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Quantifying the potential of automated dynamic solar shading in office buildings through integrated simulations of energy and daylight

机译:通过对能源和日光的集成模拟来量化办公楼中自动动态遮阳的潜力

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摘要

The facade design is and should be considered a central issue in the design of energy-efficient buildings. That is why dynamic facade components are increasingly used to adapt to both internal and external impacts, and to cope with a reduction in energy consumption and an increase in occupant comfort. To gain a complete picture of any fac.ade's performance and subsequently carry out a reasonable benchmarking of various facade alternatives, the total energy consumption and indoor environment need to be considered simultaneously. We quantified the potential of dynamic solar shading facade components by using integrated simulations that took energy demand, the indoor air quality, the amount of daylight available, and visual comfort into consideration. Three types of facades were investigated (without solar shading, with fixed solar shading, and with dynamic solar shading), and we simulated them with various window heights and orientations. Their performance was evaluated on the basis of the building's total energy demand, its energy demand for heating, cooling and lighting, and also its daylight factors. Simulation results comparing the three facade alternatives show potential for significant energy reduction, but greater differences and conflicting tendencies were revealed when the energy needed for heating, cooling and artificial lighting were considered separately. Moreover, the use of dynamic solar shading dramatically improved the amount of daylight available compared to fixed solar shading, which emphasises the need for dynamic and integrated simulations early in the design process to facilitate informed design decisions about the facade.
机译:在节能建筑的设计中,立面设计是并且应该被视为中心问题。这就是为什么动态立面组件越来越多地用于适应内部和外部冲击,并减少能耗和增加乘员舒适度的原因。为了全面了解幕墙的性能并随后对各种幕墙替代方案进行合理的基准测试,需要同时考虑总能耗和室内环境。我们通过使用集成模拟来量化动态遮阳幕墙组件的潜力,该模拟将能源需求,室内空气质量,可用日光量和视觉舒适性考虑在内。对三种类型的外墙进行了研究(无日光遮阳,固定日光遮阳和动态日光遮阳),并且我们以各种窗口高度和方向对它们进行了模拟。根据建筑物的总能源需求,供暖,制冷和照明的能源需求以及其日光因素来评估其性能。比较三种立面方案的模拟结果显示了显着降低能耗的潜力,但是当分别考虑供暖,制冷和人工照明所需的能量时,则显示出更大的差异和相互矛盾的趋势。此外,与固定式遮阳相比,动态式遮阳的使用显着改善了可用的日光量,这强调了在设计过程的早期就需要进行动态和集成模拟,以促进有关立面的明智设计决策。

著录项

  • 来源
    《Solar Energy》 |2011年第5期|p.757-768|共12页
  • 作者单位

    Department of Civil Engineering, Technical University of Denmark, Brovej, Building 118, DK-2800 Kgs. Lyngby, Denmark;

    Department of Civil Engineering, Technical University of Denmark, Brovej, Building 118, DK-2800 Kgs. Lyngby, Denmark;

    Department of Civil Engineering, Technical University of Denmark, Brovej, Building 118, DK-2800 Kgs. Lyngby, Denmark;

  • 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

    dynamic solar shading; integrated simulation; energy demand; indoor environment; office buildings;

    机译:动态遮阳综合模拟能源需求;室内环境办公大楼;

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