Chen Xu, Zhu Saihong, Chen Tianyi
School of Civil and Transportation Engineering, Hebei University of Technology, Tianjin 300401, China.
School of Architecture, Tianjin University, Tianjin 300072, China.
ACS Omega. 2021 Nov 18;6(47):31457-31468. doi: 10.1021/acsomega.1c03341. eCollection 2021 Nov 30.
The transparent envelope structures in existing buildings have caused so much energy consumption. As one kind of the energy-saving technologies and strategies, the solar spectrum selective absorption film (SSAF) is considered suitable for the retrofit of glazing systems. The energy-saving performance of the SSAF in different types of glazing systems under different climate zones in China was investigated via a field study and simulation experiment. The results indicated that SSAF slowed down the rise of indoor air temperature in the daytime and reduced the total energy entering the room. The effect of the SSAF on the single glazing system was more potent than that on the double glazing system. In the hot summer and cold winter zone, moderate zone, hot summer and warm winter zone, the SSAF could reduce the energy consumption of windows. The highest energy-saving rate reached 35.0% for the single glazing system and 28.3% for the double glazing system. However, the SSAF does not have the energy-saving potential in existing buildings that already have low-E double glazing systems.
现有建筑中的透明围护结构造成了大量的能源消耗。作为一种节能技术和策略,太阳能光谱选择性吸收膜(SSAF)被认为适用于玻璃系统的改造。通过实地研究和模拟实验,对中国不同气候区不同类型玻璃系统中SSAF的节能性能进行了研究。结果表明,SSAF减缓了白天室内空气温度的上升,并减少了进入室内的总能量。SSAF对单层玻璃系统的效果比对双层玻璃系统的效果更显著。在夏热冬冷地区、温和地区、夏热冬暖地区,SSAF可以降低窗户的能耗。单层玻璃系统的最高节能率达到35.0%,双层玻璃系统的最高节能率达到28.3%。然而,对于已经安装了低辐射双层玻璃系统的现有建筑,SSAF没有节能潜力。