A discretization method is presented for the full, steady, compressible Navier-Stokes equations. The method makes use of quadrilateral finite volumes and consists of an upwind discretization of the convective part and a central discnetization of the diffusive part. In the present paper, the emphasis lies on the discretization of the convective part. The applied solution method directly solves the steady equations by means of a Newton method, which requires the discretization to be continuously differentiable. For two upwind schemes which satisfy this requirement (Osher's and van Leer's scheme}, results of a quantitative error analysis are presented. Osher's scheme appaars to be more and more accurate than van Leer's scheme with increasing R...
The present thesis describes the development of a computational method for the numerical simulation ...
This paper is concerned with an overview of upwinding schemes, and further nonlinear applications of...
A bounded upwinding scheme for numerical solution of hyperbolic conservation laws and Navier-Stokes ...
A discretization method is presented for the full, steady, compressible Navier-Stokes equations. The...
A discretization method is presented for the full, steady, compressible Navier-Stokes equations. The...
Within the framework of finite element methods, the paper investigates a general approximation techn...
This paper deals with the numerical solution of complex fluid dynamics problems using a new bounded ...
A new finite difference method for the discretization of the incompressible Navier-Stokes equations ...
A new node based upwind scheme for the solution of the 3D Navier- Stokes equations on adaptively ref...
Modern upwind schemes employ an upwind-biased stencil to solve convective terms in order to satisfy ...
This article deals with the study of the development and application of the high-order upwind ADBQUI...
A scheme for giving steady-state solutions of the Navier-Stokes equations on unstructured grids in t...
A multi-dimensional cell-vertex upwind discretization technique for the Navier-Strokes equations on ...
A global fourth-order solution method that incorporates compact differencing with Roe\u27s approxima...
The present thesis describes the development of a computational method for the numerical simulation ...
This paper is concerned with an overview of upwinding schemes, and further nonlinear applications of...
A bounded upwinding scheme for numerical solution of hyperbolic conservation laws and Navier-Stokes ...
A discretization method is presented for the full, steady, compressible Navier-Stokes equations. The...
A discretization method is presented for the full, steady, compressible Navier-Stokes equations. The...
Within the framework of finite element methods, the paper investigates a general approximation techn...
This paper deals with the numerical solution of complex fluid dynamics problems using a new bounded ...
A new finite difference method for the discretization of the incompressible Navier-Stokes equations ...
A new node based upwind scheme for the solution of the 3D Navier- Stokes equations on adaptively ref...
Modern upwind schemes employ an upwind-biased stencil to solve convective terms in order to satisfy ...
This article deals with the study of the development and application of the high-order upwind ADBQUI...
A scheme for giving steady-state solutions of the Navier-Stokes equations on unstructured grids in t...
A multi-dimensional cell-vertex upwind discretization technique for the Navier-Strokes equations on ...
A global fourth-order solution method that incorporates compact differencing with Roe\u27s approxima...
The present thesis describes the development of a computational method for the numerical simulation ...
This paper is concerned with an overview of upwinding schemes, and further nonlinear applications of...
A bounded upwinding scheme for numerical solution of hyperbolic conservation laws and Navier-Stokes ...