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Adaptive building roof by coupling thermochromic material and phase change material: Energy performance under different climate conditions

机译:通过耦合热致变色材料和相变材料的自适应建筑屋顶:在不同气候条件下的能量性能

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Energy transfer in and out through the building envelope plays a prominent role in determining the energy consumption of a building. This study proposes a new paradigm to enhance the energy efficiency of buildings by designing adaptive building roofs that embrace dynamic responses to the fluctuating climatic conditions. Adaptive building roof is designed by integrating with thermochromic (TC) coating and/or phase change material (PCM) layer, namely TC roof, PCM roof, and TC/PCM roof, which could intelligently control both solar energy absorption/reflection and thermal energy transfer in the building. EnergyPlus simulation is implemented to investigate the potential use of adaptive roofs for the building energy saving under five different climatic conditions. The simulation results show that compared to traditional asphalt roof, the TC roof, PCM roof, TC/PCM roof reach total energy saving of up to 13%, 15%, and 17%, respectively. It is also found that TC/PCM roof shows seasonal control of building energy consumption. The sensitivity analysis reveals that when using TC/PCM roof, placing the PCM layer outside the roof insulation has more energy load reduction potential whereas the increase in thickness of PCM layer and TC coating contributes to limited improvement of energy efficiency in the building. Furthermore, adaptive roof is found to perform the best for the building located in the mild climate region. The methodology presented in this study will guide the design of adaptive roof for energy efficient buildings in different climate zones. (C) 2020 Published by Elsevier Ltd.
机译:通过建筑信封的能量转移和出局在确定建筑物的能量消耗方面发挥着突出作用。本研究提出了一种新的范式来提高建筑物的能源效率,设计适应性建筑屋顶,该屋顶拥抱波动气候条件的动态反应。通过将热致变色(TC)涂层和/或相变材料(PCM)层,即TC屋顶,PCM屋顶和TC / PCM屋顶集成,可以智能控制太阳能吸收/反射和热能,所设计的自适应建筑屋顶设计在建筑物中转到。实施精能仿真以研究适应性屋顶的潜在使用,以便在不同气候条件下建设节能。仿真结果表明,与传统沥青屋顶,TC屋顶,PCM屋顶,TC / PCM屋顶相比,TC / PCM屋顶分别达到高达13%,15%和17%的总节能。还发现TC / PCM屋顶显示了建筑能耗的季节性控制。灵敏度分析显示,当使用TC / PCM屋顶时,将PCM层放置在车顶绝缘体外部具有更多能量负载降低电位,而PCM层和TC涂层的厚度增加有助于提高建筑物中的能量效率。此外,发现自适应屋顶对位于温和气候区的建筑物中表现最佳。本研究中提出的方法将指导不同气候区中节能建筑的自适应屋顶的设计。 (c)2020由elestvier有限公司发布

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