In this paper, a spacetime finite element method for evolution problems that is second-order accurate in both space and time is proposed. For convection dominated problems, the elements may be aligned along the characteristics in spacetime, which results in a CrankNicolson method along the characteristics. The method is also suitable as an alternative to other moving mesh methods for problems in deforming domains. Numerical examples dealing with diffusion and convection are given
Abstract. The paper studies a finite element method for computing transport and diffusion along evol...
Many problems in biology involve growth. In numerical simulations it can therefore be very convenien...
The paper describes an approximately characteristic finite element method for the solution of the ti...
In this paper, a spacetime finite element method for evolution problems that is second-order accur...
This is a study of an application of finite element methods designed for convection-dominated, time-...
This article deals with moving finite element methods by use of the time-discontinuous Galerkin form...
Space-time finite element methods are presented to accurately solve elastodynamics problems that inc...
Space-time finite element methods are presented to accurately solve elastodynamics problems that inc...
International audienceWe present a space-time finite element method (STFEM) for linearised elastodyn...
AbstractIn this work, an unconditionally stable space-time finite element method is derived in its s...
Large-scale simulations of time-dependent partial differential equations are, at present, largely re...
We present a high-order finite-element method for moving body and fluid/structure interaction proble...
An overview is given of a space-time discontinuous Galerkin finite element method for the compressib...
Space-time discretisations of physical problems involving moving and deforming bodies, boundaries an...
This paper discusses the application of an r- refinement, moving mesh technique for the solution of ...
Abstract. The paper studies a finite element method for computing transport and diffusion along evol...
Many problems in biology involve growth. In numerical simulations it can therefore be very convenien...
The paper describes an approximately characteristic finite element method for the solution of the ti...
In this paper, a spacetime finite element method for evolution problems that is second-order accur...
This is a study of an application of finite element methods designed for convection-dominated, time-...
This article deals with moving finite element methods by use of the time-discontinuous Galerkin form...
Space-time finite element methods are presented to accurately solve elastodynamics problems that inc...
Space-time finite element methods are presented to accurately solve elastodynamics problems that inc...
International audienceWe present a space-time finite element method (STFEM) for linearised elastodyn...
AbstractIn this work, an unconditionally stable space-time finite element method is derived in its s...
Large-scale simulations of time-dependent partial differential equations are, at present, largely re...
We present a high-order finite-element method for moving body and fluid/structure interaction proble...
An overview is given of a space-time discontinuous Galerkin finite element method for the compressib...
Space-time discretisations of physical problems involving moving and deforming bodies, boundaries an...
This paper discusses the application of an r- refinement, moving mesh technique for the solution of ...
Abstract. The paper studies a finite element method for computing transport and diffusion along evol...
Many problems in biology involve growth. In numerical simulations it can therefore be very convenien...
The paper describes an approximately characteristic finite element method for the solution of the ti...