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Evaluating the Effectiveness and Optimal Design of Isolation Bearings and Fluid Dampers for a Highway Bridge Using a Fragility Function Method and Genetic Optimization

机译:用脆弱函数法和遗传优化评估公路桥梁隔震支座和液体阻尼器的有效性和优化设计。

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Modern seismic protection technologies in the forms of isolation bearings and fluid dampers can be used to improve the seismic responses of highway bridges. This paper aims to use the performance-based evaluation approach to investigate the seismic performances of a newly constructed highway over-crossing in California that is equipped with isolation bearings and fluid dampers. A simplified 2D bridge model representing the transverse response of the bridge is adopted that take into account of nonlinear behavior in bridge, isolation devices and fluid dampers as well as soil-structure interaction effects. Fragility curves are derived by PSDA for pier columns and base isolators first then combined into a composite system curve based on the repair cost ratio of these two components for each damage state. The efficiency of using isolation bearings and fluid dampers is investigated by comparing system fragility curves of three different cases, i.e., the as-built bridge, the isolated bridge, and the bridge installed with both base isolators and fluid dampers. Furthermore, utilizing a multi-objective genetic algorithm, the optimum combination of mechanical parameters of isolation bearings and fluid dampers are identified. The study shows that the optimum design of isolation bearings and fluid dampers are able to reduce the bearing deformation and deck acceleration simultaneously and minimize the overall damaging potential of the bridge.
机译:隔离轴承和流体阻尼器形式的现代地震保护技术可用于改善公路桥梁的地震响应。本文旨在使用基于性能的评估方法来研究加利福尼亚州新建的,配备了隔离轴承和减震器的高速公路立交桥的抗震性能。考虑到桥梁,隔离装置和流体阻尼器的非线性行为以及土-结构相互作用的影响,采用了代表桥梁横向响应的简化二维桥梁模型。 PSDA得出墩柱和基础隔离器的易碎性曲线,然后首先根据这两个组件在每种损坏状态下的维修成本比率,将其组合为复合系统曲线。通过比较三种不同情况下的系统脆弱性曲线(即竣工桥,隔离桥和同时装有基础隔离器和减震器的桥),研究了使用隔离轴承和减震器的效率。此外,利用多目标遗传算法,确定了隔离轴承和流体阻尼器的机械参数的最佳组合。研究表明,隔离式轴承和减震器的最佳设计能够同时减少轴承变形和甲板加速度,并最大程度地降低桥梁的整体破坏潜力。

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