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Daylight control and performance in office buildings using a novel ceramic louvre system

机译:使用新型陶瓷百叶窗系统的办公楼日光控制和性能

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摘要

This study examined the design and daylight performance of a new louvre screen for office buildings. The screen was evaluated for three different material finishes: specular aluminium as a traditional material commonly used in louvres, and two types of ceramic finishes, with the intention to reduce the systems' environmental impact. The new system was assessed taking an unshaded window, a window with a rod screen and a window with venetian blinds as references. Annual performance simulations for a full-scale room, using the lighting software Daysim, were conducted to assess the effect of the three material systems on indoor daylighting levels and distributions using both the traditional Daylight Factor and climate-based daylighting metrics (Daylight Autonomy DA and Useful Daylight Illuminance UDI). The results show that the proposed louvre system can provide satisfactory daylight levels and visual comfort within the room, while ceramics appear as a promising alternative material to be used in the production of advanced daylighting technologies.
机译:这项研究检查了用于办公大楼的新型百叶窗的设计和日光性能。对筛网评估了三种不同的材料饰面:镜面铝作为百叶窗常用的传统材料,以及两种类型的陶瓷饰面,目的是减少系统对环境的影响。对新系统的评估采用了无遮挡的窗户,带有杆状屏幕的窗户和带有百叶窗的窗户作为参考。使用传统的日光因子和基于气候的日光度量标准(Daylight Autonomy DA和Daylight Autonomy DA以及使用基于气候的日光度量标准),使用Daysim照明软件对全尺寸房间的年度性能进行了模拟,以评估三种材料系统对室内日光水平和分布的影响。有用的日光照度UDI)。结果表明,所提出的百叶窗系统可以在室内提供令人满意的日光水平和视觉舒适度,而陶瓷似乎是一种有前途的替代材料,可用于生产先进的日光技术。

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