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Seismic Vulnerability Analysis of Long-Span Multi-tower Suspension Bridge

机译:大跨度多塔悬索桥地震易损性分析

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Analytical methods for comprehensive evaluation of the seismic vulnerability of bridges have only recently become feasible due to a combination of advancements in the field of seismic hazard assessment and structural response analysis. However, current analytical methodologies, mainly based on fragility curves, may not be appropriate for the long-span multi-tower suspension bridge which belongs to a new type of bridge. In combination with Taizhou Yangtze River Bridge which is a tri-tower suspension bridge over 1000m in the main span, the paper attempts to present a large-scale assessment of the seismic vulnerability for this bridge. The capacity/demand ratio is introduced as fragility index for various key elements. By construction of the 3-D FEM dynamic model of Taizhou bridge, the investigation incorporates detailed nonlinear time history analysis. It can be found among all the components the tower, the pile foundation and the connection between the main cable and the saddle are most likely to be damaged by the severe earthquake. It is also observed that the most vulnerable locations/components may vary due to different directions of ground motion inputs. For Taizhou bridge, the smallest C/D ratio values are found to be at the bottom of the tower, at around 1/4 height of the tower-column from the top of the tower, at the pile foundations and for the slip resistance at the saddles under the longitudinal earthquake, and in a transverse ground motion the vulnerable locations may be the bottom of the tower, the joint between the tower-column and the lower crossbeam and the pile foundation.
机译:由于地震危险性评估和结构响应分析领域的进步相结合,对桥梁地震易损性进行综合评估的分析方法直到最近才变得可行。然而,当前的主要基于脆性曲线的分析方法可能不适用于属于一种新型桥梁的大跨度多塔式悬索桥。结合泰州长江大桥,这是一座主跨跨度超过1000m的三塔式悬索桥,本文试图对该桥的地震易损性进行大规模评估。容量/需求比率作为各种关键要素的脆弱性指标引入。通过建立台州大桥的3-D有限元动力学模型,研究包括了详细的非线性时程分析。在所有组件中,塔架,桩基以及主电缆和鞍座之间的连接最有可能受到强烈地震的破坏。还可以观察到,最容易受到伤害的位置/组件可能会由于地面运动输入的方向不同而发生变化。对于台州大桥,最小的C / D比值位于塔底,距塔顶约1/4的塔柱高度,桩基处以及滑移阻力为在纵向地震作用下的鞍座以及横向地震动中,易受伤害的位置可能是塔的底部,塔柱与下部横梁之间的接缝以及桩基。

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