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Discrete element modeling of masonry structures: Validation and application

机译:砌体结构离散元建模:验证与应用

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摘要

The failure mechanism and maximum collapse load of masonry structures may change significantly under static and dynamic excitations depending on their internal arrangement and material properties. Hence, it is important to understand correctly the nonlinear behavior of masonry structures in order to adequately assess their safety and propose efficient strengthening measures, especially for historical constructions. The discrete element method (DEM) can play an important role in these studies. This paper discusses possible collapse mechanisms and provides a set of parametric analyses by considering the influence of material properties and cross section morphologies on the out of plane strength of masonry walls. Detailed modeling of masonry structures may affect their mechanical strength and displacement capacity. In particular, the structural behavior of stacked and rubble masonry walls, portal frames, simple combinations of masonry piers and arches, and a real structure is discussed using DEM. It is further demonstrated that this structural analysis tool allows obtaining excellent results in the description of the nonlinear behavior of masonry structures.
机译:在静态和动态激励下,砌体结构的破坏机理和最大倒塌载荷可能会根据其内部布置和材料特性而发生显着变化。因此,重要的是要正确理解砌体结构的非线性行为,以便充分评估其安全性并提出有效的加固措施,尤其是对于历史建筑。离散元方法(DEM)在这些研究中可以发挥重要作用。本文讨论了可能的坍塌机制,并通过考虑材料特性和横截面形态对砌体墙面外强度的影响提供了一组参数分析。砌体结构的详细建模可能会影响其机械强度和位移能力。特别是,使用DEM讨论了堆叠的瓦砾砌体墙,门框,砌体墩和拱的简单组合以及真实结构的结构行为。进一步证明,这种结构分析工具可以在描述砌体结构的非线性行为时获得出色的结果。

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