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Optimized Design of Seismic isolation Systems for Existing Bridges

机译:现有桥梁地震隔离系统的优化设计

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Nowadays base isolation represents one of the most effective solutions for seismic protection of both building and bridge structures. Thanks to the provided low stiffness and the high dissipation capacity, a significant reduction of internal forces induced in the superstructure can be obtained, with limited increased displacement demands. However, for bridge structures, the definition of the layout for anti-seismic devices can strongly affect the overall response of the system, due to the interaction between properties of each isolator and stiffness characteristics of piers. Precisely, the topography of the bridge site may lead to relatively high vertical supporting elements. Such elements would not take advantage of an additional isolation layer: thus, the displacement seismic demand of the deck can be directly accommodated through the flexural deformation of tall elements. On the other hand, isolators on short piers are generally needed, in order to avoid unexpected brittle shear failures. In the present endeavour a simplified optimization procedure is proposed for the most efficient definition of the seismic isolation system for existing bridges retrofit. The response of a case study structure has been assessed for the calibration of the implemented parameters, through Non-Linear Time History Analyses, by applying spectrum-compatible natural records. Finally, a framework for hybrid simulations with sub-structuring has been considered, aiming at evaluating the effectiveness of the presented design strategy, by means of an experimental validation.
机译:如今,基本隔离是建筑物和桥梁结构的地震保护最有效的解决方案之一。由于提供的低刚度和高耗散能力,可以获得在上层建筑中诱导的内部力的显着降低,具有有限的位移需求。然而,对于桥接结构,由于每个隔离器和墩刚度特性的性质之间的相互作用,对抗震装置的布局的定义可以强烈影响系统的整体响应。精确地,桥接场地的形貌可能导致相对高的垂直支撑元件。这种元件不会利用额外的隔离层:因此,可以通过高度元素的弯曲变形直接容纳甲板的位移地震要求。另一方面,通常需要短码头上的隔离器,以避免意外的脆性剪切故障。在目前的努力中,提出了一种简化的优化程序,以获得现有桥接器改装的地震隔离系统的最有效定义。通过应用谱兼容的自然记录,通过非线性时间历史分析评估了案例研究结构的响应,用于通过非线性时间历史分析来评估实现的参数。最后,已经考虑了具有子结构化的混合模拟的框架,旨在通过实验验证来评估所提出的设计策略的有效性。

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