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Seismic fragility assessment of a multi-span cable-stayed bridge with tall piers

机译:高跨墩多跨度斜拉桥的地震脆弱性评估

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In this study, the longitudinal seismic fragility of a five-span cable-stayed bridge with tall piers is investigated using the fragility method. The OpenSees is applied to develop a finite element model of the cable-stayed bridge, and both the geometric and material nonlinearities are considered. A suite of 80 ground motions is selected to perform the nonlinear time history analysis, and the seismic responses of the expansion joint, deck, cables, and piers are discussed to determine the damage indexes of these components. Next, fragility curves are developed to assess the seismic performance of the cable-stayed bridge. The results show that the expansion joint, deck and cables are the vulnerable components, while the failure probability of the pier is relatively low. Moreover, the effects of the deck-pier connections and viscous fluid dampers on the vulnerability of the components and the bridge system are also studied. It is shown that the vulnerability of the cable and deck is sensitive to the deck-pier connections. Moreover, the deck-pier connection enhances the stiffness of the cable-stayed bridge. Therefore, it affects the seismic response of the cable-stayed bridge. However, the deck-pier connection has relatively slight effect on the system fragility. Furthermore, the location of the viscous fluid dampers significantly affects their effectiveness.
机译:在这项研究中,使用脆弱方法研究了具有高墩的五跨度斜拉桥的纵地碎裂。开放式应用于开发缆绳撑桥的有限元模型,并且考虑几何和材料非线性。选择了80个地面运动的套房以执行非线性时间历史分析,并讨论扩展接头,甲板,电缆和码头的地震响应以确定这些组件的损伤指数。接下来,开发出脆弱曲线以评估斜拉桥的地震性能。结果表明,膨胀节,甲板和电缆是易受攻击的部件,而墩的故障概率相对较低。此外,还研究了甲板墩连接和粘性流体阻尼器对部件和桥梁系统脆弱性的影响。结果表明,电缆和甲板的脆弱性对甲板墩连接敏感。此外,甲板墩连接增强了斜拉桥的刚度。因此,它影响了斜拉桥的地震响应。然而,甲板墩连接对系统脆性的影响相对略有影响。此外,粘性流体阻尼器的位置显着影响其有效性。

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