A family of implicit-in-time mixed finite element schemes is presented for the numerical approximation of the acoustic wave equation. The mixed space discretization is based on the displacement form of the wave equation and the time-stepping method employs a three-level one-parameter scheme. A rigorous stability analysis is presented based on energy estimation and sharp stability results are obtained. A convergence analysis is carried out and optimal a priorierror estimates for both displacement and pressure are derived
In this paper we analyze time marching schemes for the wave equation in mixed form. The problem is ...
An analysis of mixed finite element approximations for periodic acoustic wave propagatio
A numerical approximation of the acoustic wave equation with first order absorbing boundary conditio...
A family of implicit-in-time mixed finite element schemes is presented for the numerical approximati...
Abstract. In this paper we derive optimal a priori L∞(L2) error estimates for mixed finite element d...
AbstractIn this paper we discuss the numerical approximation of the displacement form of the acousti...
In this paper we analyze time marching schemes for the wave equation in mixed form. The problem is d...
In this paper we analyze time marching schemes for the wave equation in mixed form. The problem is d...
A mixed finite element Galerkin method is analyzed for a strongly damped wave equation. Optimal erro...
International audienceWe construct and analyze a new family of rectangular (two-dimensional) or cubi...
We design a Mixed Virtual Element Method for the approximated solution to the first-order form of th...
We design a Mixed Virtual Element Method for the approximated solution to the first-order form of th...
A numerical approximation of the acoustic wave equation is presented. The spatial discretization is ...
We construct and analyze a new family of rectangular (two-dimensional) or cubic (three-dimensional) ...
AbstractIn this paper we discuss the numerical approximation of the displacement form of the acousti...
In this paper we analyze time marching schemes for the wave equation in mixed form. The problem is ...
An analysis of mixed finite element approximations for periodic acoustic wave propagatio
A numerical approximation of the acoustic wave equation with first order absorbing boundary conditio...
A family of implicit-in-time mixed finite element schemes is presented for the numerical approximati...
Abstract. In this paper we derive optimal a priori L∞(L2) error estimates for mixed finite element d...
AbstractIn this paper we discuss the numerical approximation of the displacement form of the acousti...
In this paper we analyze time marching schemes for the wave equation in mixed form. The problem is d...
In this paper we analyze time marching schemes for the wave equation in mixed form. The problem is d...
A mixed finite element Galerkin method is analyzed for a strongly damped wave equation. Optimal erro...
International audienceWe construct and analyze a new family of rectangular (two-dimensional) or cubi...
We design a Mixed Virtual Element Method for the approximated solution to the first-order form of th...
We design a Mixed Virtual Element Method for the approximated solution to the first-order form of th...
A numerical approximation of the acoustic wave equation is presented. The spatial discretization is ...
We construct and analyze a new family of rectangular (two-dimensional) or cubic (three-dimensional) ...
AbstractIn this paper we discuss the numerical approximation of the displacement form of the acousti...
In this paper we analyze time marching schemes for the wave equation in mixed form. The problem is ...
An analysis of mixed finite element approximations for periodic acoustic wave propagatio
A numerical approximation of the acoustic wave equation with first order absorbing boundary conditio...