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Damage identification using structural modes based on substructure virtual distortion method

机译:基于子结构虚拟变形方法的结构模式损伤识别

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摘要

A damage identification approach is presented using substructure virtual distortion method which takes the advantage of the fast structural reanalysis technique of virtual distortion method. The formulas of substructure virtual distortion method are deduced in frequency domain, and then the frequency response function of the damaged structure is constructed quickly via the superposition of the frequency response function of the intact structure and the frequency responses caused by the damage-coupling virtual distortions of the substructures. The structural damage extents are identified using the measured modal parameters. Two steps are adopted to increase the efficiency of optimization: the modals of finite element model are estimated quickly from the fast constructed frequency response function during the optimization and the primary distortions of the substructures are extracted by contribution analysis to further reduce the computational work. A six-story frame numerical model and an experiment of a cantilever beam are carried out, respectively, to verify the efficiency and accuracy of the proposed method.
机译:提出了一种利用子结构虚拟变形方法的损伤识别方法,该方法利用了虚拟变形方法的快速结构再分析技术的优势。在频域上推导子结构虚拟变形方法的公式,然后通过完整结构的频率响应函数与损伤耦合虚拟畸变引起的频率响应的叠加,快速构建损伤结构的频率响应函数。子结构。使用测量的模态参数确定结构破坏程度。采取两个步骤来提高优化效率:在优化过程中,通过快速构建的频率响应函数快速估算有限元模型的模态,并通过贡献分析提取子结构的主要变形,以进一步减少计算量。分别进行了六层框架数值模型和悬臂梁的实验,验证了该方法的有效性和准确性。

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