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Fragility analysis of track-on steel-plate-girder railway bridges in Korea

机译:韩国轨道式钢梁铁路桥梁的易损性分析

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More than 40% of the bridges in conventional Korean railway lines are track-on steel-plate-girder (TOSPG) bridges. They are characterized by a superstructure consisting of railway tracks sitting directly on steel plate girders without any ballast system. Most of these bridges have been designed with little or no consideration given to seismic loading. In this paper, seismic fragility curves of TOSPG bridges in Korea are developed. Fragility curves are developed first for the components, by using the probabilistic seismic demand model. The developed component fragility curves show that the bearings are the most vulnerable components of the TOSPG bridges against seismic loading. On the other hand, the piers are much less vulnerable, although they contain no reinforcing bars. This is because the superstructure mass is very light, and therefore horizontal loading transferred from the superstructure to the piers is minimal. A generic damage measure is introduced for measuring the system-level damage of structures out of the component-level damages. The system fragility curves are then developed, using the generic damage measure. Finally, representation of seismic risk in terms of expected seismic losses is demonstrated. This demonstration shows how the fragility analysis is utilized for risk assessment and support in decision-making.
机译:韩国传统铁路线中超过40%的桥梁是轨道式钢板梁(TOSPG)桥梁。它们的特征是上部结构,由直接位于钢板大梁上的铁轨组成,没有任何压载系统。这些桥梁中的大多数在设计时几乎没有考虑地震荷载。本文研究了韩国TOSPG桥梁的地震脆性曲线。首先使用概率地震需求模型为这些组件绘制易碎性曲线。发达的零部件脆性曲线表明,轴承是TOSPG桥梁抵抗地震载荷最脆弱的零部件。另一方面,尽管码头不包含钢筋,但码头的脆弱性要小得多。这是因为上层建筑的质量非常轻,因此从上层建筑传递到桥墩的水平载荷很小。引入了一般性损坏度量,用于在组件级损坏中测量结构的系统级损坏。然后,使用通用损伤度量来绘制系统脆性曲线。最后,证明了根据预期地震损失表示地震风险的方法。该演示说明了如何将脆弱性分析用于风险评估和决策支持。

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