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Advanced parametric louver systems with bi-axis and two-layer designs for an extensive daylighting coverage in a deep-plan office room

机译:具有双轴和双层设计的先进的参数百叶窗系统,在深度计划的办公室室内进行广泛的日光覆盖范围

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摘要

Advanced daylighting systems have become commonly used in modern architecture for a more sustainable environment. The mainstream of recent daylighting studies focuses not only on the quantity but also the quality of daylight delivered to an interior space. The more uniform daylight is distributed in the required illuminance range, the more light stability is achieved, and the longer time is illuminated by daylight, the more electrical lighting energy can be potentially saved. This study proposes an advanced daylighting design based on a parametrically controlled louver with reflective slats to redirect sunlight onto a ceiling, which can then serve as a source of diffuse light to illuminate a room. The design aims to achieve steadier and more uniform daylight distribution during the working hours in a deep-plan office room. The angle of each slat of the louver is para-metrically controlled to target a corresponding area on the ceiling. In order to achieve a steadier daylighting, a bi-axis design and a two-layer design with a shifted target are evaluated and compared with a one-axis design. A daylighting analysis of the proposed design is exemplified for a south-oriented 8 m deep office room in a hot arid territory. The daylight analysis was performed using Grasshopper software as a parametric tool to link with Radiance and DAYSIM daylighting analysis. The proposed design shows promising merit that it can provide a relatively steady and distributed daylight coverage for more than 90% of the floor area within the recommended acceptable range 300-500 lx during the working hours.
机译:高级日光照明系统常用于现代架构中,以实现更可持续的环境。最近的迷人研究的主流不仅关注数量,而且重点介绍,也令人信地送到内部空间的日光质量。在所需的照度范围内分布越均匀的日光,实现的光稳定性越多,并且通过日光照射较长的时间,可以潜在地节省越多的电气照明能量。本研究提出了一种基于参数控制的百叶窗的先进的日光设计,其中具有反射板块,以将阳光重定向到天花板上,然后可以用作漫射光的源光源以照亮房间。该设计旨在在深度计划办公室的工作时间内实现稳定和更均匀的日光分布。百叶窗的每个板块的角度是段标准控制的,以瞄准天花板上的相应区域。为了实现替代日光照明,对双轴设计进行双轴设计和双层设计,并与单轴设计进行比较。拟议设计的日光分析是在热干旱领域的南方8米深办公室的南方8米深办公室。使用蚱蜢软件作为参数工具进行日光分析,以与光辉和日光模拟分析连接。所提出的设计表明,有希望的优点,它可以在工作时间内推荐可接受范围300-500 LX内的90%以上的地板区域提供相对稳定和分布的日光覆盖率。

著录项

  • 来源
    《Solar Energy》 |2020年第8期|596-613|共18页
  • 作者单位

    Univ Nottingham Dept Architecture & Build Environm Fac Engn Nottingham NG7 2RD England;

    Univ Nottingham Dept Architecture & Build Environm Fac Engn Nottingham NG7 2RD England;

    Hubei Univ Technol Sch Sci Wuhan 430068 Hubei Peoples R China;

    Hubei Univ Technol Sch Sci Wuhan 430068 Hubei Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Parametric louver; One-axis; Bi-axis two-layer; Percentage daylight coverage; Deep-plan office; Grasshopper;

    机译:参数百叶窗;单轴;双轴和两层;百分比日光覆盖范围;深层办公室;蚱蜢;

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