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首页> 外文期刊>Journal of Sound and Vibration >Element-by-element model updating of large-scale structures based on component mode synthesis method
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Element-by-element model updating of large-scale structures based on component mode synthesis method

机译:基于构件模态综合方法的大型结构逐元素模型更新

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Component mode synthesis (CMS) method is developed and applied to the element-by-element model updating of large-scale structures in this study. Several lowest frequencies and mode shapes of the global structure are obtained with the free interface CMS method by employing the several lowest frequencies and mode shapes of each substructure individually. In this process, the removal of higher modes is compensated by the residual modes. The eigensensitivity of the global structure is then assembled from the eigensensitivities of each substructure to the updating element parameters. Subsequently, the global model is updated using the sensitivity-based optimization technique. The application of the present method to an 11-floor frame structure and to a large-scale structure demonstrates its accuracy and efficiency. The computational time required by the substructuring method to calculate the eigensensitivity matrices is significantly reduced, as compared with that consumed by the conventional global-based approach. Selection of the number of master modes is also proposed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本研究开发了组件模式综合(CMS)方法,并将其应用于大型结构的逐元素模型更新。通过分别使用每个子结构的几个最低频率和模态形状,通过自由接口CMS方法可以获得整体结构的几个最低频率和模态形状。在这个过程中,较高模的去除由残余模补偿。然后,将整体结构的本征敏感性从每个子结构的本征敏感性组装到更新元素参数。随后,使用基于灵敏度的优化技术更新全局模型。本方法在11层框架结构和大型结构中的应用证明了其准确性和效率。与传统的基于全局的方法所消耗的时间相比,用子结构化方法计算本征敏感性矩阵所需的计算时间大大减少了。还提出了主模式数量的选择。 (C)2015 Elsevier Ltd.保留所有权利。

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