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Optimizing lighting, thermal performance, and energy production of building facades by using automated blinds and PV cells.

机译:通过使用自动百叶窗和PV电池,优化建筑立面的照明,热性能和能源生产。

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摘要

Energy consumption in buildings has recently become a major concern for environmental designers. Within this field, daylighting and solar energy design are attractive strategies for saving energy. This study seeks the integrity and the optimality of building envelopes' performance. It focuses on the transparent parts of building facades, specifically, the windows and their shading devices. It suggests a new automated method of utilizing solar energy while keeping optimal solutions for indoor daylighting. The method utilizes a statistical approach to produce mathematical equations based on physical experimentation.; A full-scale mock-up representing an actual office was built. Heat gain and lighting levels were measured empirically and correlated with blind angles. Computational methods were used to estimate the power production from photovoltaic cells. Mathematical formulas were derived from the results of the experiments; these formulas were utilized to construct curves as well as mathematical equations for the purpose of optimization. The mathematical equations resulting from the optimization process were coded using Java programming language to enable future users to deal with generic locations of buildings with a broader context of various climatic conditions.; For the purpose of optimization by automation under different climatic conditions, a blind control system was developed based on the findings of this study. This system calibrates the blind angles instantaneously based upon the sun position, the indoor daylight, and the power production from the photovoltaic cells. The functions of this system guarantee full control of the projected solar energy on buildings' facades for indoor lighting and heat gain. In winter, the system automatically blows heat into the space, whereas it expels heat from the space during the summer season.; The study showed that the optimality of building facades' performance is achievable for integrated thermal, energy, and lighting models in buildings. There are blind angles that produce maximum energy from the photovoltaic cells while keeping indoor light within the acceptable limits that prevent undesired heat gain in summer.
机译:建筑物中的能耗最近已成为环境设计者的主要关注点。在这一领域,采光和太阳能设计是节省能源的有吸引力的策略。本研究寻求建筑围护结构性能的完整性和最佳性。它着重于建筑立面的透明部分,特别是窗户及其遮光设备。它提出了一种利用太阳能同时保持室内日光最佳解决方案的自动化新方法。该方法利用统计方法基于物理实验产生数学方程。建立了代表实际办公室的完整模型。根据经验测量热增益和照明水平,并与盲角相关。计算方法用于估算光伏电池的发电量。数学公式是根据实验结果得出的;这些公式被用来构造曲线和数学方程式,以达到最优化的目的。优化过程产生的数学方程式使用Java编程语言进行了编码,以使将来的用户能够在各种气候条件的更广泛背景下处理建筑物的一般位置。为了在不同气候条件下通过自动化进行优化,基于本研究的结果开发了一种盲控制系统。该系统根据太阳位置,室内日光和光伏电池的发电量即时校准盲角。该系统的功能可确保完全控制建筑物外墙上的投射太阳能,以实现室内照明和热量吸收。在冬季,系统会自动将热量吹入空间,而在夏季,它将热量从空间排出。研究表明,对于建筑物中的集成热,能量和照明模型,可以实现建筑物外墙性能的最佳化。可以从光伏电池产生最大能量的盲角,同时将室内光线保持在可接受的范围内,以防止夏季不必要的热量获取。

著录项

  • 作者

    Alzoubi, Hussain Hendi.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Architecture.; Energy.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 229 p.
  • 总页数 229
  • 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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