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An experimental setup to evaluate the daylighting performance of an advanced optical light pipe for deep-plan office buildings

机译:用于评估用于深层办公楼的高级光学导光管的采光性能的实验装置

摘要

This research focuses on an advanced optical light pipe daylighting system as a means to deliver natural light at the back of deep-plan office buildings (15ft to 30ft), using optimized geometry and high reflective materials. The light pipe configurations follow a previous study at the Lawrence Berkeley National Laboratory (Beltr??n et al., 1997). The current system is designed for College Station, TX (lat: 30?? 36??N), with predominantly mostly sunny sky conditions. This work consists of the monitoring of two scale models simulating a portion of a multi-story office building with open-plan configuration, with interior dimensions 30ft x 20ft x 10ft, built at 1:4 of its real scale, one of the models being the reference case and the other the test case where the light pipe system is placed. The main objectives of this thesis are (a) to examine this daylighting system comparative to the reference case, taking measurements for longer periods than the study at LBNL, as well as to collect detailed data of its performance under different weather conditions and with different materials; (b) to evaluate the visual comfort and possible glare problems of the light pipe system through photographic evaluation and the conduction of a survey that provides people??s opinions and suggestions about the daylighting system. The light pipe system demonstrated a higher performance than the reference case in terms of appropriate levels of light and people??s preferences. The illuminance at the workplane level showed to be adequate with any of the two different diffusing materials used to spread the light into the room. The light pipe without a diffuser was the other condition observed to further understand the bounces of the sunbeam inside the reflective chamber and its consequences on the lighting output. Recommended standards for office spaces with VDT screens together with the analysis of the daylight system, led to preliminary suggestions on how to integrate the light pipe system in an open-plan office configuration. Further study is indicated to reach the complete potential of this advanced optical light pipe that ties illuminance quality with energy savings through the integration of daylight and electric light systems.
机译:这项研究的重点是先进的光学导光管采光系统,该系统使用优化的几何形状和高反射率的材料在深层办公楼(15英尺至30英尺)的背面提供自然光。导光管的配置遵循劳伦斯伯克利国家实验室的先前研究(Beltr ?? n等,1997)。当前系统是为德克萨斯州大学城(北纬30?36?N)设计的,主要是晴朗的天空条件。这项工作包括监视两个比例模型,这些模型模拟具有开放式配置的多层办公楼的一部分,其内部尺寸为30ft x 20ft x 10ft,以其实际比例为1:4建造,其中一个模型是参考案例,另一个是放置光导管系统的测试案例。本论文的主要目的是(a)与参考案例相比,研究这种采光系统,比LBNL的研究进行更长的测量,并收集其在不同天气条件下和使用不同材料的性能的详细数据。 ; (b)通过摄影评估和进行调查,以提供人们对采光系统的意见和建议,评估导光管系统的视觉舒适度和可能出现的眩光问题。在适当的光线水平和人们的喜好方面,光导管系统表现出比参考案例更高的性能。在用于将光散布到房间中的两种不同漫射材料中的任何一种上,工作平面上的照度都显示出足够的亮度。观察到的另一种情况是没有扩散器的光导管,以进一步了解反射室内的光束反射及其对照明输出的影响。带有VDT屏幕的办公空间的推荐标准以及对日光系统的分析,就如何将光管系统集成到开放式办公配置中提出了初步建议。通过进一步的研究表明,通过将日光和电光源系统集成在一起,可以将这种照明光管质量与节能联系起来,从而充分发挥这种先进的光导管的全部潜力。

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