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首页> 外文期刊>Journal of structural engineering >Structural Finite Element Model Updating Using Ambient Vibration Test Results
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Structural Finite Element Model Updating Using Ambient Vibration Test Results

机译:使用环境振动测试结果更新结构有限元模型

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x This paper presents a practical and user-friendly finite element (FE) model updating technique for real structures using ambient vibration test results. The first case study of a simulated simply supported beam demonstrates a comparative study of the influence of different possible residuals in objective function. Frequency residual only, mode shape related function only, modal flexibility residual only, and their combinations are studied independently. In view of tuning as well as damage localization, full objective function that considers all three residuals is the best for FE updating. This objective function is implemented in a second case study of a real concrete-filled steel tubular arch bridge. The bridge was tested by ambient vibration measurements. Followed by the three-dimensional FE modeling of the bridge, an eigenvalue sensitivity study is carried out to see the most sensitive parameters to the concerned modes. FE model mass matrix obtained from Guyan reduction technique is used to the mass normalization of the mode shapes extracted from ambient modal test to calculate the modal flexibility. The updated FE model of the bridge is able to produce a sufficient improvement on modal parameters of the concerned modes which is in close agreement with the experimental results still preserving the physical meaning of updated parameters.
机译:x本文介绍了一种使用环境振动测试结果对实际结构进行实用且用户友好的有限元(FE)模型更新技术。模拟简单支撑梁的第一个案例研究证明了对目标函数中不同可能残差的影响的比较研究。仅对频率残差,仅与模态相关的函数,仅模态柔性残差及其组合进行独立研究。考虑到调整和损伤定位,考虑所有三个残差的全目标函数最适合于FE更新。该目标函数是在一个实际的钢管混凝土拱桥的第二个案例研究中实现的。桥梁通过环境振动测量进行了测试。接着对桥梁进行三维有限元建模,然后进行特征值敏感性研究,以了解对相关模式最敏感的参数。将从Guyan还原技术获得的FE模型质量矩阵用于从环境模态测试中提取的模态形状的质量归一化,以计算模态柔性。桥梁的更新有限元模型能够对有关模式的模态参数进行充分的改进,这与仍然保留更新参数的物理意义的实验结果非常吻合。

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