This paper reports on a parallel implementation of a general 3D multi-block CFD code. The parallelization is achieved by using three strategies. Firstly, it is done on dual-processor PC-clusters where Windows NT systems are running. A multi-thread programming model is adopted for the multi-block code, where one thread corresponds to a block. Shared-memory is used for the exchange of inner-boundaries between neighboring blocks (threads) on the same node, while WinSockets are employed for those on different nodes. Secondly, the parallelization is extended to UNIX operating system. MPI is applied for all the message passing between different processors, including those on the same node. Thirdly, Pthreads (POSIX threads), a standardized applica...
Computational fluid analysis requires huge amounts of computational resources. However, for the usua...
Abstract. Parallel multigrid methods are very prominent tools for solv-ing huge systems of (non-)lin...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76255/1/AIAA-1989-1940-323.pd
This article reports on a parallel implementation of a general 3D multi-block CFD code. The parallel...
CFD or Computational Fluid Dynamics is one of the scientific disciplines that has always posed new c...
The Computational Fluid Dynamics (CFD) solver TAU for unstructured grids is widely used in the Europ...
This paper discusses the implementation of a numerical algorithm for simulating incompressible fluid...
The focus of this paper is on the parallel computing aspects of multi-physics CFD methods and the im...
. Parallelizing TfC, a state-of-the-art industrial 3d CFD code for execution on both networks of wor...
This paper describes the portable parallelization of the FLOWer code, a large, block structured CFD ...
. Parallelizing TfC, a state-of-the-art industrial 3d CFD code for execution on both networks of wor...
A Navier-Stokes equations solver is parallelized to run on a cluster of computers using the domain d...
Abstract. The present paper describes the development and the performance of parallel FEM soft-ware ...
This article reports on a multiblock implementation of a general three-dimensional single-block comp...
In this paper we discuss and demonstrate the feasibility of solving high-fidelity, nonlinear computa...
Computational fluid analysis requires huge amounts of computational resources. However, for the usua...
Abstract. Parallel multigrid methods are very prominent tools for solv-ing huge systems of (non-)lin...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76255/1/AIAA-1989-1940-323.pd
This article reports on a parallel implementation of a general 3D multi-block CFD code. The parallel...
CFD or Computational Fluid Dynamics is one of the scientific disciplines that has always posed new c...
The Computational Fluid Dynamics (CFD) solver TAU for unstructured grids is widely used in the Europ...
This paper discusses the implementation of a numerical algorithm for simulating incompressible fluid...
The focus of this paper is on the parallel computing aspects of multi-physics CFD methods and the im...
. Parallelizing TfC, a state-of-the-art industrial 3d CFD code for execution on both networks of wor...
This paper describes the portable parallelization of the FLOWer code, a large, block structured CFD ...
. Parallelizing TfC, a state-of-the-art industrial 3d CFD code for execution on both networks of wor...
A Navier-Stokes equations solver is parallelized to run on a cluster of computers using the domain d...
Abstract. The present paper describes the development and the performance of parallel FEM soft-ware ...
This article reports on a multiblock implementation of a general three-dimensional single-block comp...
In this paper we discuss and demonstrate the feasibility of solving high-fidelity, nonlinear computa...
Computational fluid analysis requires huge amounts of computational resources. However, for the usua...
Abstract. Parallel multigrid methods are very prominent tools for solv-ing huge systems of (non-)lin...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76255/1/AIAA-1989-1940-323.pd