This work is aimed to exploit the computational capabilities of nowadays workstations by building algorithms parallelized for a limited number of processors. For an engineer that is working in aerodynamic design, the possibility of having efficient and whenever available computational resources is a considerable advantage. By using adaptive algorithms to numerical solution conform to workstation’s hardware configuration, acceptable processing time and enough accurate solutions configuration can be obtained. The algorithms were tested on different hardware platforms and encouraging results were obtained.MASTER OF ENGINEERING (MAE
The work is devoted to developing and testing parallel algorithms, suit of computer programs for num...
The continued development of improved algorithms and architecture for numerical simulations is at th...
Design optimization relies heavily on time-consuming simulations, especially when using gradient-fre...
This work is aimed to exploit the computational capabilities of nowadays workstations by building al...
this paper we have introduced a parallelization for the calculation of fluid flow problems on unstru...
The parallel execution of an aerodynamic simulation code on a non-dedicated, heterogeneous cluster ...
The parallel execution of an aerodynamic simulation code on a non-dedicated, heterogeneous cluster ...
CFD or Computational Fluid Dynamics is one of the scientific disciplines that has always posed new c...
In this paper we present the parallel version of a CFD solver which works on unstructured 3-dimensio...
This paper describes a simple shared-memory parallel implementation of an octree adaptive mesh Compu...
This paper describes a simple shared-memory parallel implementation of an octree adaptive mesh Compu...
this paper a parallelization strategy will be presented, which provides that abstraction level consi...
. An explicit finite element scheme based on a two step Taylor-Galerkin algorithm allows the solutio...
General problems of interest in computational fluid dynamics are investigated by means of optimizati...
One or the key objectives of the Applied Research Branch in the Numerical Aerodynamic Simulation (NA...
The work is devoted to developing and testing parallel algorithms, suit of computer programs for num...
The continued development of improved algorithms and architecture for numerical simulations is at th...
Design optimization relies heavily on time-consuming simulations, especially when using gradient-fre...
This work is aimed to exploit the computational capabilities of nowadays workstations by building al...
this paper we have introduced a parallelization for the calculation of fluid flow problems on unstru...
The parallel execution of an aerodynamic simulation code on a non-dedicated, heterogeneous cluster ...
The parallel execution of an aerodynamic simulation code on a non-dedicated, heterogeneous cluster ...
CFD or Computational Fluid Dynamics is one of the scientific disciplines that has always posed new c...
In this paper we present the parallel version of a CFD solver which works on unstructured 3-dimensio...
This paper describes a simple shared-memory parallel implementation of an octree adaptive mesh Compu...
This paper describes a simple shared-memory parallel implementation of an octree adaptive mesh Compu...
this paper a parallelization strategy will be presented, which provides that abstraction level consi...
. An explicit finite element scheme based on a two step Taylor-Galerkin algorithm allows the solutio...
General problems of interest in computational fluid dynamics are investigated by means of optimizati...
One or the key objectives of the Applied Research Branch in the Numerical Aerodynamic Simulation (NA...
The work is devoted to developing and testing parallel algorithms, suit of computer programs for num...
The continued development of improved algorithms and architecture for numerical simulations is at th...
Design optimization relies heavily on time-consuming simulations, especially when using gradient-fre...