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Experimental in-lab and in-field analysis of waterproof membranes for cool roof application and urban heat island mitigation

机译:在室内和室外使用防水膜进行实验性室内和野外分析,用于凉爽屋顶应用和城市热岛缓解

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摘要

Buildings are responsible for about the 40% of the global annual energy consumption, therefore, innovative strategies for buildings' energy efficiency are under development. Strategies of re-roofing with "cool" materials have a non-negligible cooling energy saving potential, as they contribute to the reduction of the peak ambient temperatures during summer and, moreover, they contribute to the improvement of the urban microclimate by decreasing the intensity of heat island phenomena. In this paper, the experimental characterization and optimization of a new membrane for buildings' roof is carried out. To this aim, laboratory measurements were performed to determine its optic-energy properties and, therefore, to optimize its "cool roof' behavior. A full scale field test was also setup in order to measure the global solar radiation reflected by each membrane, before and after optimization, with varying boundary conditions, e.g. time during the day, seasonal period, and weather conditions. The in-field experimental campaign allowed to characterize the optic-energy behavior of the cool membranes in real boundary conditions, showing non-negligible variation of measured solar reflection capability with varying environmental constraints in winter conditions. The research showed interesting results from the in-lab optimization campaign, and non-negligible unreliability due to environmental agents affecting in-field albedo measurement. (C) 2015 Elsevier B.V. All rights reserved.
机译:建筑物约占全球年能耗的40%,因此,正在开发创新的建筑物能效战略。使用“凉爽”材料进行屋顶翻新的策略具有不可忽略的冷却节能潜力,因为它们有助于降低夏季的峰值环境温度,此外,它们还可以通过降低强度来改善城市微气候。热岛现象。本文对建筑物屋顶用新型膜进行了实验表征和优化。为此,进行了实验室测量以确定其光能性质,从而优化其“凉爽屋顶”性能。还进行了全面的现场测试,以测量各膜反射的总太阳辐射。优化后,并在边界条件(例如白天,季节和天气条件)变化的情况下进行实地实验,以表征在实际边界条件下冷膜的光能行为,从而显示出不可忽略的变化(C)2015 Elsevier BV版权所有:在实验室条件下的优化活动中,有趣的结果得到了有趣的研究结果,并且由于环境因素影响了现场反照率的测量而产生的不可忽略的不可靠性。保留。

著录项

  • 来源
    《Energy and Buildings》 |2016年第2期|180-190|共11页
  • 作者单位

    Univ Perugia, CIRIAF, Interuniv Res Ctr Pollut & Environm M Felli, Via G Duranti 63, I-06125 Perugia, Italy|Univ Perugia, Dept Engn, Via G Duranti 93, I-06125 Perugia, Italy;

    Univ Perugia, CIRIAF, Interuniv Res Ctr Pollut & Environm M Felli, Via G Duranti 63, I-06125 Perugia, Italy;

    Univ Perugia, CIRIAF, Interuniv Res Ctr Pollut & Environm M Felli, Via G Duranti 63, I-06125 Perugia, Italy;

    Univ Perugia, CIRIAF, Interuniv Res Ctr Pollut & Environm M Felli, Via G Duranti 63, I-06125 Perugia, Italy|Univ Perugia, Dept Engn, Via G Duranti 93, I-06125 Perugia, Italy;

    Univ Athens, Dept Phys, Grp Bldg Environm Res, Athens 15784, Greece;

  • 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

    Cool roof; Albedo; Urban heat island; Energy efficiency in buildings; Weathering; Reflective roof; Passive cooling;

    机译:凉爽的屋顶;反照率;城市热岛;建筑物的能源效率;风化;反射屋顶;被动冷却;

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