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A Multi-Zone Electrochromic Window System Integrated with Light Shelf.

机译:集成有灯架的多区域电致变色窗系统。

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摘要

Electrochromic glass (EC), one of the most advanced products in energy efficient window technology, is designed to transform a window from an energy liability to an energy source for the nation's building stock. Electrochromic windows vary their visual and thermal properties by electric field and preserve outside views while controlling transmitted light and solar heat gains. Although EC windows can provide considerable energy savings and relatively stable light levels, they cannot effectively block direct sunlight and tend to have unbalanced light distribution under certain sky and solar conditions. This research focuses on the optimization of EC application in buildings to improve its qualitative and quantitative performances. As one of the proposed optimization options, EC glazing is integrated with light shelf, an interior horizontal light-reflecting device installed approximately 8 feet above the floor adjacent to glazing. The light shelf divides the glazing into two zones, daylight glazing (the zone about the light shelf) and view glazing (the zone below). The light shelf potentially provides protection from direct sunlight and projects daylight into deeper areas of the space. EC glass with different tinting control algorithms based on interior light sensor is installed in the daylight and view glazing areas to dynamically control the visible light transmittance of both zones according to the exterior light intensity and solar angle incident on the window.;Physical experiment is adopted as the primary method for assessing daylighting performance. Two pieces of SAGE electrochromic glass are installed in a full-scale rotatable test-cell at NCSU daylighting lab. The test cell is equipped with 16 photometer sensors for daylight level measurement. The first phase assessment focuses on the initial testing on the electrochromic window configurations and other systems outlined above. The configurations and algorithms are evaluated and optimized based on this preliminary assessment. The second phase assessment focuses on climate-based daylight modeling, which is to monitor the daylighting systems on a long-term basis. The experiments and computer simulation results show that the proposed multiple-zone electrochromic window system integrated with light-shelf system can significantly improve the daylighting performance and visual comfort of the daylit space.
机译:电致变色玻璃(EC)是节能窗户技术中最先进的产品之一,旨在将窗户从能源负担转变为美国建筑材料的能源。电致变色窗户可通过电场改变其视觉和热性能,并在控制透射光和太阳热能的同时保留外部视野。尽管EC窗可以节省大量能源并保持相对稳定的光照水平,但它们不能有效地阻挡直射的阳光,并且在某些天空和太阳条件下往往会导致光分布不均衡。本研究致力于优化EC在建筑物中的应用,以提高其定性和定量性能。作为建议的优化选项之一,EC玻璃与光架集成在一起,光架是一个内部水平光反射装置,安装在离玻璃高出地面约8英尺的位置。灯架将玻璃窗分为两个区域,即日光玻璃窗(灯架周围的区域)和景观玻璃窗(下面的区域)。灯架可能会提供保护,防止阳光直射并将日光投射到空间的更深区域。日光下安装基于室内光传感器的具有不同着色控制算法的EC玻璃,并观察玻璃窗区域,以根据入射在窗户上的外部光强度和太阳角动态控制两个区域的可见光透射率。作为评估采光性能的主要方法。在NCSU采光实验室的全尺寸可旋转测试单元中安装了两块SAGE电致变色玻璃。该测试单元配有16个光度计传感器,用于日光水平测量。第一阶段评估的重点是对电致变色窗配置和上述其他系统的初始测试。基于此初步评估,对配置和算法进行评估和优化。第二阶段评估着重于基于气候的日光建模,该模型将长期监控日光系统。实验和计算机仿真结果表明,所提出的多区域电致变色窗系统与光架系统集成可以显着提高日光性能和日光空间的视觉舒适度。

著录项

  • 作者

    Malekafzali Ardakan, Ahoo.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Architectural engineering.;Sustainability.;Energy.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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