基于性能的弹性摩擦隔震索桥抗震设计方法的改进(I——索桥现场试验分析)

H. Gil, Sun Kyu Park, Kyoungbong Han, W. S. Yoon
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引用次数: 1

摘要

在本研究中,进行了现场桥梁试验,以确定具有弹性摩擦基础隔震系统(R-FBI)的索桥的动力特性。通过各种环境振动试验,在桥梁开通前使用非运输状态的卡车,以及在桥梁开通后大约一年后使用普通交通载荷,来估计试验桥的动力特性。从试验结果中得到的动态特性与分析模型进行了比较。对含R-FBI的斜拉桥进行环境振动试验,结果表明,桥梁动力性能对R-FBI刚度敏感,采用R-FBI有效刚度的试验桥地震分析模型不足以反映桥梁的动力性能。对于索桥,抗震设计必须遵循《韩国公路桥梁设计规范(索桥极限状态设计)》。因此,为了反映安装在索桥上的R-FBI的实际行为特征,应提出改进的抗震设计程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvement of the Performance Based Seismic Design Method of Cable Supported Bridges with Resilient-Friction Base Isolation Systems (I- Analysis of Field Testing of Cable Supported Bridge)
In this study, a field bridge test was conducted to find the dynamic properties of cable supported bridges with resilient-friction base isolation systems (R-FBI). Various ambient vibration tests were performed to estimate dynamic properties of a test bridge using trucks in a non-transportation state before opening of the bridge and by ordinary traffic loadings about one year later after opening of the bridge. The dynamic properties found from the results of the tests were compared with an analysis model. From the result of the ambient vibration tests of the cable supported bridge with R-FBI, it was confirmed that the dynamic properties were sensitive to the stiffness of the R-FBI in the bridge, and the seismic analysis model of the test bridge using the effective stiffness of the R-FBI was insufficient for reflecting the dynamic behavior of the bridge. In the case of cable supported bridges, the seismic design must follow the “Korean Highway Bridge Design Code (Limit State Design) for Cable supported bridges.” Therefore, in order to reflect the actual behavior characteristics of the R-FBI installed on cable-supported bridges, an improved seismic design procedure should be proposed.
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