Title of article
A mixed hybrid formulation based on oscillated finite element polynomials for solving Helmholtz problems
Author/Authors
Gillman، نويسنده , , Adrianna and Djellouli، نويسنده , , Rabia and Amara، نويسنده , , Mohamed، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
11
From page
515
To page
525
Abstract
A mixed-hybrid-type formulation is proposed for solving Helmholtz problems. This method is based on (a) a local approximation of the solution by oscillated finite element polynomials and (b) the use of Lagrange multipliers to “weakly” enforce the continuity across element boundaries. The computational complexity of the proposed discretization method is determined mainly by the total number of Lagrange multiplier degrees of freedom introduced at the interior edges of the finite element mesh, and the sparsity pattern of the corresponding system matrix. Preliminary numerical results are reported to illustrate the potential of the proposed solution methodology for solving efficiently Helmholtz problems in the mid- and high-frequency regimes.
Keywords
Lagrange multipliers , Helmholtz problems , Oscillated polynomials , Plane waves , Pollution effect , Mixed and hybrid FEM , Discontinuous Galerkin Method , Wave number
Journal title
Journal of Computational and Applied Mathematics
Serial Year
2007
Journal title
Journal of Computational and Applied Mathematics
Record number
1553863
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