The virtual element method (VEM) is a Galerkin approximation method that extends the finite element method to polytopal meshes. In this paper, we present two different conforming virtual element formulations for the numerical approximation of the Stokes problem that work on polygonal meshes. The velocity vector field is approximated in the virtual element spaces of the two formulations, while the pressure variable is approximated through discontinuous polynomials. Both formulations are inf-sup stable and convergent with optimal convergence rates in the L2 and energy norm. We assess the effectiveness of these numerical approximations by investigating their behavior on a representative benchmark problem. The observed convergence rates are in ...
In this paper we introduce and analyze a virtual element method (VEM) for an augmented mixed variati...
In this paper we propose a stabilized conforming finite volume element method for the Stokes equatio...
In this paper we propose a stabilized conforming finite volume element method for the Stokes equatio...
The Virtual Element Method (VEM) is a Galerkin approximation method that extends the Finite Element ...
The Virtual Element Method (VEM) is a Galerkin approximation method that extends the Finite Element ...
We present the non-conforming Virtual Element Method (VEM) for the numerical approximation of veloci...
A family of virtual element methods for the two-dimensional Navier-Stokes equations is proposed and ...
In the present paper we develop a new family of Virtual Elements for the Stokes problem on polygonal...
In the present paper we develop a new family of Virtual Elements for the Stokes problem on polygonal...
In the present paper we develop a new family of Virtual Elements for the Stokes problem on polygonal...
In the present paper we develop a new family of Virtual Elements for the Stokes problem on polygonal...
In the present paper we develop a new family of Virtual Elements for the Stokes problem on polygonal...
In the present paper we develop a new family of Virtual Elements for the Stokes problem on polygonal...
In this paper we propose and analyze a novel stream formulation of the virtual element method (VEM) ...
Consistent discretizations of differential equations on polygonal and polyhedral grids is an active ...
In this paper we introduce and analyze a virtual element method (VEM) for an augmented mixed variati...
In this paper we propose a stabilized conforming finite volume element method for the Stokes equatio...
In this paper we propose a stabilized conforming finite volume element method for the Stokes equatio...
The Virtual Element Method (VEM) is a Galerkin approximation method that extends the Finite Element ...
The Virtual Element Method (VEM) is a Galerkin approximation method that extends the Finite Element ...
We present the non-conforming Virtual Element Method (VEM) for the numerical approximation of veloci...
A family of virtual element methods for the two-dimensional Navier-Stokes equations is proposed and ...
In the present paper we develop a new family of Virtual Elements for the Stokes problem on polygonal...
In the present paper we develop a new family of Virtual Elements for the Stokes problem on polygonal...
In the present paper we develop a new family of Virtual Elements for the Stokes problem on polygonal...
In the present paper we develop a new family of Virtual Elements for the Stokes problem on polygonal...
In the present paper we develop a new family of Virtual Elements for the Stokes problem on polygonal...
In the present paper we develop a new family of Virtual Elements for the Stokes problem on polygonal...
In this paper we propose and analyze a novel stream formulation of the virtual element method (VEM) ...
Consistent discretizations of differential equations on polygonal and polyhedral grids is an active ...
In this paper we introduce and analyze a virtual element method (VEM) for an augmented mixed variati...
In this paper we propose a stabilized conforming finite volume element method for the Stokes equatio...
In this paper we propose a stabilized conforming finite volume element method for the Stokes equatio...