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Hygrothermal behaviour of flat cool and standard roofs on residential and commercial buildings in North America

机译:北美住宅和商业建筑的平凉屋顶和标准屋顶的湿热行为

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Installing roofs with high solar reflectance and high thermal emittance, known as "Cool roofs," are becoming increasingly popular because of their cooling energy saving potentials, cost effectiveness and sustainability. Lower surface temperature of cool roofs may affect the hygrothermal performance of roofing systems and hence their performance should be characterized in different climates. We simulated the performance of several roofing systems including: typical, smart, and self-drying roofs for residential and commercial buildings. In addition, we proposed vented roofs with smart vapor retarders in very cold climate regions across North America. We also developed an algorithm to investigate the effect of snow on hygrothermal behaviour of dark and white roofs. Results showed that office buildings never experience moisture accumulation problems during the simulation period (5 years). In residential buildings, white typical roofing compositions with conventional vapor retarders experienced moisture accumulation problems in very cold cities such as Anchorage, Edmonton and St. John's. Using smart vapor retarder (smart roofs) or self-drying roofs helped to decrease risk of moisture accumulation. In these climates, adding a ventilated air space along with using smart vapor retarder eliminated the risk of moisture accumulation and prevented excessive OSB (oriented strand board) moisture content. The risk of mold growth was significantly lowered in vented smart roofs. Simulating the effect of snow on the roofs for Anchorage, Montreal and Chicago showed that the hygrothermal performances of white roofs improved with snow accumulation on the roof.
机译:具有高的太阳能反射率和高的热辐射率的屋顶(称为“凉爽屋顶”)的安装因其节省冷却能源的潜力,成本效益和可持续性而变得越来越受欢迎。凉爽屋顶的较低表面温度可能会影响屋顶系统的湿热性能,因此应在不同气候下表征其性能。我们模拟了几种屋面系统的性能,包括:住宅和商业建筑的典型,智能和自干燥屋顶。此外,我们在北美非常寒冷的气候地区提出了带有智能防潮剂的通风屋顶。我们还开发了一种算法来研究雪对深色和白色屋顶的湿热行为的影响。结果表明,在模拟期间(5年)内,办公楼从未遇到过水分积累问题。在住宅建筑中,带有常规防潮剂的白色典型屋顶组合物在极冷的城市(例如安克雷奇,埃德蒙顿和圣约翰)遇到湿气积聚问题。使用智能防潮剂(智能屋顶)或自干屋顶有助于降低水分积聚的风险。在这种气候下,增加通风空间以及使用智能型蒸气阻滞剂可消除水分积聚的风险,并防止OSB(定向刨花板)水分含量过多。在通风的智能屋顶中,霉菌生长的风险大大降低。模拟雪对安克雷奇,蒙特利尔和芝加哥的屋顶的影响,结果表明,随着屋顶积雪的增加,白色屋顶的湿热性能得以改善。

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