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Performance of Anidolic Daylighting Systems in tropical climates - Parametric studies for identification of main influencing factors

机译:热带气候下抗日光采光系统的性能-确定主要影响因素的参数研究

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摘要

Making daylight more available in buildings is highly desirable, not only for reasons of energy-efficiency, but also for improvement of occupants' health and well-being. Core-daylighting, that is daylight provision in areas situated at considerable distances from facades and windows, is currently one of the main challenges in sustainable building design. Anidolic Daylighting Systems (ADSs) are one very promising technology in the field of core-daylighting, but commercial solutions that are not only well-performing but also financially competitive are not yet widely available. This article presents results of parametric studies on Anidolic Integrated Ceilings (AICs), a special type of ADS, for identification of main influencing factors. The article describes a reliable method for simulating ADS and AIC performance under given sky conditions. Various simulation results for the example location Singapore are discussed in detail, it is concluded that the main influencing factors are coating material, system dimensions and external obstruction, and those influencing factors' potential impacts are quantified. It is shown that AIC overall efficiencies can reach up to almost 50% in Singapore. The essentially new results presented in this article can be of great help to architects, engineers and scientists in the future, when it comes to precisely dimensioning ADS for various buildings and daylight conditions.
机译:不仅出于节能的考虑,而且为了改善居住者的健康和福祉,迫切需要使建筑物中的日光更为充足。核心采光,即在距立面和窗户相当远的区域提供采光,目前是可持续建筑设计的主要挑战之一。在核心采光领域中,日光采光系统(ADSs)是一项非常有前途的技术,但是,不仅性能良好而且在经济上具有竞争力的商业解决方案还没有广泛应用。本文介绍了针对特殊类型的ADS的Anidolic集成天花板(AIC)进行参数研究的结果,以识别主要影响因素。本文介绍了一种在给定的天空条件下模拟ADS和AIC性能的可靠方法。详细讨论了示例位置新加坡的各种模拟结果,得出的结论是,主要影响因素是涂层材料,系统尺寸和外部障碍物,并量化了这些影响因素的潜在影响。结果表明,新加坡的AIC总体效率可以达到近50%。当涉及到精确确定各种建筑物和日光条件下的ADS尺寸时,本文中提出的本质上新的结果将对将来的建筑师,工程师和科学家大有帮助。

著录项

  • 来源
    《Solar Energy》 |2010年第7期|P.1085-1094|共10页
  • 作者单位

    Solar Energy and Building Physics Laboratory (LESO-PB), Swiss Federal Institute of Technology in Lausanne (EPFL), 1015 Lausanne, Switzerland;

    School of Design and Environment, Department of Architecture, National University of Singapore, 4 Architecture Drive, Singapore 117566, Singapore;

    Solar Energy and Building Physics Laboratory (LESO-PB), Swiss Federal Institute of Technology in Lausanne (EPFL), 1015 Lausanne, Switzerland;

  • 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

    daylight; anidolic; office lighting;

    机译:日光止痛药办公照明;

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