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Comparison of near-fault and far-fault ground motion effects on geometrically nonlinear earthquake behavior of suspension bridges

机译:悬索桥近断层和远断层地震动对几何非线性地震行为的影响比较

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摘要

This paper presents a comparison of near-fault and far-fault ground motion effects on geometrically nonlinear earthquake behavior of suspension bridges. Bogazi double dagger i (The First Bosporus) and Fatih Sultan Mehmet (Second Bosporus) suspension bridges built in Istanbul, Turkey, are selected as numerical examples. Both bridges have almost the same span. While Bogazi double dagger i Suspension Bridge has inclined hangers, Fatih Sultan Mehmet Suspension Bridge has vertical hangers. Geometric nonlinearity including P-delta effects from self-weight of the bridges is taken into account in the determination of the dynamic behavior of the suspension bridges for near-fault and far-fault ground motions. Near-fault and far-fault strong ground motion records, which have approximately identical peak ground accelerations, of 1999 Chi-Chi, 1999 Kocaeli, and 1979 Imperial Valley earthquakes are selected for the analyses. Displacements and internal forces of the bridges are determined using the finite element method including geometric nonlinearity. The displacements and internal forces obtained from the dynamic analyses of suspension bridges subjected to each fault effect are compared with each other. It is clearly seen that near-fault ground motions are more effective than far-fault ground motion on the displacements and internal forces such as bending moment, shear force and axial forces of the suspension bridges.
机译:本文比较了近断层和远断层地震动对悬索桥几何非线性地震行为的影响。数值示例选择了在土耳其伊斯坦布尔建造的Bogazi双匕首i(第一博斯普鲁斯海峡)和Fatih Sultan Mehmet(第二博斯普鲁斯海峡)悬索桥。两座桥的跨度几乎相同。 Bogazi双匕首i悬索桥具有倾斜的衣架,而Fatih Sultan Mehmet悬索桥具有垂直的衣架。在确定悬臂桥对近断层和远断层地面运动的动态行为时,应考虑几何非线性,包括桥自重产生的P-δ效应。选择了近断层和远断层强烈的地面运动记录,这些记录具有与1999年Chi-Chi地震,1999年Kocaeli地震和1979年Imperial Valley地震近似的峰值地面加速度。桥梁的位移和内力是使用包括几何非线性的有限元方法确定的。将从悬架桥的动力分析中得到的位移和内力进行比较,并进行每种断裂效应的比较。可以清楚地看到,在悬臂桥的位移和内力(例如弯矩,剪切力和轴向力)上,近断层地震动比远断层地震动更有效。

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