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Static and Dynamic Finite Element Model Updating of a Rigid Frame-Continuous Girders Bridge Based on Response Surface Method

机译:基于响应面法的刚性框架连续梁桥静态和动态有限元模型更新

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Using the static and dynamic test data simultaneously to update the finite element model can increase the available information for updating. It can overcome the disadvantages of updating based on static or dynamic test data only. In this paper, the response surface method is adopted to update the finite element model of the structure based on the static and dynamic test. Using the reasonable experiment design and regression techniques, a response surface model is formulated to approximate the relationships between the parameters and response values instead of the initial finite element model for further updating. First, a numerical example of a reinforced concrete simply supported beam is used to demonstrate the feasibility of this approach. Then, this approach is applied to update the finite element model of a prestressed reinforced concrete rigid frame-continuous girders bridge based on in-situ static and dynamic test data. Results show that this approach works well and achieve reasonable physical explanations for the updated parameters. The results from the updated model are in good agreement with the results from the in-situ measurement. The updated finite element model can accurately represent mechanical properties of the bridge and it can serve as a benchmark model for further damage detection and condition assessment of the bridge.
机译:同时使用静态和动态测试数据更新有限元模型可以增加更新的可用信息。它可以克服仅基于静态或动态测试数据更新的缺点。在本文中,采用响应面法基于静态和动态测试来更新结构的有限元模型。使用合理的实验设计和回归技术,配制响应表面模型以近似参数与响应值之间的关系而不是初始有限元模型进行进一步更新。首先,使用钢筋混凝土简单地支撑光束的数值例子来证明这种方法的可行性。然后,应用这种方法以基于原位静态和动态测试数据更新预应力钢筋混凝土刚性框架连续梁桥的有限元模型。结果表明,这种方法适用于更新的参数来实现合理的物理解释。更新模型的结果与原位测量结果吻合良好。更新的有限元模型可以准确地表示桥的机械性能,它可以用作基准模型,用于进一步损坏桥梁的损坏和条件评估。

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