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Optimizing Single-Ply Low-Slope Roofing Assemblies for Insulation Value

机译:优化单层低坡度屋面组件的隔热值

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Low-slope roofing assemblies can be designed with a range of insulation and membrane-attachment methods. Various building and energy codes appear to assume fastening methods to have an insignificant effect on insulation value, meaning that design and effective values are essentially the same. Recent studies showing that mechanically fastened systems could have very significant loss of insulation value are reviewed. This study uses thermal losses shown in those recent studies and examines the practical effect on various roof assemblies. Fully mechanically attached systems are compared with those that use adhesive attachment for the membrane and part of the insulation assembly. The thermal losses are shown to be significant and are presented in terms of the economic loss of the insulation. The cost of lost R-value is contrasted with the cost of attachment. A system based on a first layer of mechanically attached insulation with a second layer of insulation and membrane being adhered is shown to be very similar in cost, once the lost R-value is included. Finally, the loss in energy efficiency is calculated over a 15-year time frame. When total system costs include fastening as well as energy efficiency, then mechanically attached systems are essentially equivalent to some fully adhered approaches. Overall, the work challenges the code assumption that fastening methods do not significantly impact insulation efficiency. Furthermore, the results have implications for any analysis that considers such factors as carbon footprint, since building-energy efficiencies might be lower than currently assumed.
机译:低坡度屋面组件可采用多种隔热和膜片连接方法进行设计。各种建筑和能源法规似乎都假定采用紧固方法对绝缘值的影响很小,这意味着设计值和有效值基本相同。最近的研究表明,机械固定的系统可能会损失非常多的绝缘值。这项研究使用了最近的研究中显示的热损失,并研究了对各种屋顶组件的实际影响。将完全机械连接的系统与对薄膜和绝缘组件的一部分使用粘合剂连接的系统进行了比较。热损失被证明是显着的,并且以绝缘的经济损失来表示。丢失R值的成本与附着成本形成对比。一旦包括损失的R值,基于机械附着的绝缘层的第一层以及粘附的绝缘层和第二层的系统显示出非常相似的成本。最后,在15年的时间范围内计算出能效损失。当总的系统成本包括固定性和能源效率时,那么机械连接的系统实质上等同于某些完全粘合的方法。总的来说,这项工作挑战了代码假设,即紧固方法不会显着影响绝缘效率。此外,该结果对于考虑诸如碳足迹之类的因素的任何分析都具有影响,因为建筑能源效率可能低于当前假设的水平。

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