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Characterization of the Dynamic Behavior of Masonry Structural Elements with Damage

机译:具有损伤的砌体结构元件动力特性的表征

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In this paper, the nonlinear static and dynamic response of simple two-dimensional masonry structural elements is investigated, considering a slender and a squat wall. A nonlocal isotropic damage model is adopted and implemented in a two-dimensional nine-node finite element to perform the numerical analyses. To characterize the limit load and the post-peak behavior of the considered structures, the pushover curves are evaluated and compared with the experimental results for the squat wall. With the aim of analyzing the influence of the evolution of the damage mechanism on the dynamic response of masonry structures, the frequency response curves of the slender wall undergoing degrading processes are evaluated and compared with the elastic response. Finally, the dynamic response of the slender wall to natural earthquakes is computed to point out the influence of the damage.
机译:在本文中,考虑了细长墙和下蹲墙,研究了简单二维砌体结构元件的非线性静动力响应。采用非局部各向同性损伤模型,并在二维九节点有限元中实施该模型,以进行数值分析。为了表征所考虑结构的极限载荷和峰后行为,评估了下垂曲线并将其与下蹲墙的实验结果进行了比较。为了分析破坏机理的演变对砌体结构动力响应的影响,评估了细长壁经历退化过程的频率响应曲线,并将其与弹性响应进行了比较。最后,计算了细长壁对自然地震的动力响应,指出了破坏的影响。

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