Implicit methods based on the Newton’s rootfinding algorithm are receiving an increasing attention for the solution of complex Computational Fluid Dynamics (CFD) applications due to their potential to converge in a very small number of iterations. This approach requires fast convergence acceleration techniques in order to compete with other conventional solvers, such as those based on artificial dissipation or upwind schemes, in terms of CPU time. In this chapter, we describe a multilevel variable-block Schur-complement-based preconditioning for the implicit solution of the Reynolds-averaged Navier-Stokes equations using unstructured grids on distributed-memory parallel computers. The proposed solver detects automatically exact or approxima...
Algorithms for studying transitions and instabilities in incompressible flows typically require the ...
We present techniques for implicit solution of discontinuous Galerkin discretizations of the Navier-...
A recently developed parallel three-dimensional flow solver of the turbulent Navier-Stokes equations...
Implicit methods based on the Newton’s rootfinding algorithm are receiving an increasing attention f...
Implicit methods based on the Newton’s rootfinding algorithm are receiving an increasing attention f...
Implicit methods based on the Newton’s rootfinding algorithm are receiving an increasing attention f...
This paper studies a new preconditioning technique for sparse systems arising from discretized parti...
Linearization of the non-linear systems arising from fully implicit schemes in computational fluid...
We study preconditioners for the iterative solution of the linear systems arising in the implicit ti...
In recent years, considerable effort has been placed on developing efficient and robust solution alg...
Abstract. We study preconditioners for the iterative solution of the linear systems arising in the i...
Implicit methods were developed and tested for unstructured mesh computations. The approximate syste...
Algorithms for studying transitions and instabilities in incompressible flows typically require the ...
Algorithms for studying transitions and instabilities in incompressible flows typically require the ...
In recent years, considerable effort has been placed on developing efficient and robust solution alg...
Algorithms for studying transitions and instabilities in incompressible flows typically require the ...
We present techniques for implicit solution of discontinuous Galerkin discretizations of the Navier-...
A recently developed parallel three-dimensional flow solver of the turbulent Navier-Stokes equations...
Implicit methods based on the Newton’s rootfinding algorithm are receiving an increasing attention f...
Implicit methods based on the Newton’s rootfinding algorithm are receiving an increasing attention f...
Implicit methods based on the Newton’s rootfinding algorithm are receiving an increasing attention f...
This paper studies a new preconditioning technique for sparse systems arising from discretized parti...
Linearization of the non-linear systems arising from fully implicit schemes in computational fluid...
We study preconditioners for the iterative solution of the linear systems arising in the implicit ti...
In recent years, considerable effort has been placed on developing efficient and robust solution alg...
Abstract. We study preconditioners for the iterative solution of the linear systems arising in the i...
Implicit methods were developed and tested for unstructured mesh computations. The approximate syste...
Algorithms for studying transitions and instabilities in incompressible flows typically require the ...
Algorithms for studying transitions and instabilities in incompressible flows typically require the ...
In recent years, considerable effort has been placed on developing efficient and robust solution alg...
Algorithms for studying transitions and instabilities in incompressible flows typically require the ...
We present techniques for implicit solution of discontinuous Galerkin discretizations of the Navier-...
A recently developed parallel three-dimensional flow solver of the turbulent Navier-Stokes equations...