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The comparative in situ hygrothermal performance of Hemp and Stone Wool insulations in vapour open timber frame wall panels

机译:大麻和石棉保温材料在蒸气开放式木框架墙板上的原位湿热性能比较

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摘要

An in situ experiment in a full scale timber frame test building was carried out to compare the hygrothermal performance of Hemp and Stone Wool insulations of identical thermal conductivity. Hemp and Stone Wool insulations were installed in timber frame wall panels without vapour barrier. The comparison was made in terms of heat transfer properties, likelihood of mould growth and condensation. Step changes in internal relative humidity were performed to explore the effect of high and normal internal moisture load on the wall panels. No significant difference between the average equivalent thermal transmittance (U-values) of the panels incorporating Hemp and Stone Wool insulations was observed. The average equivalent U-values of the panels were closer to the calculated U-values of the panels based on the manufacturers' declared thermal conductivity of Hemp and Stone Wool insulations. It was observed that the placement of heat flux sensor along the depth of the insulation had significant influence on the measured equivalent U-value of the panels during high internal moisture load. The frequency and likelihood of condensation was higher in the interface of Stone Wool and Oriented Strand Board (OSB). In terms of the parametric assessment of mould germination potential, relative humidity, temperature and exposure conditions in the insulation-OSB interfaces were found to be favourable to germination of mould spore. However, when the insulations were dismantled, no mould was visually detected.
机译:在一个完整的木结构试验建筑中进行了现场试验,比较了导热率相同的大麻和石棉隔热材料的吸湿性能。大麻和石棉隔热材料安装在没有蒸气屏障的木结构墙板上。根据传热性能,霉菌生长和凝结的可能性进行了比较。进行内部相对湿度的逐步变化,以探索高和正常内部水分负荷对墙板的影响。在包含麻和石棉隔热材料的面板的平均等效热透射率(U值)之间未观察到显着差异。面板的平均等效U值更接近于根据制造商宣称的大麻和石棉隔热材料的导热系数计算得出的面板U值。观察到,在高内部水分负荷下,沿着绝缘体深度的热通量传感器的放置对面板的等效U值的测量有重大影响。在石棉和定向绞线板(OSB)的界面中,凝结的频率和可能性更高。根据霉菌萌发潜力的参数评估,发现绝缘-OSB界面中的相对湿度,温度和暴露条件有利于霉菌孢子的萌发。但是,当拆除绝缘材料时,在视觉上没有发现霉菌。

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