首页> 外文会议>Symposium on roofing research and standards development >Dual Barrier Protected Membrane Roof Assemblies
【24h】

Dual Barrier Protected Membrane Roof Assemblies

机译:双栅栏保护膜车顶组件

获取原文

摘要

Durable roof design is accomplished through the selection of proven high performance materials that are detailed to accepted standards and assembled by skilled tradespeople. Leak prevention is a high concern of building owners that can be addressed by protected membrane dual barrier roofs. The case studies herein illustrate the improvement of the membrane and insulation. Typically, roofing membranes are generally the only barrier for managing moisture (rain, vapor pressure, air movement) through a building's roof. The position of the insulation is also an important consideration because insulation on the membrane's exterior protects it from thermal shock and generally extends the roof membrane's service life. Largely for this reason, protected roof membranes have been recognized for their superior performance over that of conventional roofs because the insulation protects the primary roofing membrane from wide temperature fluctuations, solar radiation, and foot traffic over the roof membrane. The concept of dual barrier roofing simply includes (a) designing a new roof assembly to include at least one "extra" layer of moisture protection or (b) simply designing the standard existing roof components to resist the elements in order to further improve the performance of a protected roof assembly. Case studies are presented that summarize the physical attributes for dual barrier roofing, both in new construction and for roof replacement/renewal projects. Measured performance comparisons indicate that a dual barrier protected membrane roof can be on the order of 10 % to 20 % more thermally efficient that a typical protected membrane [Tobiasson, W., and Richard, J., "Moisture Gain and Its Thermal Consequence for Common Roof Insulations," NRCA Fifth Conference on Roofing Technology, US Army Cold Regions Research & Engineering Laboratory, Gaithersburg, Maryland, April 1979; Beech, J. C, and Saunders, G. K., "The Performance of Lightweight Inverted Flat Roofs, Building Research Establishment," NRCA Second International Symposium on Roofing Technology, Princes Risborough Laboratory, Buckingshamshire, United Kingdom, September 1985]. Additional performance and service life benefits are also summarized.
机译:耐用的屋顶设计是通过选择经过验证的高性能材料来完成的,这些材料按照公认的标准进行了详细说明,并由熟练的技术人员进行组装。防止泄漏是建筑物业主的高度关注,可以通过保护膜双屏障屋顶解决。本文的案例研究说明了隔膜和绝缘材料的改进。通常,屋面膜通常是用于控制通过建筑物屋顶的水分(雨水,蒸气压,空气流动)的唯一屏障。隔热层的位置也是一个重要的考虑因素,因为薄膜外部的隔热层可保护薄膜免受热冲击,并通常会延长车顶薄膜的使用寿命。很大程度上由于这个原因,受保护的屋面膜比常规屋面膜具有优越的性能,因此得到认可,因为隔热材料可以保护主屋面膜不受温度波动大,太阳辐射和屋面膜上的人流量的影响。双障屋面的概念仅包括(a)设计一种新的屋面组件,以包括至少一层“额外”的防潮层,或(b)简单地设计现有的标准屋面组件以抵抗这些元素,从而进一步提高性能受保护的屋顶组件的一部分。提出了一些案例研究,总结了新建筑和屋顶更换/更新项目中双障屋面的物理属性。实测的性能比较表明,双阻隔保护膜顶板的热效率比典型的保护膜要高10%到20%[Tobiasson,W.和Richard,J.,“湿气的增益及其热影响。通用屋顶隔热材料,” NRCA第五次屋顶技术会议,美国陆军寒冷地区研究与工程实验室,马里兰州,盖瑟斯堡,1979年4月; Beech,J.C。和Saunders,G.K。,“轻型倒置平屋顶的性能,建筑研究机构,” NRCA第二届国际屋顶技术研讨会,英国白金汉郡,里斯伯勒王子实验室,1985年9月。还总结了其他性能和使用寿命优势。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号