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Evaluation of assumptions in building-energy standards: A method for assessing the lighting provision.

机译:评估建筑能源标准中的假设:一种评估照明设备的方法。

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摘要

Building-energy standards and guidelines have been instrumental in raising awareness of energy and environmental concerns within architectural practice. As energy and environmental concerns take hold as an important consideration in the practice of architecture, the provisions that define building-energy standards and guidelines are having greater impacts on the methods and approaches adopted by the profession to address issues of energy and environment. But some of the provisions in current building-energy standards are founded on potentially outdated methods and assumptions that were initially developed and adopted in urgent response to the energy crisis of the 1970's.; This thesis evaluates the method and assumption in one provision---the lighting energy provision---in a widely adopted building-energy standard developed by the American Society of Heating, Refrigerating, and Air-Conditioning Engineers Standard (ASHRAE). The lighting energy provision in the ASHRAE Standard is founded on the zonal cavity method (ZCM), a simplified lighting calculation method developed initially in 1916 to evaluate light levels in a space. But a fundamental assumption of the ZCM---that light is uniformly distributed on an imaginary horizontal plane that extends across the entire extent of the evaluated space---is at odds with the goal of reducing lighting energy use; a single uniform illuminance level at task light levels would require excessive energy use, or a single uniform illuminance level at general light levels may be inadequate for the intended task. Despite the incorporation of a fix to address this fundamental limitation, the method used to develop the lighting energy provisions still does not effectively assess non-uniform light distribution on lighting energy and quality in a space.; This thesis revisits, via computer simulation, the original 1916 experiment that established the ZCM, and presents an experiment and evaluation method that directly assesses the fundamental assumption in the ZCM of uniform light distribution. The evaluation method presented in this thesis expands the assessment criteria of the ZCM so that the method is capable of assessing the effects of non-uniform light distribution on both light levels and overall lighting quality. The evaluation demonstrates the potential of non-uniform light distribution for substantial reductions in lighting energy use.
机译:建筑能耗标准和指南在提高建筑实践中对能源和环境问题的认识方面发挥了作用。由于在建筑实践中将能源和环境问题作为重要考虑因素,定义建筑能源标准和指南的规定对专业人士解决能源和环境问题的方法和方法产生了更大的影响。但是,当前建筑能源标准中的某些规定是建立在潜在过时的方法和假设的基础上的,这些方法和假设是为应对1970年代的能源危机而紧急制定和采用的。本文根据一项由美国供热,制冷和空调工程师协会(ASHRAE)制定的,被广泛采用的建筑能源标准,评估了一项方法(照明能源的一项)中的方法和假设。 ASHRAE标准中的照明能量提供基于区域空腔法(ZCM),这是一种简化的照明计算方法,最初于1916年开发,用于评估空间中的光照水平。但是ZCM的基本假设(即光均匀分布在整个评估空间范围内的假想水平面上)与减少照明能源使用的目标背道而驰;在任务光水平下的单个均匀照度水平将需要大量的能量使用,或者在常规光水平下的单个均匀照度水平可能不足以实现预期的任务。尽管采用了解决此基本限制的方法,但用于制定照明能量规定的方法仍无法有效评估空间中照明能量和质量的不均匀光分布。本文通过计算机模拟回顾了1916年建立ZCM的原始实验,并提出了一种直接评估ZCM中均匀光分布基本假设的实验和评估方法。本文提出的评估方法扩展了ZCM的评估标准,使得该方法能够评估不均匀的光分布对光水平和整体照明质量的影响。评估表明,不均匀的光分布可能会显着减少照明能源的使用。

著录项

  • 作者

    An, John Sookyoon.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Architecture.; Energy.
  • 学位 D.Des.
  • 年度 2004
  • 页码 249 p.
  • 总页数 249
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;能源与动力工程;
  • 关键词

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