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A coupled multiphase model for hygrothermal analysis of masonry structures and prediction of stress induced by salt crystallization

机译:砌体结构湿热分析和盐结晶引起的应力预测的多相耦合模型

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Heat, moisture and salt transport combined with salt crystallization strongly influence the durability of porous construction materials like masonry. With this in mind, this paper presents a novel coupled multiphase model for hygrothermal analysis of masonry structures and effective prediction of stress induced by salt crystallization. Firstly, the model is calibrated through experimental data. In particular, water and brine uptake and evaporation tests on a single brick and on a simple masonry column are reproduced. Then, the model is used to simulate the results of an extensive experimental campaign carried out on a masonry wall exposed to weather conditions for 2 years. Very good agreement between the model predictions and the experimental evidence is obtained, demonstrating the effectiveness of the proposed approach.
机译:热量,水分和盐分的传输以及盐分的结晶强烈地影响了多孔建筑材料(如砖石)的耐久性。考虑到这一点,本文提出了一种新颖的耦合多相模型,用于砌体结构的湿热分析和有效预测盐结晶引起的应力。首先,通过实验数据对模型进行校准。特别是,在单个砖块和简单砖石柱上进行了水和盐水的吸收和蒸发测试。然后,该模型用于模拟在暴露于天气条件下两年的砌体墙上进行的广泛实验活动的结果。在模型预测和实验证据之间获得了很好的一致性,证明了所提出方法的有效性。

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