This paper introduces two stabilization schemes for the Least Squares Commutator (LSC) preconditioner developed by Elman, Howle, Shadid, Shuttleworth and Tuminaro [SIAM J. Sci. Comput., 27, 2006, pp. 1651--1668] for the incompressible Navier-Stokes equations. This preconditioning methodology is one of several choices that are effective for Navier-Stokes equations, and it has the advantage of being defined from strictly algebraic considerations. It has previously been limited in its applicability to div-stable discretizations of the Navier-Stokes equations. This paper shows how to extend the same methodology to stabilized low-order mixed finite element approximation methods
The design and analysis of a class of stabilization operators suitable for space-time Galerkin least...
We introduce a preconditioner for the linearized Navier-Stokes equations that is effective when eith...
AbstractWe outline a new class of robust and efficient methods for solving subproblems that arise in...
This paper introduces two stabilization schemes for the Least Squares Commutator (LSC) preconditione...
Abstract. This paper introduces two stabilization schemes for the Least Squares Commutator (LSC) pre...
In this paper the design and analysis of a dimensionally consistent stabilization operator for a tim...
Boundary conditions are analyzed for a class of preconditioners used for the incompressible Navier-S...
We present a preconditioner for the linearised Navier-Stokes equations which is based on the combina...
A least-squares finite element method, based on the velocity-pressure-vorticity formulation, is deve...
In this paper we discuss the design and analysis of a class of stabilization operators for space-tim...
We give a brief description with references of work on fast solution methods for incompressible Navi...
We outline a new class of robust and efficient methods for solving subproblems that arise in the lin...
Discretization and linearization of the steady-state Navier-Stokes equations gives rise to a nonsymm...
We present a new variant of the classical weighted least-squares stabilization for the Stokes equati...
Efficient incompressible flow simulations, using inf-sup stable pairs of finite element spaces, requ...
The design and analysis of a class of stabilization operators suitable for space-time Galerkin least...
We introduce a preconditioner for the linearized Navier-Stokes equations that is effective when eith...
AbstractWe outline a new class of robust and efficient methods for solving subproblems that arise in...
This paper introduces two stabilization schemes for the Least Squares Commutator (LSC) preconditione...
Abstract. This paper introduces two stabilization schemes for the Least Squares Commutator (LSC) pre...
In this paper the design and analysis of a dimensionally consistent stabilization operator for a tim...
Boundary conditions are analyzed for a class of preconditioners used for the incompressible Navier-S...
We present a preconditioner for the linearised Navier-Stokes equations which is based on the combina...
A least-squares finite element method, based on the velocity-pressure-vorticity formulation, is deve...
In this paper we discuss the design and analysis of a class of stabilization operators for space-tim...
We give a brief description with references of work on fast solution methods for incompressible Navi...
We outline a new class of robust and efficient methods for solving subproblems that arise in the lin...
Discretization and linearization of the steady-state Navier-Stokes equations gives rise to a nonsymm...
We present a new variant of the classical weighted least-squares stabilization for the Stokes equati...
Efficient incompressible flow simulations, using inf-sup stable pairs of finite element spaces, requ...
The design and analysis of a class of stabilization operators suitable for space-time Galerkin least...
We introduce a preconditioner for the linearized Navier-Stokes equations that is effective when eith...
AbstractWe outline a new class of robust and efficient methods for solving subproblems that arise in...