基PCM对热舒适度的阳性效果,在工作时间内最大为1.06 k,平均平均为1.06 k,平均为0.34k。在七月和八月的炎热时间内,PCM还减少了15%的冷却度小时。对用户行为的分析表明,可能有可能提高热性能,特别是通过更好地使用百叶窗,窗口和夜间通风。 (c)2021 elestvier b.v.保留所有权利。

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