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The impact of convective vapour transport on the hygrothermal risk of the internal insulation of post-war lightweight prefab housing

机译:对流蒸汽传输对战后轻型预制房屋内部隔热的潮热风险的影响

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Interior insulation is being applied in dwellings constructed with the 'Airey' system, a post-war prefab construction system which has recently been gaining heritage significance recognition. It's well-known that applying internal insulation in historic buildings may result in interstitial condensation, surface condensation, mould growth and decay. A review of literature on hygrothermal performance assessment of internal insulation of historic buildings is presented. The results show a strong focus on buildings constructed with solid masonry walls; an evaluation of construction types similar to the Airey system remains absent. The methods that have commonly been applied - being a 1D or 2D simulation of the envelope, focussing on vapour transport through diffusion - were developed to address the hygrothermal behaviour of solid masonry walls. These may not be suitable to identify hygrothermal risks in the Airey system, which is lightweight and has many air cavities. A method for hygrothermal performance assessment that is tailored to these specific characteristics of the Airey system is proposed, combining a whole building HAM-model with a coupled 3D heat transfer model of the construction details. The calibration of the HAM-model to on-site measurements demonstrates the importance of modelling convective vapour transport, specifically as it relates to air leakage through the vapour barrier. The results highlight the importance of accounting for convection in hygrothermal assessments and indicate that simulating a vapour barrier as being installed with perfect airtightness may lead to unrealistic outcomes. Moreover, the results demonstrate the need to further develop the understanding of hygrothermal risks associated with applying internal insulation to non-solid walls, and to adapt the methodology of hygrothermal performance assessments in order to do so. (C) 2019 The Authors. Published by Elsevier B.V.
机译:室内保温材料正在用“ Airey”系统建造的住宅中应用,“ Airey”系统是战后的预制建筑系统,最近已经获得了传统意义上的认可。众所周知,在历史建筑中使用内部隔热材料可能会导致间隙凝结,表面凝结,霉菌生长和腐烂。介绍了有关历史建筑内部隔热的湿热性能评估的文献综述。结果表明,重点关注具有坚固砌体墙的建筑物。仍然缺乏类似于Airey系统的建筑类型评估。为了解决固体砌体墙的湿热特性,开发了通常采用的方法-对包络进行1D或2D模拟,着重于通过扩散进行的蒸汽传输。这些可能不适合识别Airey系统中的湿热风险,该系统重量轻且有很多气孔。提出了一种适合Airey系统这些特定特征的湿热性能评估方法,将整个建筑HAM模型与建筑细节的耦合3D传热模型相结合。 HAM模型到现场测量的校准证明了对流蒸汽传输进行建模的重要性,特别是因为它涉及通过蒸汽屏障的空气泄漏。结果突出了在湿热评估中考虑对流的重要性,并表明模拟安装有理想气密性的防潮层可能会导致不切实际的结果。此外,结果表明有必要进一步发展与将隔热材料应用于非固体墙体有关的湿热风险的认识,并适应湿热性能评估的方法。 (C)2019作者。由Elsevier B.V.发布

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