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Condensation And Moisture Transport In Cold Roofs: Effects Of Roof Underlay

机译:寒冷屋顶的凝结和水分输送:屋顶垫层的影响

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摘要

Cold pitched roofs, with their form of construction situating insulation on a horizontal ceiling, are intrinsically vulnerable to condensation. This study reports the results derived from using a simulation package (Heat, Air and Moisture modelling tool, or HAM-Tools) to investigate the risk of condensation in cold pitched roofs in housing fitted with a vapour-permeable underlay (VPU) of known characteristics. In order to visualize the effect of the VPUs on moisture transfer, several scenarios were modelled, and compared with the results from a conventional bituminous felt with high resistance (200MNs/g, S_d = 40 m). The results indicate that ventilation is essential in the roof to reduce condensation. However, a sensitivity analysis proved that reducing the overall tightness of the ceiling and using lower-resistance VPUs would help in controlling condensation formation in the roof. To a large extent, the proposed characteristic performance of the VPU as predicted by manufacturers and some researchers may only be realistic if gaps in the ceiling are sealed completely during construction, which may be practically difficult given current construction practice.
机译:冷弯屋顶的结构形式将保温层放置在水平天花板上,本质上很容易凝结。这项研究报告了使用模拟程序包(热,空气和水分建模工具或HAM-Tools)得出的结果,该结果用于研究装有已知特性的可渗透蒸气的衬层(VPU)的房屋的冷弯屋顶中的凝结风险。为了可视化VPU对水分传递的影响,对几种情况进行了建模,并与具有高阻力(200MNs / g,S_d = 40 m)的传统沥青毡的结果进行了比较。结果表明,通风对于减少冷凝水至关重要。但是,敏感性分析证明,降低天花板的整体密封性并使用低电阻的VPU将有助于控制屋顶的冷凝水形成。在很大程度上,制造商和一些研究人员所预测的VPU的建议性能可能只有在天花板在施工期间完全密封天花板的情况下才是现实的,考虑到当前的施工实践,这可能实际上是困难的。

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