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Parametric analysis of applying PCM wallboards for energy saving in high-rise lightweight buildings in Shanghai

机译:上海市轻质高层建筑应用PCM墙板节能的参数分析

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The lightweight building industry develops dramatically in recent years, however it has worse thermal comfort than traditional buildings due to its light thermal mass. A considerable amount of energy is consumed by the building sector in space heating and cooling. In addition, the building envelop can highly influence the energy consumption of buildings. Innovative technologies such as the phase change material (PCM) can be utilized on the wall to save energy and improve thermal comfort. In this paper, the performance of PCM wallboards in air-conditioned lightweight buildings in Shanghai with a hot summer and cold winter climate has been evaluated using an EnergyPlus single-zone model. Different room locations in the middle floor of high-rise buildings were studied in the modelling. The results show that the PCM wallboards improve the indoor comfort in both cooling season (summer) and heating season (winter) by reducing temperature fluctuations. However, the PCM in winter has higher efficiency than in summer due to different solar effects in each season. The optimal melting temperature for different rooms is ranged in 22-26 degrees C, which is the comfort temperature for human beings. The economic results show that the PCM integrated into southern wall has the best economic benefit. (C) 2019 Elsevier Ltd. All rights reserved.
机译:近年来,轻质建筑行业发展迅速,但是由于其轻质的热质量,其热舒适性比传统建筑差。建筑部门在空间供暖和制冷中消耗了大量的能量。此外,建筑物的围护结构会极大地影响建筑物的能耗。可以在墙壁上利用诸如相变材料(PCM)等创新技术来节省能源并提高热舒适性。本文使用EnergyPlus单区域模型评估了PCM墙板在上海夏热冬冷的空调轻型建筑中的性能。在建模中研究了高层建筑中层的不同房间位置。结果表明,PCM墙板可通过减少温度波动来提高室内凉爽季节(夏季)和供暖季节(冬季)的舒适度。但是,由于每个季节的太阳效应不同,冬季的PCM比夏季的效率更高。不同房间的最佳熔化温度范围是22-26摄氏度,这是人类的舒适温度。经济结果表明,集成在南墙的PCM具有最佳的经济效益。 (C)2019 Elsevier Ltd.保留所有权利。

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