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Effects of uncertain characteristic periods of ground motions on seismic vulnerabilities of a continuous track-bridge system of high-speed railway

机译:不确定特征期对高速铁路连续轨道桥系统地震脆弱性的影响

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摘要

The high-speed railway in China has to pass through the site surrounded by several known faults. Different earthquake mechanics of those faults and propagation paths cause different ground motions, including different peak ground accelerations (PGA), durations and characteristic periods, acting on the high-speed railway bridges. However, the previous seismic vulnerability analysis mainly aimed at the influence of PGA instead of characteristic periods on the seismic fragilities of bridge structure rather than track-bridge system. By taking a typical and common continuous bridge recommended in Chinese criterion as example, the effects of the uncertain characteristic periods of ground motions on the seismic responses and fragilities of track-bridge system were analyzed based on a numerical method. The results indicate that the probabilities exceeding any damage state of most components, including the bridge and track parts, increase with the characteristic period of ground motions. The uncertain characteristic periods of ground motions should be fully considered for the seismic design of track-bridge system, especially when the uncertain characteristic periods change around a small value. In the seismic vulnerability analysis, the uncertain of the designed characteristic period of ground motions should be developed by considering the different earthquake mechanics of several known faults surrounding the bridge site and the complex propagation paths of ground motion waves through different soils. Using a constant characteristic period of ground motions only considering the soil profile at the local site of bridge possibly leads to an unsafe result in the current criterion.
机译:中国的高速铁路必须穿过被几个已知断层包围的场地。这些断层的不同地震力学和传播路径导致高速铁路桥梁上的地震动不同,包括不同的峰值地加速度(PGA)、持续时间和特征周期。然而,以往的地震易损性分析主要针对PGA而不是特征周期对桥梁结构地震易损性的影响,而不是轨道桥梁系统。以我国规范推荐的一座典型的普通连续梁桥为例,采用数值方法分析了地震动特征周期的不确定性对轨道桥梁系统地震反应和易损性的影响。结果表明,大多数部件(包括桥梁和轨道部件)超过任何损伤状态的概率随着地震动特征周期的增加而增加。轨道桥梁系统的抗震设计应充分考虑地震动的不确定特征周期,尤其是当不确定特征周期在较小范围内变化时。在地震易损性分析中,应考虑桥址周围几个已知断层的不同地震力学,以及地震动波在不同土壤中的复杂传播路径,以确定地震动设计特征周期的不确定性。在现行标准中,仅考虑桥梁局部场地的土壤剖面,使用恒定的地震动特征周期可能会导致不安全的结果。

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