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The investigation of dynamic behaviour of a structure using wave-based substructuring method

机译:基于波动的子结构法研究结构的动力特性

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There is an increasing need for accurate, efficient and economical methods for the investigation of the dynamic behaviour of large complex structures within the engineering community. The component mode synthesis (CMS) has been perceived by the community to be an attractive efficient method for the investigation. However, the method has substantial shortcomings, particularly in analysing a structure having a large number of interface degrees of freedom (DOFs) between substructures. This paper puts forward a method, based upon the wave-based substructuring (WBS) for the investigation of the dynamic behaviour of a structure with a large number of interface DOFs. The finite element method is used to construct the full finite element model of the structure and NASTRAN 103 is used for the normal modes analysis. A new finite element model of the structure with reduced interface DOFs is constructed based on the WBS. The measurement of the dynamic behaviour of the structure is carried out using free-free boundary conditions and an impact hammer test. The predicted results of the proposed method are then compared with those from the full finite element model and experimental counterparts. The accuracy and efficiency of the proposed method are discussed and illustrated with two different case studies.
机译:越来越需要准确,有效和经济的方法来研究工程界内大型复杂结构的动力行为。社区已将组件模式综合(CMS)视为一种有吸引力的有效调查方法。但是,该方法具有很大的缺点,特别是在分析在子结构之间具有大量界面自由度(DOF)的结构时。提出了一种基于波基子结构(WBS)的方法,用于研究具有大量界面自由度的结构的动力行为。有限元方法用于构造结构的完整有限元模型,而NASTRAN 103用于法向模式分析。基于WBS构造了具有减小的界面自由度的结构的新有限元模型。使用自由边界条件和冲击锤试验对结构的动力学行为进行测量。然后将所提方法的预测结果与完整有限元模型和实验结果进行比较。通过两个不同的案例研究,对所提出方法的准确性和效率进行了讨论和说明。

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