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首页> 外文期刊>Earthquake Engineering & Structural Dynamics >Nonlinear FE model updating and reconstruction of the response of an instrumented seismic isolated bridge to the 2010 Maule Chile earthquake
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Nonlinear FE model updating and reconstruction of the response of an instrumented seismic isolated bridge to the 2010 Maule Chile earthquake

机译:仪器地震隔离桥对2010年智利莫尔地震的非线性有限元模型更新和重建

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摘要

Nonlinear finite element (FE) modeling has been widely used to investigate the effects of seismic isolation on the response of bridges to earthquakes. However, most FE models of seismic isolated bridges (SIB) have used seismic isolator models calibrated from component test data, while the prediction accuracy of nonlinear FE models of SIB is rarely addressed by using data recorded from instrumented bridges. In this paper, the accuracy of a state-of-the-art FE model is studied through nonlinear FE model updating (FEMU) of an existing instrumented SIB, the Marga-Marga Bridge located in Vina del Mar, Chile. The seismic isolator models are updated in 2 phases: component-wise and system-wise FEMU. The isolator model parameters obtained from 23 isolator component tests show large scatter, and poor goodness of fit of the FE-predicted bridge response to the 2010 Mw 8.8 Maule, Chile Earthquake is obtained when most of those parameter sets are used for the isolator elements of the bridge model. In contrast, good agreement is obtained between the FE-predicted and measured bridge response when the isolator model parameters are calibrated using the bridge response data recorded during the mega-earthquake. Nonlinear FEMU is conducted by solving single- and multiobjective optimization problems using high-throughput cloud computing. The updated FE model is then used to reconstruct response quantities not recorded during the earthquake, gaining more insight into the effects of seismic isolation on the response of the bridge during the strong earthquake.
机译:非线性有限元(FE)建模已被广泛用于研究隔震对桥梁地震响应的影响。但是,大多数地震隔离桥(SIB)的有限元模型都使用了根据组件测试数据校准的地震隔离器模型,而SIB非线性有限元模型的预测精度很少通过使用从仪器桥梁记录的数据来解决。在本文中,通过对现有仪器仪表SIB(位于智利比尼亚德尔马的Marga-Marga桥)的非线性有限元模型更新(FEMU)来研究最新有限元模型的准确性。隔震器模型分为两个阶段进行更新:基于组件的FEMU和基于系统的FEMU。从23个隔离器组件测试中获得的隔离器模型参数显示出较大的分散性,并且FE预测的桥梁对2010 Mw 8.8 Maule,Chile的桥梁响应的拟合度较差,当将大多数这些参数集用于以下项目的隔离器元素时会发生地震桥梁模型。相反,当使用在特大地震期间记录的桥梁响应数据校准隔离器模型参数时,在FE预测的桥梁响应和测量的桥梁响应之间会获得良好的一致性。非线性FEMU通过使用高通量云计算解决单目标和多目标优化问题来进行。然后将更新后的有限元模型用于重建地震期间未记录的响应量,从而更深入地了解地震隔离对桥梁在强地震中的响应的影响。

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