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Variation of modal parameters of a cable-stayed bridge identified from ambient vibration measurements and FE modelling

机译:根据环境振动测量和有限元建模确定斜拉桥模态参数的变化

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摘要

During construction, the first cantilever of the Second Severn Crossing cable-stayed bridge was monitored for dynamic effects. Modal parameters of many modes were identified from ambient vibration measurements, and mode shapes and natural frequencies were matched with modes from a Finite Element (FE) model. The accuracy of the measured natural frequencies and damping ratios was estimated, and variations in these parameters were identified from long-term records. The contributions of aerodynamic and structural damping were separated, and the magnitude of the components is discussed. Variations in natural frequencies with wind velocity and, for the finished bridge, traffic loading were identified, but no changes due to temperature were detected, although the temperature range experienced was small. The variations are compared with results from the FE analysis and the significance of the measurement accuracy and natural variations are discussed in relation to Model Updating and Structural Health Monitoring. Finally, evidence of aeroelastic coupling of vertical and torsional modes, during construction, is presented. This arose as the natural frequencies of the two modes were much closer than anticipated, highlighting the need for detailed FE modelling to determine this important frequency ratio accurately.
机译:在施工过程中,对第二塞文交叉斜拉桥的第一悬臂进行了动态影响监测。从环境振动测量中识别出许多模式的模态参数,并将模式形状和固有频率与有限元(FE)模型中的模式相匹配。估计测量的固有频率和阻尼比的准确性,并根据长期记录确定这些参数的变化。分开了空气动力学和结构阻尼的贡献,并讨论了组件的大小。可以确定自然频率随风速的变化,并且对于完工的桥梁,可以确定交通负荷,尽管温度范围很小,但没有检测到由于温度引起的变化。将这些变化与有限元分析的结果进行比较,并讨论了有关模型更新和结构健康监测的测量精度和自然变化的重要性。最后,提出了在施工过程中垂直和扭转模式的气动弹性耦合的证据。之所以出现这种情况,是因为两种模式的固有频率比预期的要近得多,这突出了需要详细的有限元建模来准确确定该重要频率比的需求。

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