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Field thermal performance of naturally ventilated solar roof with PCM heat sink

机译:带PCM散热器的自然通风太阳能屋顶的现场热性能

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摘要

For decades, residential and commercial roofs have been considered a prime location for installation of building integrated solar systems. In climatic conditions of East Tennessee, USA, an experimental solar roof was tested during 2009/2010, by a research team representing Metal Construction Association (MCA), and a consortium of building insulation companies, photovoltaic (PV) manufacturers, and energy research centers. The main objective was to thermally evaluate a new roofing technology utilizing amorphous silicon PV laminates integrated with the metal roof panels. In order to mitigate thermal bridging and reduce roof-generated thermal loads, this novel roof/attic assembly contained a phase change material (PCM) heat sink, a ventilated air cavity over the roof deck, and thermal insulation with an integrated reflective surface. During winter, the experimental roof was expected to work as a passive solar collector storing solar heat absorbed during the day, and increasing overall attic air temperature during the night. During summer, the PCM was expected to act as a heat sink, reducing the heat gained by the attic and consequently, lowering the building cooling-loads. In this paper, field thermal performance data of the experimental PV-PCM roof/attic system are presented and discussed. Performance of the PV-PCM roof/attic is evaluated by comparing it to a control asphalt shingle roof. The test results showed about 30% heating and 50% cooling load reductions are possible with the experimental roof configuration.
机译:数十年来,住宅和商业屋顶一直被认为是安装集成太阳能系统的主要场所。在美国东田纳西州的气候条件下,2009/2010年期间,由代表金属建筑协会(MCA)的研究小组以及建筑保温公司,光伏(PV)制造商和能源研究中心组成的联盟对太阳能屋顶进行了测试。主要目标是对与金属屋顶面板集成在一起的非晶硅PV层压板进行热评估新的屋顶技术。为了减轻热桥并减少屋顶产生的热负荷,这种新颖的屋顶/阁楼组件包含相变材料(PCM)散热器,屋顶平台上方的通风气孔以及带有集成反射面的隔热层。在冬季,该实验性屋顶有望用作被动式太阳能收集器,储存白天吸收的太阳热量,并在夜间增加整体阁楼空气温度。在夏季,PCM被期望用作散热器,减少阁楼获得的热量,从而降低建筑物的冷却负荷。本文介绍并讨论了实验性PV-PCM屋顶/阁楼系统的现场热性能数据。通过将PV-PCM屋顶/阁楼与控制沥青瓦的屋顶进行比较来评估其性能。测试结果表明,使用实验车顶配置可以降低大约30%的热量,并减少50%的冷却负荷。

著录项

  • 来源
    《Solar Energy》 |2012年第9期|p.2504-2514|共11页
  • 作者单位

    Fraunhofer Center for Sustainable Energy, Cambridge, MA, USA;

    Oak Ridge National Laboratory, 1 Bethel Valley Road, Oak Ridge, TN 37831, USA;

    Oak Ridge National Laboratory, 1 Bethel Valley Road, Oak Ridge, TN 37831, USA;

    Metal Construction Association, Glenview, IL, USA;

  • 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

    building energy; phase change material; thermal insulation; building-integrated PV; metal roofs;

    机译:建筑能源;相变材料保温建筑一体化光伏;金属屋顶;
  • 入库时间 2022-08-18 00:25:55

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