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Estimation of mould growth levels on rendered facades based on surface relative humidity and surface temperature measurements

机译:根据表面相对湿度和表面温度测量值估算渲染外墙上的霉菌生长水平

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Many facades made with thin rendering on thermal insulation have problems with biological growth. In this study, surface temperature and surface relative humidity were monitored over a 20-month period on test house facades with different constructions (thermal inertia), surface colour and compass directions. This data were used to test three theoretical indices of biological growth with the aim of indicating the potential of mould growth on different types of rendered facades. The results show that thin renderings on thermal insulation have significantly higher surface humidities compared to facade constructions with higher thermal inertia, and therefore have a higher potential for mould growth. The colour is the most important factor for the surface humidity levels on south-facing facades (in the northern hemisphere) as darker surfaces absorb more solar radiation and therefore have a higher average temperature. On a north-facing facade the heat storage capability of the facade and its effect on the surface temperature is most important.
机译:在隔热层上用薄抹灰制成的许多外墙在生物生长方面存在问题。在这项研究中,在具有不同结构(热惯性),表面颜色和罗盘方向的测试房屋立面上,在20个月的时间内对表面温度和表面相对湿度进行了监测。该数据用于测试生物生长的三个理论指标,目的是指示在不同类型的外墙立面上霉菌生长的潜力。结果表明,与具有较高热惯性的幕墙结构相比,隔热层上的薄抹灰具有显着更高的表面湿度,因此具有较高的发霉潜力。颜色是影响朝南外墙(北半球)表面湿度水平的最重要因素,因为较暗的表面会吸收更多的太阳辐射,因此平均温度更高。在朝北的立面上,立面的储热能力及其对表面温度的影响最为重要。

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