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Optical aspects and energy performance of switchable ethylene-tetrafluoroethylene (ETFE) foil cushions

机译:可转换乙烯-四氟乙烯(ETFE)箔垫的光学特性和能量性能

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A pneumatic multilayer foil construction with a kinetic shading mechanism has the potential to be an effective response to dynamic climatic factors, such as solar radiation, and therefore moderate the energy consumption of buildings. A parametric study was carried out on a switchable ethylene-tetrafluoroethylene (ETFE) foil cushion with the purpose of investigating the optical performance of an adaptive building envelope and its impact on building energy performance regarding heating, cooling and lighting. Ray-tracing techniques were used to investigate the effects of surface curvature, fit layout and fit properties, on the optical performance of the cushion in open and closed mode. A range of incidence angles for solar radiation were simulated. The results of the simulation showed an angle dependent optical behaviour for both modes. The influence of the dynamic shading mechanism on building energy performance was further evaluated by integrating the optical data obtained for the ETFE foil cushions in a comprehensive energy simulation of a generic atrium building using EnergyPlus. Results suggested that switchable ETFE foil cushions have a higher potential to reduce cooling and heating loads in different climatic regions, compared to conventional glazing solutions (i.e. uncoated double-glazing and reflective double-glazing), while providing good conditions of natural daylighting. Annual energy savings of up to 44.9% were predicted for the switchable ETFE foil cushion in comparison to reflective double glazing. As such, this study provides additional insight into the optical behaviour of multilayer foil constructions and the factors of design and environment that potentially have a major impact on buildings energy performance.
机译:具有动力学遮蔽机制的气动多层箔结构具有对动态气候因素(例如太阳辐射)的有效响应的潜力,因此可以降低建筑物的能耗。为了研究适应性建筑围护结构的光学性能及其对建筑在采暖,制冷和照明方面对建筑能源性能的影响,对可转换的乙烯-四氟乙烯(ETFE)箔垫进行了参数研究。光线追踪技术用于研究表面曲率,贴合布局和贴合特性对垫子在打开和关闭模式下的光学性能的影响。模拟了太阳辐射的入射角范围。仿真结果表明两种模式的角度依赖光学行为。通过将使用ETFE箔垫获得的光学数据整合到使用EnergyPlus的通用中庭建筑的综合能源模拟中,进一步评估了动态遮光机制对建筑能源性能的影响。结果表明,与传统的玻璃窗解决方案(即无涂层双层玻璃窗和反射型双层玻璃窗)相比,可切换ETFE箔垫在降低不同气候区域的制冷和加热负荷方面具有更高的潜力,同时提供了自然采光的良好条件。与可反射的双层玻璃相比,可转换的ETFE箔垫预计将每年节省多达44.9%的能源。因此,本研究提供了更多有关多层箔结构的光学性能以及可能对建筑物能源性能产生重大影响的设计和环境因素的见解。

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