In this paper we treat several aspects related to time integration methods for the incompressible Navier-Stokes equations that allow to uncouple the calculation of the velocities and the pressure. The first family of schemes consists of classical fractional step methods, of which we discuss several possibilities for the pressure extrapolation and the time integration of first and second order. The second family consists of schemes based on an explicit treatment of the pressure in the momentum equation followed by a Poisson equation for the pressure. It turns out that this “staggered” treatment of the velocity and the pressure is stable. Finally, we present predictor-corrector methods based on the above schemes that aim to conver...
In this work, we propose Runge-Kutta time integration schemes for the incompressible Navier-Stokes e...
En la presente tesis se han estudiado métodos de paso fraccionado para la resolución numérica de la ...
A finite element model to solve the incompressible Navier–Stokes equations based on the stabil...
In this paper we treat several aspects related to time integration methods for the incompressible Na...
The objective of this paper is to analyze the pressure stability of fractional step finite element m...
The fractional step method is a technique that results in a computationally-efficient implementation...
The fractional step method is a technique that results in a computationally-efficient implementation...
This paper describes a finite element model to solve the incompressible Navier–Stokes equation...
The fractional step method is a technique that results in a computationally-efficient implementation...
The fractional step method is a technique that results in a computationally-efficient implementation...
An implicit fractional-step method for the numerical solution of the time-dependent incompressible N...
In this paper we provide an error analysis of a fractional-step method for the numerical solution of...
In this paper we obtain convergence results for the fully discrete projection method for the numeric...
The objective of this paper is to analyze the pressure stability of fractional step finite element m...
The present review describes and analyses a class of finite element fractional step methodsfor solvi...
In this work, we propose Runge-Kutta time integration schemes for the incompressible Navier-Stokes e...
En la presente tesis se han estudiado métodos de paso fraccionado para la resolución numérica de la ...
A finite element model to solve the incompressible Navier–Stokes equations based on the stabil...
In this paper we treat several aspects related to time integration methods for the incompressible Na...
The objective of this paper is to analyze the pressure stability of fractional step finite element m...
The fractional step method is a technique that results in a computationally-efficient implementation...
The fractional step method is a technique that results in a computationally-efficient implementation...
This paper describes a finite element model to solve the incompressible Navier–Stokes equation...
The fractional step method is a technique that results in a computationally-efficient implementation...
The fractional step method is a technique that results in a computationally-efficient implementation...
An implicit fractional-step method for the numerical solution of the time-dependent incompressible N...
In this paper we provide an error analysis of a fractional-step method for the numerical solution of...
In this paper we obtain convergence results for the fully discrete projection method for the numeric...
The objective of this paper is to analyze the pressure stability of fractional step finite element m...
The present review describes and analyses a class of finite element fractional step methodsfor solvi...
In this work, we propose Runge-Kutta time integration schemes for the incompressible Navier-Stokes e...
En la presente tesis se han estudiado métodos de paso fraccionado para la resolución numérica de la ...
A finite element model to solve the incompressible Navier–Stokes equations based on the stabil...