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Structural parameter identification and damage detection for a steel structure using a two-stage finite element model updating method

机译:基于两阶段有限元模型更新方法的钢结构结构参数识别与损伤识别

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摘要

A two-stage eigensensitivity-based finite element (FE) model updating procedure is developed for structural parameter identification and damage detection for the IASC-ASCE structural health monitoring benchmark steel structure on the basis of ambient vibration measurements. In the first stage, both the weighted least squares and Bayesian estimation methods are adopted for the identification of the connection stiffness of beam-column joints and Young's modulus of the structure; then the damage detection is conducted via the FE model updating procedure for detecting damaged braces with different damage patterns of the structure. Comparisons between the FE model updated results and the experimental data show that the eigensensitivity-based FE model updating procedure is an effective tool for structural parameter identification and damage detection for steel frame structures.
机译:针对环境振动测量的基础,针对IASC-ASCE结构健康监测基准钢结构的结构参数识别和损伤检测,开发了基于特征的两阶段有限元(FE)模型更新程序。在第一阶段,采用加权最小二乘和贝叶斯估计方法来识别梁柱节点的连接刚度和结构的杨氏模量。然后通过有限元模型更新程序进行损坏检测,以检测具有不同损坏模式的损坏支撑。有限元模型更新结果与实验数据的比较表明,基于特征敏感性的有限元模型更新程序是钢框架结构结构参数识别和损伤检测的有效工具。

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