A parallel computational fluid dynamics code has been developed for the study of aerodynamic heating problem in hypersonic flows. The code employs the 3D Navier-Stokes equations as the basic governing equations to simulate the laminar hypersonic flow. The cell centered finite volume method based on structured grid is applied for spatial discretization. The AUSMPW+ scheme is used for the inviscid fluxes, and the MUSCL approach is used for higher order spatial accuracy. The implicit LU-SGS scheme is applied for time integration to accelerate the convergence of computations in steady flows. A parallel programming method based on MPI is employed to shorten the computing time. The validity of the code is demonstrated by comparing the numerical c...
This paper discusses the implementation of a numerical algorithm for simulating incompressible fluid...
In the present work we implemented parallel version of a computational fluid dynamics code. This cod...
Massively parallel computers have enabled the analyst to solve complicated flow fields (turbulent, c...
Parallel Navier-Stokes codes are developed to solve both two- dimensional and three-dimensional flow...
A finite element model is developed and used to simulate three-dimensional compressible fluid flow o...
Computational Fluid Dynamics (CFD) has matured rapidly in the past 20 years and is now an important ...
An explicit computational fluid dynamics (CFD) computer code with parallel processing capability has...
AbstractA parallel implementation of the finite volume method for three-dimensional, time-dependent,...
The paper describes two studies involved with the parallelisation of algorithms for the numerical c...
The work is devoted to developing and testing parallel algorithms, suit of computer programs for num...
A brief description of the work currently underway on hypersonic viscous flow computations, based on...
A parallel implicit adaptive-mesh-refinement scheme is proposed for the solution of the Navier-Stoke...
Abstract: The parallel algorithm for numerical simulation of viscous flows over complex sh...
A method for computing inviscid hypersonic flow over complex configurations using unstructured meshe...
The paper describes the results obtained from a multigrid accelerated Navier-Stokes solver. The meth...
This paper discusses the implementation of a numerical algorithm for simulating incompressible fluid...
In the present work we implemented parallel version of a computational fluid dynamics code. This cod...
Massively parallel computers have enabled the analyst to solve complicated flow fields (turbulent, c...
Parallel Navier-Stokes codes are developed to solve both two- dimensional and three-dimensional flow...
A finite element model is developed and used to simulate three-dimensional compressible fluid flow o...
Computational Fluid Dynamics (CFD) has matured rapidly in the past 20 years and is now an important ...
An explicit computational fluid dynamics (CFD) computer code with parallel processing capability has...
AbstractA parallel implementation of the finite volume method for three-dimensional, time-dependent,...
The paper describes two studies involved with the parallelisation of algorithms for the numerical c...
The work is devoted to developing and testing parallel algorithms, suit of computer programs for num...
A brief description of the work currently underway on hypersonic viscous flow computations, based on...
A parallel implicit adaptive-mesh-refinement scheme is proposed for the solution of the Navier-Stoke...
Abstract: The parallel algorithm for numerical simulation of viscous flows over complex sh...
A method for computing inviscid hypersonic flow over complex configurations using unstructured meshe...
The paper describes the results obtained from a multigrid accelerated Navier-Stokes solver. The meth...
This paper discusses the implementation of a numerical algorithm for simulating incompressible fluid...
In the present work we implemented parallel version of a computational fluid dynamics code. This cod...
Massively parallel computers have enabled the analyst to solve complicated flow fields (turbulent, c...