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Probabilistic seismic performance assessment of optimally designed highway bridge isolated by ordinary unbonded elastomeric bearings

机译:普通未粘结弹性体轴承最佳设计的公路桥梁概率地震性能评估

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Following the idea of using unbonded isolators to eliminate the tensile stress and providing a cost-effective isolation system, recent experimental research has shown ordinary unbonded steel reinforced elastomeric bearings (SREBs) as an attractive option for seismic isolation of highway bridges. The focus of current research work is on the evaluation of the seismic vulnerability of a highway bridge isolated by unbonded SREBs through developing fragility curves of the structure. This assessment considers parameters playing a key role in the isolation system behavior, namely the friction coefficient, as well as the isolator aging effects. In this regard, a typical three-span highway bridge is considered and designed with the rubber bearing isolation system by applying a multi-objective optimization procedure to reduce the seismic isolation deformation as well as the base shear simultaneously. The nonlinear models for bridge piers and isolation devices are incorporated. An Incremental Dynamic Analysis (IDA) method is applied to generate the fragility functions using a suite of 20 ground motion records. The results show that this type of base isolation system is well capable of mitigating earthquake excitation. Additionally, the overall performance of the bridge is not sensitive to the friction coefficient, while the aging of the isolator units caused an increase in the bridge vulnerability.
机译:在使用未粘合的隔离器消除拉伸应力并提供经济高效的隔离系统之后,最近的实验研究表明普通的未粘结钢筋弹性体轴承(SREBS)作为公路桥梁的地震隔离的有吸引力的选择。目前的研究工作的重点是通过开发结构的脆弱曲线来评估不合格的SREBS隔离的高速公路桥的地震脆弱性。该评估考虑在隔离系统行为中扮演关键作用的参数,即摩擦系数以及隔离器老化效果。在这方面,通过施加多目标优化过程,用橡胶轴承隔离系统考虑和设计典型的三跨路公路桥,以减少地震隔离变形以及同时施加底座剪切。结合了桥接桥墩和隔离装置的非线性模型。应用增量动态分析(IDA)方法使用20个地面运动记录的套件生成脆性函数。结果表明,这种类型的基础隔离系统能够减轻地震激励。另外,桥的整体性能对摩擦系数不敏感,而隔离器单元的老化导致桥梁脆弱性增加。

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