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Experimental Analysis of the Performance of Light Shelves in Different Geometrical Configurations Through the Scale Model Approach

机译:通过比例模型方法对不同几何配置的光架性能的实验分析

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Daylight plays a significant role in achieving energy saving and comfort in buildings. It is in accordance with the human circadian rhythms and allows the best visual conditions in work environments and residential buildings. Recently, numerous researchers have focused their attention on the performance of technological devices able to increase natural light availability in interior areas of buildings. Among them, light shelves are commonly used with the aim of improving the depth of daylight penetration, trying to reduce the nonuniform diffusion of light entering from vertical windows. In this paper, the authors propose six different configurations of an internalexternal light shelf and analyse their performance using the experimental scale model approach under real sky. Although the method is not very accurate as deduced from literature on this topic, the authors still demonstrate its usefulness in examining different geometric configurations of light shelves. In fact, even if the results highlight inaccuracies in the method used, which are accentuated under direct sun light, they are useful for considerations in the comparative analysis, particularly in regard to data logged under partially completely cloudy skies albeit with the awareness that light shelves’ effectiveness is improved under direct sun light. Despite its limits, the method is simple to use and can be considered efficient in allowing the authors to carry out considerations regarding the performance of the system analysed. Among the six different configurations proposed two seem to be the most efficient and are characterized by the presence of an internal highly reflecting surface applied on the ceiling and an external one with two different inclination angles (10° and 20°).
机译:日光在建筑物中实现节能和舒适方面发挥着重要作用。它符合人类昼夜节律,并允许在工作环境和住宅建筑中获得最佳视觉条件。最近,众多研究人员将注意力集中在能够增加建筑物内部区域的自然光可用性的技术设备的表现。其中,光架通常用于改善日光渗透深度的目的,试图减少从垂直窗口进入的光的不均匀扩散。在本文中,作者提出了六种不同的内部光架配置,并在真空下使用实验规模模型方法分析它们的性能。虽然该方法从文献中推断出这一主题的方法并不是很准确,但作者仍然展示了其在检查光架的不同几何配置中的有用性。事实上,即使结果突出了所使用的方法中的不准确性,它们在直接阳光下突出,它们对于比较分析中的考虑是有用的,特别是在部分完全多云的天空中记录的数据,尽管具有轻质货架的认识“在直接阳光下有效性得到改善。尽管它限制了,但该方法易于使用,并且可以被认为是有效的,允许作者对分析系统的性能进行考虑。在两个不同的配置中,提出的六种不同的配置似乎是最有效的,并且通过存在在天花板上施加的内部高度反射表面的特征以及具有两个不同倾斜角度(10°和20°)的外部一个。

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