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System identification of the suspension tower of Runyang Bridge based on ambient vibration tests

机译:基于环境振动试验的润扬大桥悬索塔系统识别

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A series of field vibration tests are conducted on the Runyang Suspension Bridge during both the construction and operational stages. The purpose of this study is devoted to the analysis of the dynamic characteristics of the suspension tower. After the tower was erected, an array of accelerometers was deployed to study the evolution of its modal parameters during the construction process. Dynamic tests were first performed under the freestanding tower condition and then under the tower-cable condition after the superstructure was installed. Based on the identified modal parameters, the effect of the pile-soil-structure interaction on dynamic characteristics of the suspension tower is investigated. Moreover, the stiffness of the pile foundation is successfully identified using a probabilistic finite model updating method. Furthermore, challenges of identifying the dynamic properties of the tower from the coupled responses of the tower-cable system are discussed in detail. It's found that compared with the identified results from the freestanding tower, the longitudinal and torsional natural frequencies of the tower in the tower-cable system have changed significantly, while the lateral mode frequencies change slightly. The identified modal results from measurements by the structural health monitoring system further confirmed that the vibrations of the bridge subsystems (i.e., the tower, the suspended deck and the main cable) are strongly coupled with one another.
机译:在润扬悬索桥的施工和运营阶段都进行了一系列的现场振动测试。本研究的目的是对悬架塔的动力特性进行分析。竖起塔后,部署了一系列加速度计来研究其在施工过程中模态参数的变化。动态测试首先在独立式塔架条件下进行,然后在安装上部结构后在塔架电缆条件下进行。基于确定的模态参数,研究了桩-土-结构相互作用对吊塔动力特性的影响。此外,使用概率有限模型更新方法成功地确定了桩基的刚度。此外,详细讨论了根据塔架电缆系统的耦合响应识别塔架动态特性的挑战。结果发现,与独立式塔架的确定结果相比,塔架电缆系统中塔架的纵向和扭转固有频率发生了显着变化,而横向模态频率则发生了微小变化。从结构健康监测系统的测量中识别出的模态结果进一步证实,桥梁子系统(即塔架,悬吊甲板和主缆线)的振动是相互牢固耦合的。

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