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AN ITERATIVE MULTILEVEL UPDATING SCHEME FOR VIBRATION-BASED DAMAGE ASSESSMENT OF A PRESTRESSED CONCRETE GIRDER BRIDGE

机译:预应力混凝土梁桥振动损伤评估迭代多级更新方案

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For vibration-based structural health monitoring, a multilevel optimization scheme is applied to damage assessment of a prestressed concrete bridge. As a linear elastic problem to be addressed, damage was represented by reduction of structural stiffness of the reference model for the elements where the damage occurred. The Finite Element (FE) model updating problem is formulated as a nonlinear least-squares problem, which tries to minimize the differences between the reference model and the real (or simulated) structure with respect to the modal data. Due to the specific structure of the bridge, damage parametrization was introduced both using substructuring and a damage function. Consequently, the optimization variables were divided into global ones and local ones, which leads to the implementation of an iterative multilevel updating scheme. Satisfactory results were obtained for two numerical simulated damage scenarios: one with a single damage and one with multiple damage.
机译:对于基于振动的结构健康监测,应用多级优化方案对预应力混凝土桥的损伤评估。 作为要解决的线性弹性问题,通过降低参考模型的结构刚度的损坏发生损坏的元素来表示损坏。 有限元(FE)模型更新问题被制定为非线性最小二乘问题,这试图最小化参考模型与真实(或模拟)结构之间的差异相对于模态数据。 由于桥的具体结构,使用子结构和损伤功能引入损伤参数化。 因此,优化变量被分成全球和本地的变量,这导致实现迭代多级更新方案。 获得了两种数值模拟损伤情景的令人满意的结果:一个具有单一损坏的一个,一个有多种损坏。

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