Multiphysics model reduction of symmetric vibro-acoustic formulation with a priori error estimation criteria

  • Kim, Soo Min
  • Chae, Soo-Won
  • Kim, Jin-Gyun
Citations

WEB OF SCIENCE

14
Citations

SCOPUS

14

초록

A new multiphysics mode synthesis (MMS) is presented for the construction of reduced-order models of acoustic fluid-structure interaction systems. The present acoustic-structure interaction model is symmetric and consists of the fluid pressurep, the fluid displacement potential phi, and the structural displacementu. In carrying out MMS, the structure is first reduced, which is then applied to the coupling terms in the acoustic (p, phi)-equations. The fluid parts (p, phi) are then reduced while preserving the coupling effects, resulting in improved accuracy. A combination of a priori modal contribution indicator and cumulative error estimator are derived from the moment matching approach that provides rational criteria for how many structural and fluid modes need to be retained for the construction of reduced models. An iterative MMS algorithm is then proposed by combining the modal indicators and error estimators. The performance of the proposed MMS method is illustrated via numerical examples.

키워드

a priori error estimatorfluid-structure interactionmode selectionmultiphysics mode synthesisreduced-order modelingstructure-acoustic interactionOPTIMAL MODAL REDUCTIONVARIATIONAL ANALYSISSUBSYSTEMS
제목
Multiphysics model reduction of symmetric vibro-acoustic formulation with a priori error estimation criteria
저자
Kim, Soo MinChae, Soo-WonKim, Jin-Gyun
DOI
10.1002/nme.6524
발행일
2020-12-15
유형
Article
저널명
International Journal for Numerical Methods in Engineering
121
23
페이지
5381 ~ 5404