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Review and analysis of solar thermal facades

机译:审查和分析太阳能热立面

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摘要

Harnessing solar energy to provide for the thermal needs of buildings is one of the most promising solutions to the global energy issue. Exploiting the additional surface area provided by the building's facade can significantly increase the solar energy output. Developing a range of integrated and adaptable products that do not significantly affect the building's aesthetics is vital to enabling the building integrated solar thermal market to expand and prosper. This work reviews and evaluates solar thermal facades in terms of the standard collector type, which they are based on, and their component make-up. Daily efficiency models are presented, based on a combination of the Hottel Whillier Bliss model and finite element simulation. Novel and market available solar thermal systems are also reviewed and evaluated using standard evaluation methods, based on experimentally determined parameters ISO 9806. Solar thermal collectors integrated directly into the facade benefit from the additional wall insulation at the back; displaying higher efficiencies then an identical collector offset from the facade. Unglazed solar thermal facades with high capacitance absorbers (e.g. concrete) experience a shift in peak maximum energy yield and display a lower sensitivity to ambient conditions than the traditional metallic based unglazed collectors. Glazed solar thermal facades, used for high temperature applications (domestic hot water), result in overheating of the building's interior which can be reduced significantly through the inclusion of high quality wall insulation. For low temperature applications (preheating systems), the cheaper unglazed systems offer the most economic solution. The inclusion of brighter colour for the glazing and darker colour for the absorber shows the lowest efficiency reductions (<4%). Novel solar thermal facade solutions include solar collectors integrated into balcony rails, shading devices, louvers, windows or gutters. (C) 2016 Elsevier Ltd. All rights reserved.
机译:利用太阳能满足建筑物的热需求是解决全球能源问题的最有希望的解决方案之一。利用建筑物外墙提供的额外表面积可以显着增加太阳能输出。开发一系列不会显着影响建筑物美观的集成式和适应性产品,对于使建筑物集成式太阳能热市场得以扩展和繁荣至关重要。这项工作根据标准的集热器类型及其组件组成来审查和评估太阳能热立面。基于Hottel Whillier Bliss模型和有限元模拟的结合,提出了每日效率模型。还基于标准确定的参数ISO 9806,使用标准评估方法对新颖的和市售的太阳能热系统进行了评估和评估。直接集成到立面中的太阳能热收集器受益于背面的额外墙体保温;显示更高的效率,然后从立面偏移相同的收集器。与传统的基于金属的无釉集热器相比,具有高电容吸收器(例如混凝土)的无釉太阳能热立面在最大能量输出峰值方面会发生变化,并且对环境条件的敏感性较低。用于高温应用(家用热水)的釉面太阳能热立面导致建筑物内部过热,可通过添加高质量的墙体隔热层来显着减少过热。对于低温应用(预热系统),便宜的无釉系统可提供最经济的解决方案。玻璃的亮色和吸收体的暗色显示出最低的效率降低(<4%)。新颖的太阳能热立面解决方案包括集成到阳台护栏,遮阳设备,百叶窗,窗户或天沟中的太阳能收集器。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Solar Energy》 |2016年第10期|408-422|共15页
  • 作者单位

    Trinity Coll Dublin, Dept Civil Struct & Environm Engn, Dublin, Ireland;

    Queens Univ Belfast, Architecture, Belfast BT7 1NN, Antrim, North Ireland;

    Trinity Coll Dublin, Dept Civil Struct & Environm Engn, Dublin, Ireland;

  • 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

    Solar thermal collector; Solar thermal facades; Facade integration;

    机译:太阳能集热器;太阳能热立面;幕墙集成;

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