On the stable mode selection for efficient component mode synthesis of geometrically nonlinear beams

Citations

WEB OF SCIENCE

8

초록

A large-scale structural system containing a substantial amount of degrees of freedom requires many computations to achieve the optimum of the system. In particular, nonlinear structural analysis compels a recursive calculation in limited computational resources. Thus, a powerful tool, which improves the efficiency of analysis in the limitations, may be required. In structural dynamics, various methods related to model order reduction have been developed in the past decades [1-15]. In addition, several mode selection methods to enhance the rate of reduction have been reported in the Refs. [16-19]. Most of them are focused on dynamic analysis. In this paper, we focus on the nonlinear static response of reduced order model with a proper mode selection criterion. To construct the nonlinear reduced order model, modal derivatives [10-14], which are the quadratic enhancement of modal basis, have been employed. The degrees of freedom used to the model reduction have been selected via the singular value decomposition (SVD). Finally, the performance of the selection scheme for the static problem is verified via numerical examples.

키워드

Component mode synthesis; Geometric nonlinearity; Modal derivatives; Mode selection; Model order reduction; Substructuring; PROPER ORTHOGONAL DECOMPOSITION; ORDER REDUCTION; DERIVATIVES; SYSTEMS
제목
On the stable mode selection for efficient component mode synthesis of geometrically nonlinear beams
저자
Jeong, Yong-Min; Kim, Jun-Sik
DOI
10.1007/s12206-020-0628-z
발행일
2020-07
유형
Article
저널명
Journal of Mechanical Science and Technology
권
34
호
7
페이지
2961 ~ 2973