Compact schemes are widely employed in numerical simulations of turbulent flows, because of their beneficial resolution properties and high overall accuracy. However, the implicit nature of such methods makes them difficult to use in a parallel framework, especially when a MPI-based multi-block partitioning technique is adopted. Previous attempts fall mainly into two categories: 1. use of parallel algorithms for solving the linear system of equations over the entire domain; 2. use of explicit or asymmetric stencils at block-to-block connections to obtain disjoint matrix systems. While the first approach can suffer from low parallel efficiency, the second one has received considerable attention over the last years and is now an active field ...
The paper describes an improved parallel MPI-based implementation of VBARMS, a variable block varian...
This article describes results of an effort to improve the parallel efficiency of a solver for turbu...
An algorithm for the Direct Numerical Simulation (DNS) of the incompressible Navier–Stokes equations...
Compact schemes are widely employed in numerical simulations of turbulent flows, because of their be...
A conservative approach for MPI-based parallelization of tridiagonal compact schemes is developed in...
Compact finite-difference schemes have been recently used in several Direct Numerical Simulations of...
Compact finite-difference schemes have been recently used in several Direct Numerical Simulations of...
An improved domain‐decoupled compact scheme for first and second spatial derivatives is proposed for...
We have investigated different parallel programming strategies on the turbulent channel flow simulat...
The starting point for this project was the iterative solution of sparse and block structured linear...
Compact finite-difference schemes have been recently used in several Direct Numerical Simulations of...
In this paper, we present parallel simulations of three-dimensional complex flows obtained on an ORI...
AbstractA hybrid parallelisation technique for distributed memory systems is investigated for a coup...
Direct numerical simulation (DNS) of complex flows require solving the problem on parallel machines ...
A novel multi-block compact-TVD finite difference method for the simulation of compressible flows is...
The paper describes an improved parallel MPI-based implementation of VBARMS, a variable block varian...
This article describes results of an effort to improve the parallel efficiency of a solver for turbu...
An algorithm for the Direct Numerical Simulation (DNS) of the incompressible Navier–Stokes equations...
Compact schemes are widely employed in numerical simulations of turbulent flows, because of their be...
A conservative approach for MPI-based parallelization of tridiagonal compact schemes is developed in...
Compact finite-difference schemes have been recently used in several Direct Numerical Simulations of...
Compact finite-difference schemes have been recently used in several Direct Numerical Simulations of...
An improved domain‐decoupled compact scheme for first and second spatial derivatives is proposed for...
We have investigated different parallel programming strategies on the turbulent channel flow simulat...
The starting point for this project was the iterative solution of sparse and block structured linear...
Compact finite-difference schemes have been recently used in several Direct Numerical Simulations of...
In this paper, we present parallel simulations of three-dimensional complex flows obtained on an ORI...
AbstractA hybrid parallelisation technique for distributed memory systems is investigated for a coup...
Direct numerical simulation (DNS) of complex flows require solving the problem on parallel machines ...
A novel multi-block compact-TVD finite difference method for the simulation of compressible flows is...
The paper describes an improved parallel MPI-based implementation of VBARMS, a variable block varian...
This article describes results of an effort to improve the parallel efficiency of a solver for turbu...
An algorithm for the Direct Numerical Simulation (DNS) of the incompressible Navier–Stokes equations...