首页> 外文会议>The First Anniversary of Wenchuan Earthquake(纪念汶川地震一周年国际学术会议) >Evaluation of Seismic Performance of Long Span Continuous Girder Bridges in Regions with IX Intensity
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Evaluation of Seismic Performance of Long Span Continuous Girder Bridges in Regions with IX Intensity

机译:IX强度区大跨度连续梁桥抗震性能评价。

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摘要

Nonlinear time history analysis method is adopted to analysis the seismic performance of long span continuous girder bridges with spans of 89, 170 and 89 m in high intensity region. Seismic isolation devices of double curvature seismic isolation bearings (DCSIB) and longitudinal dampers between abutments and main girders are adopted to reduce seismic response. Compares to other kinds of bearings, the self-restoring ability of DCSIB can prevent the displacement added in aftershock exceeding the maximum structure displacement admitted. The good hysteretic, energy-dissipation characteristic and self-restoring ability of DCSIB are considered as well as the friction energy-dissipation characteristic of sliding bearing and damping energy-dissipation characteristic of dampers. Based on above 3D dynamic model the analytical results indicate that the structure seismic response is reduced evidently after the usage of seismic isolation devices; seismic performance can basically meet the expected design goal. So it is very effective that seismic isolation devices of DCSIB and dampers can adjust dynamic characteristic, reduce seismic response, dissipate earthquake energy and guarantee the structural safety.
机译:采用非线性时程分析法对高强度区域跨度为89、170和89 m的大跨度连续梁桥的抗震性能进行分析。采用双曲抗震轴承(DCSIB)和桥台与主梁之间的纵向阻尼器的减震装置,以降低地震响应。与其他类型的轴承相比,DCSIB的自恢复能力可以防止余震中增加的位移超过允许的最大结构位移。 DCSIB具有良好的磁滞,耗能特性和自恢复能力,以及滑动轴承的摩擦耗能特性和阻尼器的阻尼耗能特性。根据上述3D动力学模型,分析结果表明,使用隔震装置后,结构的地震响应明显降低。抗震性能基本可以达到预期的设计目标。因此,DCSIB和减震器的隔震装置可以有效地调节动力特性,降低地震响应,耗散地震能量,保证结构安全。

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