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Seismic behavior of long-span concrete-filled steel tubular arch bridge subjected to near-fault fling-step motions

机译:大跨度钢管混凝土拱桥近断层跳步运动的抗震性能

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摘要

Special characteristics of earthquakes in the near-fault regions, mainly fling-step and forward-directivity effects, may result in the significant damage to long-span bridge. In this paper, investigations are performed to analyze the seismic behaviors of the long-span concrete-filled steel tubular arch bridge called Zangmu Bridge under fling step motions. Firstly, a three-dimensional finite-element model for the bridge is constructed with proper consideration of the material and geometric nonlinearities; secondly, three kinds of seismic loadings are comprehensively illustrated including recorded ground motions, idealized pulse models and residual components; then, comparative analysis and parametric analysis are conducted to gain insight into the effect of different components in fling-step motions on the seismic response; finally, the potentially dangerous locations of the CFST arch are estimated by taking the strain index as performance evaluation standard. Findings from the studies reveal that fling-step motions consist of static and dynamic pulses, both of which possess significant influence on the seismic response and performance state; the seismic demands depend on both pulse period and pulse amplitude; and the 'narrow band' effect for different members appears at different pulse periods related to the mode contribution.
机译:断层附近地震的特殊特征(主要是阶跃效应和前向效应)可能会对大跨度桥梁造成重大破坏。本文进行了研究,以分析在跨步运动下大跨度钢管混凝土拱桥arch木桥的抗震性能。首先,在适当考虑材料和几何非线性的基础上,建立了桥梁的三维有限元模型。其次,全面说明了三种地震荷载,包括记录的地面运动,理想的脉冲模型和残余分量。然后,进行比较分析和参数分析,以深入了解跳步运动中不同分量对地震响应的影响;最后,以应变指数为性能评价标准,估算了钢管混凝土拱的潜在危险部位。研究结果表明,跳动运动由静态和动态脉冲组成,两者均对地震响应和性能状态产生重大影响。地震需求取决于脉冲周期和脉冲幅度。不同成员的“窄带”效应出现在与模式贡献相关的不同脉冲周期。

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