Title of article
Coupled BEM–FEM for the convected Helmholtz equation with non-uniform flow in a bounded domain
Author/Authors
Javier Linares-Casenave، نويسنده , , Fabien and Ern، نويسنده , , Alexandre and Sylvand، نويسنده , , Guillaume، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
18
From page
627
To page
644
Abstract
We consider the convected Helmholtz equation modeling linear acoustic propagation at a fixed frequency in a subsonic flow around a scattering object. The flow is supposed to be uniform in the exterior domain far from the object, and potential in the interior domain close to the object. Our key idea is the reformulation of the original problem using the Prandtl–Glauert transformation on the whole flow domain, yielding (i) the classical Helmholtz equation in the exterior domain and (ii) an anisotropic diffusive PDE with skew-symmetric first-order perturbation in the interior domain such that its transmission condition at the coupling boundary naturally fits the Neumann condition from the classical Helmholtz equation. Then, efficient off-the-shelf tools can be used to perform the BEM–FEM coupling, leading to two novel variational formulations for the convected Helmholtz equation. The first formulation involves one surface unknown and can be affected by resonant frequencies, while the second formulation avoids resonant frequencies and involves two surface unknowns. Numerical simulations are presented to compare the two formulations.
Keywords
integral equations , Prandtl–Glauert transformation , BEM–FEM coupling , Convected Helmholtz equation , Combined Field Integral Equations
Journal title
Journal of Computational Physics
Serial Year
2014
Journal title
Journal of Computational Physics
Record number
1486244
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