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Numerical modelling of cracks in masonry walls due to thermal movements in an overlying slab

机译:楼板热运动引起砌体墙体裂缝的数值模拟

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This paper describes a numerical modelling exercise employed to understand the propagation of cracks in masonry walls under a time varying thermal load in an overlying roof slab. A structural-thermal coupled non-linear analysis was used to predict locations, directions and propagation of cracks. A commercially available finite element code ANSYS was used to construct the model. It is shown that masonry walls under a concrete slab that is exposed to solar radiation can experience cracking, and that this cracking can be predicted based on the features of the wall - i.e. whether the wall is load bearing or framed -and the presence of openings and lintels. The results were compared with the information obtained from a survey of buildings having cracks and also with a few physical models. It was found that the pattern (orientation and location) of cracking depends significantly on whether the wall is load bearing or framed by the reinforced concrete elements. Cracking around openings is very likely, irrespective of the structural form of the wall. The use of a continuous lintel will not be able to remedy this cracking, but a limited separation of the wall from the frame at roof level will.
机译:本文介绍了一种数值建模练习,该练习用于了解在随时间变化的热应力作用下,在屋顶砖中砌体墙体中裂缝的传播。结构热耦合非线性分析用于预测裂纹的位置,方向和传播。使用市售的有限元代码ANSYS来构建模型。结果表明,暴露在太阳辐射下的混凝土板下的砌体墙会发生开裂,并且可以根据墙的特征(即墙是承重还是框架式)以及是否存在开口来预测开裂和门。将结果与从具有裂缝的建筑物的调查中获得的信息以及一些物理模型进行了比较。发现开裂的方式(方向和位置)在很大程度上取决于墙是承重墙还是被钢筋混凝土构件框住。无论墙壁的结构形式如何,开口周围都极有可能出现裂缝。使用连续的门将无法补救这种开裂,但在屋顶水平将墙壁与框架的分隔距离有限。

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