中型铅橡胶支座连续桥梁抗震性能研究

B. Olmos, J. Jara, J. Fabián
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引用次数: 0

摘要

本文研究隔震垫的非线性行为对桥梁抗震性能的影响,以确定可用于改善桥梁抗震性能的基础隔震系统参数。通过设计三种不同土壤类型的一组桥梁,并改变跨度数量、跨度长度和桥墩高度,进行了参数化研究。对两种结构模型的地震反应(加速度、位移和桥墩地震力)进行了评估。第一个模型对应于具有线性弹性行为的弹性支座支撑的桥梁,第二个模型模拟了一个考虑系统非线性行为的基础隔离桥。地震需求由墨西哥太平洋海岸俯冲带记录的一组12个真实加速度来表示。对不同损伤情景下桥梁的非线性响应进行了估计。这些结果可以确定有和没有基础隔震的桥梁的抗震能力。研究结果清楚地表明,考虑非线性行为对桥梁抗震性能的重要性以及基础隔震对中型桥梁地震易损性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SEISMIC CAPACITY OF MEDIUM SIZE CONTINUOUS BRIDGES WITH LEAD-RUBBER BEARINGS
This paper investigates the effects of the nonlinear behaviour of isolation pads on the seismic capacity of bridges to identify the parameters of base isolation systems that can be used to improve seismic performance of bridges. A parametric study was conducted by designing a set of bridges for three different soil types and varying the number of spans, span lengths, and pier heights. The seismic responses (acceleration, displacement and pier seismic forces) were evaluated for two structural models. The first model corresponded to the bridges supported on elastomeric bearings with linear elastic behaviour and the second model simulated a base isolated bridge that accounts for the nonlinear behaviour of the system. The seismic demand was represented with a group of twelve real accelerograms recorded on the subduction zone on the Pacific Coast of Mexico. The nonlinear responses under different damage scenarios for the bridges included in the presented study were estimated. These results allow determining the seismic capacity of the bridges with and without base isolation. Results show clearly the importance of considering the nonlinear behaviour on the seismic performance of bridges and the influence of base isolation on the seismic vulnerability of medium size bridges.
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