首页> 外文会议>The 19th national passive solar conference >THE DESIGN AND EVALUATION OF THREE ADVANCED DAYLIGHTING SYSTEMS: LIGHT SHELVES, LIGHT PIPES AND SKYLIGHTS
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THE DESIGN AND EVALUATION OF THREE ADVANCED DAYLIGHTING SYSTEMS: LIGHT SHELVES, LIGHT PIPES AND SKYLIGHTS

机译:三种先进的采光系统的设计和评估:挡光板,导光管和天窗

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摘要

We present results from the design and evaluation of three advanced daylighting systems: a light shelf, a light pipe, and a skylight. These systems use optical films and an optimized geometry to passively intercept and redirect sunlight further into the building. The objectives of these designs are to increase daylighting illuminance levels at distances of 4.57-9.14 m (15-30 ft) from the window, and to improve the uniformity of the daylight distribution and the luminance gradient across the room under variable sun and sky conditions throughout the year. The designs were developed through a series of computer-assisted ray-tracing studies, photometric measurements, and observations using physical scale models. Comprehensive sets of laboratory measurements in combination with analytical routines were then used to simulate daylight performance for any solar position. Results show increased daylight levels and an improved luminance gradient throughout the year- indicating that lighting energy consumption and cooling energy due to lighting can be substantially reduced with improvements to visual comfort. Future development of the designs may further improve the daylighting performance of these systems.
机译:我们介绍了三种先进采光系统的设计和评估结果:一个灯架,一个导光管和一个天窗。这些系统使用光学膜和优化的几何形状来被动地拦截阳光并将其重定向到建筑物中。这些设计的目的是增加距窗户4.57-9.14 m(15-30 ft)处的日光照度水平,并改善日光分布的均匀性以及在可变的日光和天空条件下整个房间的亮度梯度一年四季。这些设计是通过一系列计算机辅助的射线追踪研究,光度测量和使用物理比例模型的观察而开发的。然后使用综合的实验室测量值和分析例程来模拟任何太阳位置的日光性能。结果显示,全年的日照水平增加并且亮度梯度有所改善,这表明通过改善视觉舒适度,可以大大减少照明的能耗和冷却能。设计的未来发展可能会进一步改善这些系统的采光性能。

著录项

  • 来源
  • 会议地点 San Jose CA(US);San Jose CA(US)
  • 作者单位

    Building Technologies Program Energy and Environment Division Lawrence Berkeley Laboratory Mailstop 90-3111 Berkeley, CA 94720;

    Building Technologies Program Energy and Environment Division Lawrence Berkeley Laboratory Mailstop 90-3111 Berkeley, CA 94720;

    Building Technologies Program Energy and Environment Division Lawrence Berkeley Laboratory Mailstop 90-3111 Berkeley, CA 94720;

    Building Technologies Program Energy and Environment Division Lawrence Berkeley Laboratory Mailstop 90-3111 Berkeley, CA 94720;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TK511(712);
  • 关键词

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