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Two-dimensional hygrothermal modelling of masonry walls accounting for imperfections at the masonry joint

机译:石工墙的二维湿热建模占砌体关节缺陷

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Hygrothermal models are important tool for assessing the risk of moisture-related decay mechanisms such as freeze-thaw in historic masonry structures. There are several sources of uncertainty when modelling masonry, related to material properties, boundary conditions, quality of construction and twodimensional interactions between mortar and unit. This paper examines one potential source of uncertainty; the imperfect nature of mortar joints. This interface may feature hairline cracks or imperfect bonds which can be modelled as a fracture. This 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 measured properties of the bulk material were modelled. A detailed methodology for modelling the interface as a fracture is presented including material property definition. Two-dimensional DELPHIN models of masonry walls were created to simulate this interaction with varying levels of fracture widths (apertures). A series of hygrothermal simulations were performed to demonstrate change in moisture profile from the baseline condition. A significant increase in moisture absorption was found. This was dependent on aperture size, material and the relative size of the masonry modelled.
机译:湿热模型是评估与历史砌体结构中的水分相关腐烂机制如冻融有关的风险的重要工具。在建模砌体时有几种不确定性来源,与材料特性,边界条件,砂浆和单位之间的结构和三维相互作用有关。本文审查了一个潜在的不确定性来源;砂浆关节的不完美性质。该界面可以具有毛线裂缝或缺乏粘合剂,其可以被建模为骨折。这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,如果模拟散装材料的测量性质,则壁系统的“有效”液体传输将是不同的。提出了一种用于对界面进行建模作为骨折的详细方法,包括材料属性定义。产生二维砖石墙的模型,以模拟这种与不同水平的裂缝宽度(孔)的相互作用。进行了一系列湿热模拟,以证明基线条件的水分曲线变化。发现了湿度吸收的显着增加。这取决于孔径尺寸,材料和模拟模型的相对尺寸。

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