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Substructure damage identification based on response reconstruction in frequency domain and model updating

机译:基于频域响应重构和模型更新的子结构损伤识别

摘要

A substructural damage identification approach based on dynamic response reconstruction in frequency domain is proposed with numerical and experimental verifications. The response reconstruction is based on transforming the measured responses into responses at other locations with the transmissibility matrix. Damage identification is conducted by minimizing the difference between a measured response vector and the reconstructed response vector. Measured acceleration responses from the damaged substructure and the finite element model of the intact substructure only are required in the identification algorithm. A dynamic response sensitivity-based method is used for the damage identification. Numerical studies on a seven-storey plane frame structure are conducted to validate the correctness and effectiveness of the proposed approach. The simulated damage can be identified efficiently with 10% noise effect in the measurements and random initial model errors in the finite element model of the structure. Experimental studies on a steel plane frame structure in the laboratory are performed to further verify the response reconstruction in frequency domain and the proposed substructural damage identification approach. The locations of the introduced damage are detected accurately and the stiffness reductions in the damaged elements of the target substructure are identified close to the theoretical values.
机译:提出了基于频域动态响应重构的次结构损伤识别方法,并进行了数值和实验验证。响应重建基于具有透射率矩阵的,将测得的响应转换为其他位置的响应。通过最小化测得的响应向量与重构的响应向量之间的差异来进行损坏识别。识别算法仅需要从损坏的子结构和完整子结构的有限元模型中测得的加速度响应。基于动态响应灵敏度的方法用于损伤识别。进行了七层平面框架结构的数值研究,以验证所提出方法的正确性和有效性。可以通过测量中的10%噪声效应和结构有限元模型中的随机初始模型误差有效地识别模拟损伤。在实验室中对钢制平面框架结构进行了实验研究,以进一步验证频域中的响应重建以及所提出的次结构损伤识别方法。精确检测引入的损坏的位置,并确定目标子结构的损坏元素的刚度降低接近理论值。

著录项

  • 作者

    Li J; Law SS; Ding Y;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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