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Hygrothermal assessment of diffusion open insulation systems for interior retrofitting of solid masonry walls

机译:固体砌体墙体室内改装扩散开放式绝缘系统的湿热评估

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摘要

The present project investigated the hygrothermal performance and risk of mould growth in solid masonry walls fitted with three diffusion-open capillary active interior insulation systems installed in containers with a controlled indoor climate. The project was carried out as a large experimental study in two 40-feet reefer containers reconfigured with 24 holes (1 x 2 m), in which solid masonry walls with embedded wooden elements were installed. The focus of the study was on the conditions in the interface between the masonry and the interior insulation, and in the embedded wooden elements. The effect of exterior hydrophobisation was also investigated. Relative humidity and temperature were measured at several locations in the test walls over a period of four years. The findings indicate that exposed walls with interior insulation and high indoor RH performed poorly in terms of the risk of mould growth. Combined with exterior hydrophobisation against driving rain, the semi diffusion-tight insulation system performed better than the highly diffusion-open systems. Good performance was observed for the semi diffusion-tight polyurethane foam insulation with calcium silicate channels combined with exterior hydrophobisation. The effect of hydrophobisation varied with the orientation. Mould observations found no growth in the interface in most walls, probably because the high alkalinity of the adhesive mortars and scarce nutrition prevented growth. Growth was however found in some walls having low alkalinity and possibly available nutrition. Little correlation was found between on-site and modelled mould growth.
机译:本项目调查了固体砌体墙壁湿热性能和模具生长风险,其安装在具有受控室内气候的容器中安装的三个扩散开口毛细管活动内部绝缘系统。该项目是在两个40英尺的冷藏容器中进行的大型实验研究,其中24孔(1×2米)重新配置,其中安装了带嵌入式木元件的固体砌体墙壁。该研究的重点是砌体与内部绝缘之间的界面中的条件,以及嵌入式木制元件。还研究了外部疏水化的效果。在4年的时间内在测试壁的几个位置测量相对湿度和温度。结果表明,在模具生长的风险方面,具有内部绝缘和高室内RH的暴露壁。结合外部疏水化反对驾驶雨,半扩散密封绝缘系统比高扩散开放系统更好。对于硅酸钙通道的半扩散密封聚氨酯泡沫绝缘,观察到具有良好的性能,硅酸钙通道与外部疏水化结合。疏水化的效果随着方向而变化。模具观察发现在大多数壁中的界面中没有增长,可能是因为粘合剂迫击炮的高碱度和稀缺营养阻止了生长。然而,在一些具有低碱度和可能的营养的墙壁中发现的生长。在现场和建模模具生长之间发现了很少的相关性。

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