AbstractSecond-, fourth- and sixth-order one-step methods have been constructed for the solution of wave propagation problems. The method is based on the first-order system formulation of the wave equation, and uses a staggered grid both in space and time. The method is applied with good results to a problem with discontinuous coefficients without using any special procedure across the discontinuity. The behavior of the truncation error has been investigated for one-dimensional problems and stability criteria have been derived for one- and two-dimensional cases
International audienceStaggered discontinuous Galerkin methods have been developed recently and are ...
International audienceSolving efficiently the wave equations involved in modeling acoustic, elastic ...
This paper presents a review of high-order and optimized finite-difference methods for numerically s...
AbstractSecond-, fourth- and sixth-order one-step methods have been constructed for the solution of ...
Wave propagation is described by the wave equation, or in the time-periodic case, by the Helmholtz e...
This paper deals with the high-order discontinuous Galerkin (DG) method for solving wave propagation...
We present a study of elastic wave propagation in isotropic media. The Discontinuous Galerkin Method...
For wave propagation over distances of many wavelengths, high-order finite difference methods on sta...
Wave propagation problems can be modeled by partial differential equations. In this thesis, we study...
A strictly stable high order finite difference (HOFD) scheme for the scalar wave equation with disco...
Electromagnetic wave propagation close to a material discontinuity is simulated by using summation b...
International audienceWe present a new high ordermethod in space and time for solving the wave equat...
In this paper we propose a high-order space-time discontinuous Galerkin (STDG) method for solving of...
Summarization: Two finite-difference schemes for solving the elastic wave equation in heterogeneous ...
Finite difference methods for solving problems of time-harmonic acoustics are developed and analyzed...
International audienceStaggered discontinuous Galerkin methods have been developed recently and are ...
International audienceSolving efficiently the wave equations involved in modeling acoustic, elastic ...
This paper presents a review of high-order and optimized finite-difference methods for numerically s...
AbstractSecond-, fourth- and sixth-order one-step methods have been constructed for the solution of ...
Wave propagation is described by the wave equation, or in the time-periodic case, by the Helmholtz e...
This paper deals with the high-order discontinuous Galerkin (DG) method for solving wave propagation...
We present a study of elastic wave propagation in isotropic media. The Discontinuous Galerkin Method...
For wave propagation over distances of many wavelengths, high-order finite difference methods on sta...
Wave propagation problems can be modeled by partial differential equations. In this thesis, we study...
A strictly stable high order finite difference (HOFD) scheme for the scalar wave equation with disco...
Electromagnetic wave propagation close to a material discontinuity is simulated by using summation b...
International audienceWe present a new high ordermethod in space and time for solving the wave equat...
In this paper we propose a high-order space-time discontinuous Galerkin (STDG) method for solving of...
Summarization: Two finite-difference schemes for solving the elastic wave equation in heterogeneous ...
Finite difference methods for solving problems of time-harmonic acoustics are developed and analyzed...
International audienceStaggered discontinuous Galerkin methods have been developed recently and are ...
International audienceSolving efficiently the wave equations involved in modeling acoustic, elastic ...
This paper presents a review of high-order and optimized finite-difference methods for numerically s...