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Model reduction schemes for the wave and finite element method using the free modes of a unit cell

机译:使用单元格自由模式的波动和有限元方法的模型简化方案

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The wave and finite element method (WFEM) is an efficient numerical tool for analysing wave propagation characteristics and forced response at intermediate and high frequencies. In this work, we introduce free-interface component modal synthesis (CMS) methods into WFEM to accelerate the calculation while maintaining the accuracy. Several free-interface CMS methods with different approximations of the residual effects are implemented and compared. A new eigenvalue scheme based on the dynamic compliance matrix is proposed. A periodic open thin-wall structure is considered as an application for which both free-wave characteristics and forced responses are computed. Aspects such as accuracy, efficiency, and convergence of the proposed method are discussed and compared with those of the Craig-Bampton fixed-interface CMS method. The methods and main findings are further verified by using another more complex periodic structure. Among the implemented models, the minimum model size is achieved by the exact CMS method. The exact CMS method only requires the modes below the maximum analysing frequency, thereby reducing the model size of the open thin-wall structure from 4416 to 16. The most numerically efficient model for WFEM is MacNeal's CMS method, where the CPU time of free-wave analysis can be reduced by 97% for the open thin-wall structure. (C) 2017 Elsevier Ltd. All rights reserved.
机译:波动有限元法(WFEM)是一种有效的数值工具,用于分析中频和高频处的波传播特性和强迫响应。在这项工作中,我们将自由接口组件模态综合(CMS)方法引入WFEM,以加快计算速度,同时保持精度。实施并比较了几种具有不同残差近似值的自由接口CMS方法。提出了一种基于动态依从矩阵的特征值方案。周期性的开放式薄壁结构被认为是可以计算自由波特性和强制响应的应用。讨论了所提方法的准确性,效率和收敛性等方面,并与Craig-Bampton固定接口CMS方法进行了比较。通过使用另一个更复杂的周期结构进一步验证了方法和主要发现。在已实现的模型中,最小模型大小是通过精确的CMS方法实现的。精确的CMS方法只需要低于最大分析频率的模式,从而将开放式薄壁结构的模型尺寸从4416减小到16。WFEM的数字效率最高的模型是MacNeal的CMS方法,其CPU时间为对于开放式薄壁结构,波浪分析可以减少97%。 (C)2017 Elsevier Ltd.保留所有权利。

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