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Formulation of Flexibility-Based Component Mode Synthesis for Transient Analysis

Authors
Chung, SeobKim, Jin-GyunChae, Soo-WonPark, K. C.
Issue Date
2월-2019
Publisher
AMER INST AERONAUTICS ASTRONAUTICS
Citation
AIAA JOURNAL, v.57, no.2, pp.858 - 869
Indexed
SCIE
SCOPUS
Journal Title
AIAA JOURNAL
Volume
57
Number
2
Start Page
858
End Page
869
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/67889
DOI
10.2514/1.J057441
ISSN
0001-1452
Abstract
Flexibility-based component mode synthesis (F-CMS) is one of the most popular free-interface component mode synthesis (CMS) methods. In the F-CMS method, localized Lagrange multipliers are employed along the interface boundary as a constraint condition between substructures; thus, it offers various advantages, including the perfect independence of subdomains. the easy treatment of the incompatible interface mesh, and parallelized formulation. However, the use of the Lagrange multipliers requires nonstandard specialized eigenvalue analysis procedures. This, in turn, requires a considerable modification in the standard displacement-based time integrators for transient analysis by using the F-CMS method. In the present study, the localized Lagrange multipliers are condensed by exploiting residual flexibility, and this results in a standard displacement-based reduced-order model. A report is made of the performance of the proposed method as compared to several CMS methods, with favorable features observed for the proposed method.
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