An efficient three-dimensionasl tructured solver for the Euler and Navier-Stokese quations is developed based on a finite volume upwind algorithm using Roe fluxes. Multigrid and optimal smoothing multi-stage time stepping accelerate convergence. The accuracy of the new solver is demonstrated for inviscid flows in the range 0.675 :5M :5 25. A comparative grid convergence study for transonic turbulent flow about a wing is conducted with the present solver and a scalar dissipation central difference industrial design solver. The upwind solver demonstrates faster grid convergence than the central scheme, producing more consistent estimates of lift, drag and boundary layer parameters. In transonic viscous computations, the upwind scheme...
A class of implicit upwind differencing methods for the compressible Navier-Stokes equations is desc...
A multiple-grid algorithm for use in efficiently obtaining steady solutions to the Euler and Navier-...
A fast implicit upwind algorithm for the solution of the time-dependent Euler equations is presented...
This thesis presents and verifies a numerical method for solving the compressible Euler equations. T...
The numerical solution of the two-dimensional inviscid Euler flow equations is given. The unstructur...
A comparative study of five upwind schemes was performed to evaluate their ability accurately model ...
The objective of this study was to develop a high-resolution-explicit-multi-block numerical algorith...
Modern upwind schemes employ an upwind-biased stencil to solve convective terms in order to satisfy ...
Modern upwind schemes employ an upwind-biased stencil to solve convective terms in order to satisfy ...
A new algorithm was developed for the Euler and Navier-Stokes equations that uses upwind differencin...
The objective of this study was to develop a high-resolution-explicit-multi-block numerical algorith...
The objective of this study was to develop a high-resolution-explicit-multi-block numerical algorith...
The objective of this study was to develop a high-resolution-explicit-multi-block numerical algorith...
A multiple-grid algorithm for use in efficiently obtaining steady solution to the Euler and Navier-S...
The 1980s may well be called the Euler era of applied aerodynamics. Computer codes based on discrete...
A class of implicit upwind differencing methods for the compressible Navier-Stokes equations is desc...
A multiple-grid algorithm for use in efficiently obtaining steady solutions to the Euler and Navier-...
A fast implicit upwind algorithm for the solution of the time-dependent Euler equations is presented...
This thesis presents and verifies a numerical method for solving the compressible Euler equations. T...
The numerical solution of the two-dimensional inviscid Euler flow equations is given. The unstructur...
A comparative study of five upwind schemes was performed to evaluate their ability accurately model ...
The objective of this study was to develop a high-resolution-explicit-multi-block numerical algorith...
Modern upwind schemes employ an upwind-biased stencil to solve convective terms in order to satisfy ...
Modern upwind schemes employ an upwind-biased stencil to solve convective terms in order to satisfy ...
A new algorithm was developed for the Euler and Navier-Stokes equations that uses upwind differencin...
The objective of this study was to develop a high-resolution-explicit-multi-block numerical algorith...
The objective of this study was to develop a high-resolution-explicit-multi-block numerical algorith...
The objective of this study was to develop a high-resolution-explicit-multi-block numerical algorith...
A multiple-grid algorithm for use in efficiently obtaining steady solution to the Euler and Navier-S...
The 1980s may well be called the Euler era of applied aerodynamics. Computer codes based on discrete...
A class of implicit upwind differencing methods for the compressible Navier-Stokes equations is desc...
A multiple-grid algorithm for use in efficiently obtaining steady solutions to the Euler and Navier-...
A fast implicit upwind algorithm for the solution of the time-dependent Euler equations is presented...