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Effectiveness of different base isolation systems for seismic protection: Numerical insights into an existing masonry bell tower

机译:不同基础隔离系统对地震防护的有效性:对现有砌体钟楼的数值分析

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Recent earthquakes in Italy have emphasized the high seismic vulnerability of historical masonry constructions and the need of effective retrofitting interventions. This paper investigates the possibility of improving the seismic performance of a historical masonry bell tower using different types of commercial isolators: High Damping Rubber Bearing (HDRB), Lead Rubber Bearing (LRB) and Friction Pendulum System (FPS) Isolator. Detailed three-dimensional (3D) finite element (FE) models are created to characterize the behavior of the three types of isolators. Then, an Abaqus User Element (UEL) is used to represent the 3D behavior of the isolators for global seismic analyses of isolated structures. The results of cyclic shear analyses show that the proposed UEL model can accurately predict the behavior obtained through detailed 3D FE models. Non-linear dynamic analyses are performed to investigate the seismic response of the historical masonry bell tower in the original and base-isolated configurations subjected to moderate-to-high seismic actions: moreover, the effects of near fault earthquakes are analyzed. The results obtained from the numerical simulations show that the HDRBs do not ensure an adequate seismic protection of the masonry bell tower in terms of damage patterns and top displacements. On the other hand, the LRBs and FPS isolators are very effective in reducing the earthquake effects on the masonry tower: residual displacements are negligible and the isolator displacements are limited. In case of near fault earthquakes, an isolation system with higher damping and larger dimension is required to reduce the drifts of the tower and to accommodate the large displacements of the isolators.
机译:意大利最近发生的地震强调了历史悠久的砖石建筑在地震中的高度脆弱性,并且需要有效的改造措施。本文研究了使用不同类型的商业隔离器来改善历史砌体钟楼的抗震性能的可能性:高阻尼橡胶轴承(HDRB),铅橡胶轴承(LRB)和摩擦摆系统(FPS)隔离器。创建了详细的三维(3D)有限元(FE)模型以表征三种隔离器的行为。然后,使用Abaqus用户元素(UEL)表示隔离器的3D行为,以对隔离结构进行整体地震分析。循环剪切分析的结果表明,所提出的UEL模型可以准确地预测通过详细的3D FE模型获得的行为。进行非线性动力分析,以研究历史砌体钟楼在受到中高地震作用的原始和基础隔离构造中的地震响应:此外,还分析了近断层地震的影响。从数值模拟获得的结果表明,HDRB在破坏模式和顶部位移方面不能确保砌体钟楼的足够地震防护。另一方面,LRB和FPS隔离器在减少地震对砌体塔的影响方面非常有效:残余位移可忽略不计,隔离器位移有限。在发生近断层地震的情况下,需要具有更高阻尼和更大尺寸的隔离系统,以减少塔架的漂移并适应隔离器的大位移。

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