AbstractThis work is concerned with the convergence/stability analysis of a parallel algorithm which is used to solve the incompressible Navier-Stokes problem. This relies on a splitting of the main differential operator, thanks to which the most important difficulties (nonlinearity and incompressibility) can be considered independently. Thus, one is led to the formulation of subproblems of two kinds which can be solved simultaneously by two different processors. We prove conditional stability and convergence; this can serve to justify the accuracy of previous numerical results
Abstract. We consider the time dependent Stokes equation on a finite time interval and on a uniform ...
The results of the implementation of a Navier-Stokes algorithm on three parallel/vector computers ar...
In this paper, we will be mainly concerned with a parallel algorithm (in time and space) which is us...
AbstractThis work is concerned with the convergence/stability analysis of a parallel algorithm which...
AbstractWe introduce and analyze a parallel algorithm for solving the Navier-Stokes equations based ...
AbstractWe introduce and analyze a parallel algorithm for solving the Navier-Stokes equations based ...
Abstract. We provide a convergence analysis for a new fractional time-stepping technique for the inc...
In this paper, we will be mainly concerned with a parallel algorithm (in time and space) which is us...
In this paper, we will be mainly concerned with a parallel algorithm (in time and space) which is us...
The accuracy and the applicability of the parallel diagonal dominant (PDD) algorithm are explored fo...
In this work, an efficient direction splitting algorithm for solving incompressible Navier-Stokes eq...
In this work, an efficient direction splitting algorithm for solving incompressible Navier-Stokes eq...
A parallel splitting-up method (or the so called alternating-direction method) is proposed in this p...
We consider the numerical solution of the stationary incompressible Navier-Stokes equations for a wi...
AbstractA parallel splitting-up method (or the so called alternating-direction method) is proposed i...
Abstract. We consider the time dependent Stokes equation on a finite time interval and on a uniform ...
The results of the implementation of a Navier-Stokes algorithm on three parallel/vector computers ar...
In this paper, we will be mainly concerned with a parallel algorithm (in time and space) which is us...
AbstractThis work is concerned with the convergence/stability analysis of a parallel algorithm which...
AbstractWe introduce and analyze a parallel algorithm for solving the Navier-Stokes equations based ...
AbstractWe introduce and analyze a parallel algorithm for solving the Navier-Stokes equations based ...
Abstract. We provide a convergence analysis for a new fractional time-stepping technique for the inc...
In this paper, we will be mainly concerned with a parallel algorithm (in time and space) which is us...
In this paper, we will be mainly concerned with a parallel algorithm (in time and space) which is us...
The accuracy and the applicability of the parallel diagonal dominant (PDD) algorithm are explored fo...
In this work, an efficient direction splitting algorithm for solving incompressible Navier-Stokes eq...
In this work, an efficient direction splitting algorithm for solving incompressible Navier-Stokes eq...
A parallel splitting-up method (or the so called alternating-direction method) is proposed in this p...
We consider the numerical solution of the stationary incompressible Navier-Stokes equations for a wi...
AbstractA parallel splitting-up method (or the so called alternating-direction method) is proposed i...
Abstract. We consider the time dependent Stokes equation on a finite time interval and on a uniform ...
The results of the implementation of a Navier-Stokes algorithm on three parallel/vector computers ar...
In this paper, we will be mainly concerned with a parallel algorithm (in time and space) which is us...