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首页> 外文期刊>Journal of building physics >A methodology for hygrothermal modelling of imperfect masonry interfaces
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A methodology for hygrothermal modelling of imperfect masonry interfaces

机译:不完美砌体界面湿热建模的方法

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Hygrothermal models are important tools for assessing the risk of moisture-related decay mechanisms which can compromise structural integrity, loss of architectural features and material. There are several sources of uncertainty when modelling masonry, related to material properties, boundary conditions, quality of construction and two-dimensional interactions between mortar and unit This paper examines the uncertainty at the mortar-unit interface with imperfections such as hairline cracks or imperfect contact conditions. These imperfections will alter the rate of liquid transport into and out of the wall and impede the liquid transport between mortar and masonry unit This means that the effective liquid transport of the wall system will be different then if only properties of the bulk material were modelled. A detailed methodology for modelling this interface as a fracture is presented including definition of material properties for the fracture. The modelling methodology considers the combined effect of both the interface resistance across the mortar-unit interface and increase liquid transport in parallel to the interface, and is generalisable to various combinations of materials, geometries and fracture apertures. Two-dimensional DELPHIN models of a clay brick/cement-mortar masonry wall were created to simulate this interaction. The models were exposed to different boundary conditions to simulate wetting, drying and natural cyclic weather conditions. The results of these simulations were compared to a baseline model where the fracture model was not included. The presence of fractures increased the rate of absorption in the wetting phase and an increased rate of desorption in the drying phase. Under cyclic conditions, the result was higher peak moisture contents after rain events compared to baseline and lower moisture contents after long periods of drying. This demonstrated that detailed modelling of imperfections at the mortar-unit interface can have a definitive influence on results and conclusions from hygrothermal simulations.
机译:湿热模型是评估水分相关腐烂机制风险的重要工具,这可能会损害结构完整性,损失建筑特征和材料。在建模砌体时有几种不确定性来源,有关的材料性质,边界条件,砂浆和单位之间的施工质量和二维相互作用本文审查了迫击炮单元接口的不确定性,如透明线裂缝或不完美接触状况。这些缺陷将改变液体输送到墙壁的速率,并妨碍砂浆和砌体单元之间的液体输送,这意味着如果仅建模散装材料的性质,则壁系统的有效液体输送将是不同的。提出了一种用于将该界面进行建模作为骨折的详细方法,包括用于骨折的材料性质的定义。建模方法考虑了砂浆单元界面上的界面电阻的综合效果,并将液体传输增加到界面,并且是一种材料,几何形状和骨折孔的各种组合。粘土砖/水泥砂浆砌体墙的二维Delphin模型是为了模拟这种相互作用。该模型暴露于不同的边界条件,以模拟润湿,干燥和天然循环天气条件。将这些模拟的结果与基线模型进行了比较,其中不包括裂缝模型。裂缝的存在增加了润湿相中的吸收率和干燥阶段的解吸速率增加。在循环条件下,与基线和长时间干燥后的基线和较低的水分含量相比,雨事件后的峰值水分含量较高。这证明了迫击炮单元界面处的缺陷的详细建模可以对湿热模拟的结果和结论产生明确的影响。

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