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Smart windows - Transmittance tuned thermochromic coatings for dynamic control of building performance

机译:智能窗户 - 透射率调谐热致变色涂层,用于系统性能的动态控制

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摘要

Thermochromic window technologies promise energy-saving capabilities through intelligent regulation of solar irradiation indoor penetration. Although improvements have been made, nanoparticle thermochromic coated glazing technology has not yet achieved optimal balance between luminous transmittance and solar modulating capability. While luminous transmittance can be increased, this generally comes at the cost of reduced solar modulation, and this trade-off requires exploration. Thermochromic glazing with varying luminous transmittance and corresponding solar modulation has hence been developed through coating VO2 nanoparticles directly onto glazing by adjusting thicknesses of the coatings. The advantages of this method are simplicity of process, high purity of starting materials, compatibility with a wide range of substrates, and reproducibility in switching properties. The effects of the thermochromic glazings on building performance were then explored using building simulation for desert, Mediterranean, and temperate climates. It was found that 7.1-46.4% annual energy-saving can be achieved in comparison to using an uncoated clear double-glazed window. Trade-off between energy-saving capability and UDI500-2000 lx within the space was also explored and results showed that the designed thermochromic glazing reduced visual discomfort 1.2-3.2 m into the space. Overall, responding to external conditions, thermochromic technological advancements can help make buildings more resilient to future weather changes. (C) 2021 Published by Elsevier B.V.
机译:Thermochromic Window Technologies通过智能调节太阳照射室内渗透来承诺节能能力。尽管已经进行了改进,但纳米粒子热致色彩涂覆的玻璃技术尚未在发光透射率和太阳能调节能力之间实现最佳平衡。虽然发光透射率可以增加,但这通常是由于太阳能调制降低的成本,而这种权衡则需要探索。因此,通过调节涂层的厚度将VO2纳米颗粒直接涂覆到玻璃窗上,通过涂覆VO2纳米颗粒来开发具有变化的发光透射率和相应的太阳能调节的热致变色玻璃。该方法的优点是过程的简单性,起始材料的高纯度,与各种基板的相容性,以及切换性能的再现性。然后利用沙漠,地中海和温带气候建筑模拟探索了热致变色玻璃对建筑物性能的影响。结果发现,与使用未涂层的清晰双层玻璃窗相比,可以实现7.1-46.4%的年节能。还探讨了节能能力与UDI500-2000 LX之间的权衡,结果表明,设计的热致色调玻璃窗降低了视觉不适1.2-3.2米进入空间。总体而言,应对外部条件,热致变色技术进步可以帮助建筑物更加适应未来的天气变化。 (c)由elsevier b.v发布的2021年

著录项

  • 来源
    《Energy and Buildings》 |2021年第3期|110717.1-110717.16|共16页
  • 作者单位

    Univ Adelaide Sch Architecture & Built Environm Adelaide SA 5005 Australia|Univ Nottingham Fac Engn Dept Architecture & Built Environm Univ Pk Nottingham NG7 2RD England;

    Univ Adelaide Inst Photon & Adv Sensing Adelaide SA 5005 Australia|Univ Adelaide Sch Phys Sci Adelaide SA 5005 Australia;

    Univ Nottingham Fac Engn Adv Mat Res Grp Univ Pk Nottingham NG7 2RD England;

    Univ Nottingham Fac Engn Adv Mat Res Grp Univ Pk Nottingham NG7 2RD England;

    Univ Adelaide Inst Photon & Adv Sensing Adelaide SA 5005 Australia|Univ Adelaide Sch Phys Sci Adelaide SA 5005 Australia;

    Univ Adelaide Sch Architecture & Built Environm Adelaide SA 5005 Australia;

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

    Univ Adelaide Sch Architecture & Built Environm Adelaide SA 5005 Australia;

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

    Thermochromic glazing; Smart window; Solar modulation; Visible transmittance; Energy saving;

    机译:Thermochromic Glazing;智能窗口;太阳能调制;可见光透射率;节能;
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