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Subdivided windows with mixed shading devices: A daylighting solution for effective integration of occupants into the building environmental control.

机译:带混合遮阳装置的细分窗户:一种日光照明解决方案,可将居住者有效地整合到建筑环境控制中。

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摘要

Daylighting is one of the most challenging aspects of an ecological building design. The dynamic nature of daylight along with a wide range of individual preferences makes it a complex design issue. The art of daylighting relies on fine-tuning a delicate balance between admitting sufficient daylight for occupant well being and task performance and preventing glare and over heating. These goals are rarely achieved in buildings where fenestration design is reduced to an opening with an interior blind due to occupants' infrequent shade operation. To address this problem, a number of automatic shading devices have been developed to be integrated with the lighting control system for an optimized daylit environment. Although such systems reveal substantial energy savings in laboratory and energy modeling tools, evidence has accumulated that they do not perform well in real buildings and disregard occupants' need for perceived control over their environment. This dissertation aimed at examining the potentials of a subdivided window in solving the current challenges of daylighting side-lit spaces. The field observation suggested that a subdivided window with horizontal shading devices increases occupants' chance of raising the blinds and reduces their lighting energy consumption. The simulation studies established that subdivided windows combining automatic and manual shading devices have the potential to significantly reduce the lighting energy use and maintain a well-daylit environment throughout the year.
机译:采光是生态建筑设计中最具挑战性的方面之一。日光的动态性质以及广泛的个人喜好使它成为一个复杂的设计问题。采光技术依赖于微调之间的微妙平衡,该平衡是在允许充足的采光量以保持乘员的健康和工作表现与防止眩光和过热之间进行的。在那些由于居住者不经常进行遮蔽操作而将开窗设计缩小到带有内部百叶窗的开口的建筑物中,很少达到这些目标。为了解决这个问题,已经开发了许多自动遮光设备,以与照明控制系统集成以优化日光环境。尽管这样的系统在实验室和能源建模工具中可节省大量能源,但已有证据表明它们在实际建筑物中的性能不佳,并且无视居住者对环境感知控制的需求。本文旨在研究细分窗口在解决当前采光侧照明空间挑战方面的潜力。现场观察表明,带有水平遮阳装置的细分窗户增加了乘员抬高百叶窗的机会,并减少了照明能量的消耗。仿真研究表明,结合了自动和手动遮光设备的细分窗户有潜力在全年内显着减少照明能源的使用并保持光线充足的环境。

著录项

  • 作者

    Sanati, Leyla.;

  • 作者单位

    The University of Wisconsin - Milwaukee.;

  • 授予单位 The University of Wisconsin - Milwaukee.;
  • 学科 Architecture.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 294 p.
  • 总页数 294
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:56

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