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Ritz vector-based substructuring method using interface eigenmode-shape pseudo-forces

We propose a new Ritz vector-based dynamic substructuring method which substitutes the unit pseudo-forces applied at the adjacent degrees of freedom (DOFs) using distributed forces. One of the main problems of the Ritz vector and unit pseudo-force-based dynamic substructuring method is the strong de...

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Bibliographic Details
Published in:Finite elements in analysis and design 2023-12, Vol.227, p.104023, Article 104023
Main Authors: Koh, Hyeong Seok, Yoon, Gil Ho
Format: Article
Language:English
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Summary:We propose a new Ritz vector-based dynamic substructuring method which substitutes the unit pseudo-forces applied at the adjacent degrees of freedom (DOFs) using distributed forces. One of the main problems of the Ritz vector and unit pseudo-force-based dynamic substructuring method is the strong dependence of the number of reduction bases on the interface DOF, which is not reduced by substructuring. This type of dependency causes the number of reduction bases obtained by the unit pseudo-forces to be always exceed or at least equal to the number of interface DOFs. The number of Ritz vector bases required at adjacent interface DOFs is efficiently reduced by approximating the unit pseudo-force as a type of distributed force using an energy transfer approach. The distributed forces, called eigenmode-shape pseudo-forces, comprise low modes computed through the eigenvalue problem of substructures corresponding to adjacent DOFs, and a set of distributed forces is a subspace of the vector space spanned by the unit force vectors. The efficiency of the substructuring method may be increased by reducing the number of reduction bases. This approach was demonstrated through several numerical examples. •The decrease of the computational efficiency of the substructuring method in complex interfaces is resolved.•The eigenmode-shape pseudo force is generated by solving the eigenvalue problem for interfaces.•The bases computed with the present approach contain the dynamic interface modes as well as the static interface modes of the conventional component mode synthesis.
ISSN:0168-874X
1872-6925
DOI:10.1016/j.finel.2023.104023