Numerical Computation Using Perturbation Expansion for a 3D Coupled Structural-Acoustic System
Numerical Computation Using Perturbation Expansion for a 3D Coupled Structural-Acoustic System

概要

The structural acoustic coupled vibration problem is very important in many engineering applications such as quality control of vehicles. Formulating the problem using the finite element method leads to a non\symmetric generalized eigenvalue problem. We show that the problem can be reformulated into uncoupled structural and acoustic problems by introducing a coupling strength parameter ε as a multiplier applied to the off-diagonal coupling terms. The discretized uncoupled problems then lead to a pair of symmetric generalized eigenvalue problems which can be efficiently and independently solved. The solutions of the uncoupled problems are then used to compute the coupled solution using the perturbation method and the introduced coupling strength parameter. We confirm the adequacy of the method by investigating numerical examples for a two dimensional uniform mesh, whose exact solution is known, as well as arbitrary meshes for a car-like example.

産業界への展開例・適用分野

car simulation

研究者

氏名 専攻 研究室 役職/学年
Li Douglas 先端数理科学専攻 Li Douglas 特定講師
Craig Douglas その他: その他 Craig Douglas 教授