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Performance of Seismic-Isolated Bridges in Relation to Near-Fault Ground-Motion and Isolator Characteristics

机译:隔震桥梁的性能与近断层地震动和隔震器特性的关系

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This paper investigates the performance of seismic-isolated bridges (SIBs) subjected to near-fault (NF) earthquakes with forward rupture directivity effect (FRDE) in relation to the isolator, substructure, and NF earthquake properties, and examines some critical design clauses in AASHTO's Guide Specifications for Seismic Isolation Design. It is found that the SIB response is a function of the number of velocity pulses, magnitude of the NF ground motion, and distance from the fault. Particularly, a reasonable estimation of the expected magnitude of the NF ground motion according to the characteristics of the bridge site is crucial for a correct design of the SIB. It is also found that the characteristic strength and post-elastic stiffness of the isolator may be chosen based on the characteristics of the NF earthquake. Furthermore, some of the AASHTO clauses are found to be not applicable to SIBs subjected to NF ground motions with FRDE.
机译:本文研究了在近断层(NF)地震中具有正向破裂方向性效应(FRDE)的隔震桥梁(SIB)的性能与隔震器,下部结构和NF地震特性的关系,并研究了一些关键设计条款。 AASHTO的抗震设计指南规范。发现SIB响应是速度脉冲数量,NF地面运动幅度和距断层距离的函数。尤其是,根据桥位的特性合理估计NF地面运动的预期大小对于SIB的正确设计至关重要。还发现,可以基于NF地震的特征来选择隔离器的特征强度和弹性后刚度。此外,发现一些AASHTO条款不适用于经受FRDE NF地面运动的SIB。

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