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Base isolation of heavy non-structural monolithic objects at the top of a masonry monumental construction

机译:砌体纪念性建筑顶部的重型非结构整体物件的基础隔离

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The present paper deals with the relevant topic of seismic protection of heavy non-structural monolithic objects, which are usually placed at the top of masonry monumental constructions for mainly decorative purposes, like pinnacles and heavy artwork. Even if, after seismic events, most of the losses are due to structural collapse of buildings and other structural systems, heavy non-structural objects of the kind considered in the present work represent a serious potential hazard for both human lives and cultural heritage. During earthquakes, such objects undergo large base accelerations, which may eventually cause their collapse by rocking and overturning. In the present contribution, the seismic protection of eleven ancient marble decorative pinnacles placed at the top of the three-arched masonry city gate in Ferrara (Italy) is illustrated as a case study. In particular, a method for assessing the safety level of these systems under the action of seismic excitations is outlined and base isolation is proposed as a very promising technique for the seismic retrofit of heavy non-structural monolithic objects. The dynamical response to seismic actions of the underlying masonry construction is assessed through time-history dynamic analyses and the amplification of the ground accelerations at the base of the pinnacles is evaluated. Furthermore, the pinnacles are modeled as rigid bodies and their rocking behavior under base excitations is discussed. Finally, the effectiveness of the proposed base isolation system is assessed through non-linear dynamic numerical simulations.
机译:本文讨论有关重型非结构性整体物件的地震防护的相关主题,这些物件通常置于石碑纪念性建筑的顶部,主要用于装饰目的,例如尖峰和重型艺术品。即使在地震事件发生后,大部分损失是由于建筑物和其他结构系统的结构倒塌造成的,但本工作中考虑的那种非结构性重物对人类生命和文化遗产都构成了严重的潜在危害。在地震期间,此类物体承受较大的基础加速度,最终可能会因摇摆和倾覆而导致其坍塌。在本文中,以案例研究为例,说明了位于费拉拉(意大利)三拱砌体城门顶部的十一个古代大理石装饰尖峰的抗震保护。尤其是,概述了一种在地震激励作用下评估这些系统安全性的方法,并提出了基础隔离作为重载非结构性整块物体抗震改造的非常有前途的技术。通过时程动态分析评估了对底层砌体结构对地震作用的动力响应,并评估了尖峰底部地面加速度的放大率。此外,将尖峰建模为刚体,并讨论了其在基础激励下的摇摆行为。最后,通过非线性动态数值模拟评估了所提出的基础隔离系统的有效性。

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