Title of article
A direct hybrid Finite Element – Wave Based Method for the steady-state analysis of acoustic cavities with poro-elastic damping layers using the coupled Helmholtz–Biot equations
Author/Authors
Jonckheere، نويسنده , , Stijn and Deckers، نويسنده , , Elke and Van Genechten، نويسنده , , Bert and Vandepitte، نويسنده , , Dirk and Desmet، نويسنده , , Wim، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
14
From page
144
To page
157
Abstract
Currently, element based approaches are most often used for the harmonic analysis of acoustic and poro-elastic problems. However, due to their inherent element concept, these methods are limited in frequency because of a strongly increasing computational cost. A hybrid coupling between the recently developed Wave Based Method (WBM) for solving the Helmholtz equation and the Finite Element Method (FEM) for solving the steady-state Biot equations for poro-elastic materials has the potential to relax this frequency limitation. By using wave functions which exactly satisfy the governing differential equation to describe the dynamic field variables, a high convergence rate can be obtained in the acoustic cavity. The use of the FEM for the poro-elastic subproblem retains the ability to model the complexly shaped multi-layered trim in great detail.
aper derives the coupling terms between the acoustic WBM and the poro-elastic FEM, according to two formulations: the ( u s , u f ) - and the ( u s , p f ) -formulation. Due to the peculiarities of these different formulations, special attention is required in the derivation of the coupling terms. Two numerical validation cases show the improved efficiency of this hybrid approach as compared to classic finite element approaches and illustrate the potential of the hybrid method as a powerful tool for the analysis of acoustic cavities with localised damping treatments.
Keywords
Direct hybrid approach , Finite element method , Biot theory , Wave Based Method , Poro-elastic materials
Journal title
Computer Methods in Applied Mechanics and Engineering
Serial Year
2013
Journal title
Computer Methods in Applied Mechanics and Engineering
Record number
1596056
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