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首页> 外文期刊>Journal of structural engineering >Performance of a Seismically Isolated Bridge under Near-Fault Earthquake Ground Motions
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Performance of a Seismically Isolated Bridge under Near-Fault Earthquake Ground Motions

机译:近震地震作用下隔震桥梁的性能

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摘要

A bridge with lead-rubber seismic isolation bearings was field-tested to evaluate the assumptions and uncertainties in the design and construction. A numerical model was established based on satisfactory predictions of the dynamic characteristics under ambient vibration, free vibration tests, and the seismic performance under the 1022 Gia-Yi earthquake. Parametric studies of this model, under simulated near-fault ground motions, were earned out to investigate the near-fault effect. Two types of velocity pulse that characterize the near-fault effect were investigated. Results revealed amplified seismic response when the pulse period was close to the effective period. The response amplification by a longer period pulse was not consistent for the two pulse types. Additional observations included the ratio of dissipated energy by the lead-rubber bearings to the total input energy, which could be influenced by the near-fault effect. Variation of the near-fault effect due to a change of structural parameters was studied to provide information on possible mitigation strategy.
机译:通过铅橡胶隔震轴承的桥梁已经过现场测试,以评估设计和施工中的假设和不确定性。基于对环境振动,自由振动测试和1022年贾伊地震的抗震性能的满意预测,建立了一个数值模型。在模拟的近断层地震动条件下,对该模型进行了参数研究,以研究近断层效应。研究了两种表征近断层效应的速度脉冲。结果表明,当脉冲周期接近有效周期时,地震响应会增强。对于这两种脉冲类型,较长周期脉冲的响应放大不一致。其他观察结果包括铅橡胶轴承耗散的能量与总输入能量之比,这可能会受到近故障效应的影响。研究了由于结构参数变化而引起的近断层效应的变化,以提供有关可能的缓解策略的信息。

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