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Seismic fragility estimates and optimization of retrofitting strategies for reinforced concrete bridges: Case study of the Fabela Bridge in Toluca, Mexico

机译:钢筋混凝土桥梁改装策略的地震脆弱估计与优化:墨西哥托卢卡法亚桥的案例研究

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Seismic fragility estimates are computed for the Fabela Bridge, a five-span single-column bent reinforced concrete bridge, located in Toluca, Mexico based on previously developed probabilistic models for the capacity and demand of typical reinforced concrete bridges. The seismic fragility estimates are computed considering deformation failures in the columns. The approach used in this study properly accounts for epistemic and aleatory uncertainties of the problem. The properties of the bridge used to develop the fragility curves are estimated by matching the frequencies of a 3D finite element model to field data. For this purpose, a 3D finite element model of the studied bridge is created based on the available information of the bridge including drawings and field observations. Then the model is updated based on the modal frequencies obtained from measured accelerations in a series of forced vibration tests on the bridge. Fragility curves are generated to assess the seismic vulnerabilities of the current bridge. Different retrofit strategies are also applied to the bridge model to generate new fragility curves for a retrofitted bridge. The optimal retrofit strategies are determined based on the developed fragilities.
机译:地震易损性预测基于对Fabela桥,五跨单柱弯曲的钢筋混凝土桥,位于墨西哥Toluca基于以前开发的概率模型的能力,典型的钢筋混凝土桥梁的需求。地震易损性预测基于考虑列变形失效。在这项研究中所使用的方法正确地考虑这个问题的认识和偶然的不确定性。用于开发脆弱曲线桥的特性由一个三维有限元模型的频率匹配字段数据估算。为了这个目的,所研究的桥的三维有限元模型创建基于所述桥包括附图和实地观察的可用信息。然后,模型是基于在一系列的上桥强制振动测试从测量的加速度获得的模态频率更新。脆弱性曲线被产生以评估当前桥的地震漏洞。不同的改造策略也适用于桥梁模型来生成一个改型桥新的脆弱性曲线。最佳的改造策略基础上发展起来的脆弱性决定的。

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