AbstractWe introduce and analyze a parallel algorithm for solving the Navier-Stokes equations based on the splitting of the two main difficulties involved, the presence of nonlinear terms and the zero divergence condition. The numerical results obtained by using the proposed algorithm are quite consistent with those furnished by other known algorithms. Numerical results are discussed, as well as the advantages of this new algorithm
AbstractThe decomposition method is applied to the Navier-Stokes equation to provide a solution with...
The past decade has seen considerable activity in algorithm development for the Navier-Stokes equati...
AbstractThe Navier-Stokes equations describe a large class of fluid flows but are difficult to solve...
AbstractWe introduce and analyze a parallel algorithm for solving the Navier-Stokes equations based ...
AbstractThis work is concerned with the convergence/stability analysis of a parallel algorithm which...
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...
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...
summary:This paper concerns a parallel algorithm of the first-order projection method for solving th...
summary:This paper concerns a parallel algorithm of the first-order projection method for solving th...
AbstractA parallel splitting-up method (or the so called alternating-direction method) is proposed i...
The results of the implementation of a Navier-Stokes algorithm on three parallel/vector computers ar...
A new parallel numerical scheme for solving incompressible steady-state flows is presented. The algo...
An explicit flow solver, applicable to the hierarchy of model equations ranging from Euler to full N...
AbstractThe decomposition method is applied to the Navier-Stokes equation to provide a solution with...
The past decade has seen considerable activity in algorithm development for the Navier-Stokes equati...
AbstractThe Navier-Stokes equations describe a large class of fluid flows but are difficult to solve...
AbstractWe introduce and analyze a parallel algorithm for solving the Navier-Stokes equations based ...
AbstractThis work is concerned with the convergence/stability analysis of a parallel algorithm which...
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...
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...
summary:This paper concerns a parallel algorithm of the first-order projection method for solving th...
summary:This paper concerns a parallel algorithm of the first-order projection method for solving th...
AbstractA parallel splitting-up method (or the so called alternating-direction method) is proposed i...
The results of the implementation of a Navier-Stokes algorithm on three parallel/vector computers ar...
A new parallel numerical scheme for solving incompressible steady-state flows is presented. The algo...
An explicit flow solver, applicable to the hierarchy of model equations ranging from Euler to full N...
AbstractThe decomposition method is applied to the Navier-Stokes equation to provide a solution with...
The past decade has seen considerable activity in algorithm development for the Navier-Stokes equati...
AbstractThe Navier-Stokes equations describe a large class of fluid flows but are difficult to solve...