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Zhebel, E. (author), Minisini, S. (author), Mulder, W.A. (author)
We solve the three-dimensional acoustic wave equation, discretized on tetrahedral meshes. Two methods are considered: mass-lumped continuous finite elements and the symmetric interior-penalty discontinuous Galerkin method (SIP-DG). Combining the spatial discretization with the leap-frog time-stepping scheme, which is second-order accurate and...
conference paper 2012
document
Sevilla, R. (author), Fernández-Méndez, S. (author), Huerta, A. (author)
An improvement of the classical finite element method is proposed. It considers an exact representation of the geometry by means of the usual CAD description of the boundary with Non-Uniform Rational B-Splines (NURBS). For elements not intersecting the boundary, a standard finite element interpolation and numerical integration is used....
conference paper 2006
document
Guermond, J.L. (author), Laguerre, R. (author), Léorat, J. (author), Nore, C. (author)
The Maxwell equations in the MHD limit in heterogeneous domains composed of conducting and nonconducting regions are solved by using Lagrange finite elements and by enforcing continuities across interfaces using an interior penalty technique. The method is shown to be stable and convergent and is validated by convergence tests. It is used to...
conference paper 2006