International audienceLocally refined meshes impose severe stability constraints on explicit time-stepping methods for the numerical simulation of time dependent wave phenomena. To overcome that stability restriction, local time-stepping methods are developed, which allow arbitrarily small time steps precisely where small elements in the mesh are located. When combined with a symmetric finite element discretization in space with an essentially diagonal mass matrix, the resulting discrete numerical scheme is explicit, is inherently parallel, and exactly conserves a discrete energy. Starting from the standard second-order “leap-frog” scheme, time-stepping methods of arbitrary order of accuracy are derived. Numerical experiments illustrate the...
International audienceA family of fourth order coupled implicit-explicit time schemes is presented a...
The Discontinuous Galerkin Time Domain (DGTD) methods are now popular for the solution of wave propa...
The Discontinuous Galerkin Time Domain (DGTD) methods are now widely used for the solution of wave p...
Abstract. Locally refined meshes impose severe stability constraints on explicit time-stepping metho...
International audienceLocal mesh refinement severely impedes the efficiency of explicit time-steppin...
Semi-discrete Galerkin formulations of transient wave equations, either with conforming or discontin...
Local mesh refinement severly impedes the efficiency of explicit time-stepping methods for numerical...
Local mesh refinement severly impedes the effciency of explicit time-stepping methods for numerical ...
Local adaptivity and mesh refinement are key to the efficient simulation of wave phenomena in hetero...
AbstractExplicit local time-stepping methods are derived for time dependent Maxwell equations in con...
Locally refined meshes impose severe stability constraints on explicit time-stepping methods for the...
Local time-stepping methods permit to overcome the severe stability constraint on explicit methods c...
Local mesh refinement significantly in uences the performance of explicit time-stepping methods for ...
In a wide range of real-world applications in acoustics, electromagnetism and elasticity, relevance ...
Locally refined meshes severely impede the efficiency of explicit Runge-Kutta (RK) methods for the s...
International audienceA family of fourth order coupled implicit-explicit time schemes is presented a...
The Discontinuous Galerkin Time Domain (DGTD) methods are now popular for the solution of wave propa...
The Discontinuous Galerkin Time Domain (DGTD) methods are now widely used for the solution of wave p...
Abstract. Locally refined meshes impose severe stability constraints on explicit time-stepping metho...
International audienceLocal mesh refinement severely impedes the efficiency of explicit time-steppin...
Semi-discrete Galerkin formulations of transient wave equations, either with conforming or discontin...
Local mesh refinement severly impedes the efficiency of explicit time-stepping methods for numerical...
Local mesh refinement severly impedes the effciency of explicit time-stepping methods for numerical ...
Local adaptivity and mesh refinement are key to the efficient simulation of wave phenomena in hetero...
AbstractExplicit local time-stepping methods are derived for time dependent Maxwell equations in con...
Locally refined meshes impose severe stability constraints on explicit time-stepping methods for the...
Local time-stepping methods permit to overcome the severe stability constraint on explicit methods c...
Local mesh refinement significantly in uences the performance of explicit time-stepping methods for ...
In a wide range of real-world applications in acoustics, electromagnetism and elasticity, relevance ...
Locally refined meshes severely impede the efficiency of explicit Runge-Kutta (RK) methods for the s...
International audienceA family of fourth order coupled implicit-explicit time schemes is presented a...
The Discontinuous Galerkin Time Domain (DGTD) methods are now popular for the solution of wave propa...
The Discontinuous Galerkin Time Domain (DGTD) methods are now widely used for the solution of wave p...