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FEM-DEM Modeling for Out-of-plane Loaded Masonry Panels: A Limit Analysis Approach

机译:平面外砖砌体面板的FEM-DEM建模:极限分析方法

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摘要

In this work the performances of the Discrete Element Method (DEM) applied to kinematic limit analyses of the out-of-plane behavior of masonry wall panels (with different textures) are investigated. A discrete model of masonry is proposed, which assumes that rigid blocks are connected by a mortar interface: this is ap-propriate for historical masonry, where mortar is much more deformable than blocks and joints thickness is negligible. Therefore blocks can be modeled as rigid bodies connected by zero thickness Mohr-Coulomb-type interfaces. The applied method is known as FEM/DEM, which combines finite and discrete element models. A comparison with well-known and meaningful examples presented by Giuffre has been carried out in order to validate this method for studying the behavior of masonry. For this purpose, 2D DEM models reproducing walls sections have been considered: they reproduce masonry walls with different staggered blocks, in particular stack bond and running bond patterns, subjected to lateral loads.
机译:在这项工作中,研究了离散元素方法(DEM)应用于对砖砌墙面板(具有不同纹理)的平面外行为进行运动极限分析的性能。提出了一种离散的砌体模型,该模型假定刚性砌块通过砂浆界面连接:这适用于历史砌筑,因为砌体比砌块更易变形,并且接缝厚度可忽略不计。因此,可以将块建模为通过零厚度Mohr-Coulomb型界面连接的刚体。应用的方法称为FEM / DEM,它结合了有限元模型和离散元模型。为了验证这种研究砌体性能的方法,已与Giuffre提出的著名且有意义的示例进行了比较。为此,已考虑使用2D DEM模型复制墙截面:它们复制具有不同交错砌块的砖石墙,特别是在承受侧向载荷的情况下,具有不同的交错砌块,尤其是堆叠粘结和连续粘结样式。

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