首页> 外文会议>The 2003 International Solar Energy Conference Mar 15-18, 2003 Kohala Coast, Hawall >THERMAL PERFORMANCE OF UNVENTED ATTICS IN HOT-DRY CLIMATES: RESULTS FROM BUILDING AMERICA
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THERMAL PERFORMANCE OF UNVENTED ATTICS IN HOT-DRY CLIMATES: RESULTS FROM BUILDING AMERICA

机译:干热气候中顶气孔的热性能:美国建筑的结果

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As unvented attics have become a more common design feature implemented by Building America partners in hot-dry climates of the United States, more attention has been focused on how this approach affects heating and cooling energy consumption. By eliminating the ridge and eave vents that circulate outside air through the attic in most new houses and by moving the insulation from the attic floor to the underside of the roof, an unvented attic becomes a semiconditioned space, creating a more benign environment for space conditioning ducts. An energy trade-off is made, however, because the additional surface area (and perhaps reduced insulation thickness) increases the building loss coefficient. Other advantages and disadvantages, unrelated to energy, must also be considered. This paper addresses the energy-related effects of unvented attics in hot-dry climates based on field testing and analysis conducted by the National Renewable Energy Laboratory.
机译:由于无通风的阁楼已成为美国建筑协会合作伙伴在美国炎热气候中实施的更为普遍的设计功能,因此,更多的注意力集中在这种方法如何影响供暖和制冷能耗上。通过消除大多数新房中通过阁楼流通外界空气的屋脊和屋檐通风孔,并将隔热层从阁楼地板移至屋顶下侧,无通风的阁楼成为半封闭的空间,从而为空间调节创造了一个更加温和的环境管道。但是,需要进行能量折衷,因为额外的表面积(可能减小了隔热层的厚度)会增加建筑物的损耗系数。还必须考虑与能量无关的其他优点和缺点。本文根据国家可再生能源实验室进行的现场测试和分析,探讨了干燥通风的阁楼在炎热气候中与能源相关的影响。

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