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Rocking and Kinematic Approaches for Rigid Block Analysis of Masonry Walls: State of the Art and Recent Developments

机译:砌体墙刚性块分析的摇摆学和运动学方法:最新进展和最新进展

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The assessment of the rocking and overturning response of rigid blocks to earthquakes is a complex task, due to its high sensitivity to the input motion, variations in geometry and dissipation issues. This paper presents a literature review dealing with classical and advanced approaches on rocking motion with particular reference to masonry walls characterized by a monolithic behavior. Firstly, the pioneering work of Housner based on the concept of the inverted pendulum is discussed in terms of the most significant parameters, i.e., the size and slenderness of the blocks, the coefficient of restitution and ground motion properties. Free and restrained rocking blocks are considered. Then, static force-based approaches and performance-based techniques, mostly based on limit analysis theory, are presented to highlight the importance of investigating the evolution of the rocking mechanisms by means of pushover curves characterized by negative stiffness. From a dynamic perspective, a review of probabilistic approaches is also presented, evaluating the cumulative probability of exceedance of any response level by considering different earthquake time histories. Some recent simplified approaches based on the critical rocking response and the worst-case scenario are illustrated, as well.
机译:刚性块对地震的摇摆和倾覆响应的评估是一项复杂的任务,因为它对输入运动,几何形状的变化和耗散问题具有很高的敏感性。本文介绍了有关摇摆运动的经典和高级方法的文献综述,特别是针对以整体行为为特征的砌体墙。首先,根据最重要的参数,即砌块的大小和细长度,恢复系数和地震动特性,讨论了基于倒立摆概念的Housner的开拓性工作。考虑自由和受约束的摇摆块。然后,提出了主要基于极限分析理论的基于静力的方法和基于性能的技术,以强调通过以负刚度为特征的下垂曲线研究摇摆机制演变的重要性。从动态的角度,还介绍了概率方法,通过考虑不同的地震时间历史记录,评估了任何响应水平超出的累积概率。还说明了一些基于临界摇摆响应和最坏情况的最近简化方法。

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