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Hygric properties of porous building materials (II): Analysis of temperature influence

机译:多孔建筑材料的Hygric特性(II):温度影响分析

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Hygric properties are indispensable input parameters for the hygrothermal analysis of building envelopes and indoor environments. The reliability of all analysis results depends largely on the accuracy of these properties. Nevertheless, the influence of temperature on hygric properties is generally neglected, without adequate support though. This paper looks into this by performing comprehensive and systematic measurements on the hygric properties of autoclaved aerated concrete, calcium silicate board and ceramic brick in the temperature range of 10-40 degrees C. Our results are in line with theoretical predictions and previously reported measurements. In general, the hygric transport properties are more susceptible to temperature changes than the hygric storage properties. Specifically, the influence of temperature on adsorption isotherms is material-dependent but overall limited. Neither the capillary moisture content nor the saturation moisture content suffers from any obvious temperature impact. The vapor permeability is neither significantly affected by temperature except for strongly hygroscopic materials in the high RH range. The capillary absorption coefficient on the other hand has strong and predictable temperature dependence. (C) 2016 Elsevier Ltd. All rights reserved.
机译:湿气特性是建筑围护结构和室内环境湿热分析必不可少的输入参数。所有分析结果的可靠性在很大程度上取决于这些属性的准确性。然而,尽管没有足够的支持,但温度对水凝胶性质的影响通常被忽略了。本文通过在10-40摄氏度的温度范围内对高压灭菌的加气混凝土,硅酸钙板和陶瓷砖的保湿性能进行全面而系统的测量来研究这一问题。我们的结果与理论预测和先前报道的测量结果一致。一般而言,水合运输特性比水合存储特性更容易受到温度变化的影响。具体而言,温度对吸附等温线的影响取决于材料,但总体上受到限制。毛细管水分含量和饱和水分含量都不会受到任何明显的温度影响。除了在高RH范围内具有强吸湿性的材料外,蒸汽渗透率均不受温度的显着影响。另一方面,毛细管吸收系数具有强烈且可预测的温度依赖性。 (C)2016 Elsevier Ltd.保留所有权利。

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