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Decision-making framework for the selection and design of shading devices.

机译:遮光设备选择和设计的决策框架。

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摘要

Most shading device systems installed in windows or glass walls are used only for protection from overheating and glare, neglecting other possible functions, such as increasing the daylight level in the space or collecting solar energy. The blinds are usually made of opaque or translucent materials, and if they are partially open/closed or completely closed, a direct view to the outside is blocked. A balance between a sufficient amount of daylight and protection from overheating of the space in summer is not often achieved due to inappropriate control of the blinds' tilt angle. There is also a need for specific guidance for the selection and design of shading device systems in the windows.; This research develops a general decision-making framework (DMF) that can be used by architects and manufacturers of shading devices. The general DMF is a guide for the user in analyzing shading device performance in the process of selection/design of the shading device. This research also develops a specific DMF to better understand and validate the general DMF. The specific DMF, based on illuminance and luminance, is used for an analysis of daylighting performance of shading devices to select the best possible existing system or new system among several alternatives. Architects or manufacturers of shading devices, as the users of the DMF, analyze various systems of blinds applied on a particular building and at a given location. The users of the DMF can apply either an experimental procedure or computer simulation that provides information about illuminance and luminance levels in the space. Based on the analysis of the results of the experiments or simulations, the user of the DMF decides which blinds to select. The specific DMF proposes a methodology for both the analysis of the daylighting performance and for the process for making a decision based on the results of the analysis.; A case study is conducted in order to validate the DMF. Three types of shading devices are tested: an existing system, a patented system, and a new system, proposed by this research. The shading devices are installed in an office space located in Roanoke, Virginia. The software Autodesk VIZ 4 is used to simulate daylighting performance. The output information, such as illuminance and luminance levels in the space, is used as a basis for making the decision about which type of blinds to apply. A new system of shading device, which has a triangular cross section and is made of clear plastic with a silver coating on one side, shows better performance than the existing shading device and the patented shading device, given the research limitations.; By using the specific decision-making framework, a shading device manufacturer/designer is able to understand the shading device daylighting performance from his design-imposed criteria. Selection of the shading device, given the designer's daylighting objectives, is better achieved. Existing shading devices are also able to be analyzed from a building designer's perspective. This analysis is based on the designer-imposed daylighting criteria. The specific decision-making framework helps the designers of the buildings, together with the clients, select the most appropriate shading device based on daylighting performance. The decision-making framework is a model for development of decision-making software that will help designers of buildings, facades, and shading device systems in the selection/design of shading device systems in all phases of the design.
机译:安装在窗户或玻璃墙中的大多数遮阳设备系统仅用于防止过热和眩光,而忽略了其他可能的功能,例如增加空间中的日光水平或收集太阳能。百叶窗通常由不透明或半透明的材料制成,如果它们是部分打开/关闭或完全关闭的,则无法直视外部。由于对百叶窗的倾斜角度的控制不当,通常无法在充足的日光和防止夏季空间过热之间取得平衡。还需要针对窗户中遮阳设备系统的选择和设计的具体指南。这项研究开发了一个通用的决策框架(DMF),遮光设备的设计师和制造商可以使用该框架。通用DMF为用户提供了在遮光设备选择/设计过程中分析遮光设备性能的指南。这项研究还开发了一种特定的DMF,以更好地理解和验证通用DMF。基于照度和亮度的特定DMF用于遮阳设备的日光性能分析,以在几种替代方案中选择最佳的现有系统或新系统。作为DMF的使用者,遮阳设备的建筑师或制造商会分析应用于特定建筑物和给定位置的各种百叶窗系统。 DMF的用户可以应用实验程序或计算机模拟来提供有关空间中照度和亮度级别的信息。基于对实验或模拟结果的分析,DMF的用户可以决定选择哪个百叶窗。特定的DMF提出了一种用于分析采光性能和基于分析结果做出决策的过程的方法。为了验证DMF,进行了案例研究。测试了三种类型的遮光设备:本研究提出的现有系统,专利系统和新系统。遮光设备安装在弗吉尼亚州罗阿诺克的办公室中。 Autodesk VIZ 4软件用于模拟采光性能。输出信息(例如空间中的照度和亮度级别)将用作决定应用哪种类型的百叶窗的基础。考虑到研究的局限性,一种新的遮阳装置系统具有三角形的横截面,该系统由透明塑料制成,在一侧上具有银色涂层,与现有的遮阳装置和已获专利的遮阳装置相比,具有更好的性能。通过使用特定的决策框架,遮光设备制造商/设计人员可以从其设计标准中了解遮光设备的采光性能。根据设计者的采光目标,可以更好地选择遮光设备。现有的遮阳设备也可以从建筑设计师的角度进行分析。该分析基于设计者施加的采光标准。特定的决策框架可帮助建筑物的设计人员与客户一起根据采光性能选择最合适的遮阳设备。决策框架是用于开发决策软件的模型,该模型将帮助建筑物,外墙和遮阳设备系统的设计人员在设计的所有阶段选择/设计遮阳设备系统。

著录项

  • 作者

    Olbina, Svetlana.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Architecture.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 520 p.
  • 总页数 520
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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