At low Mach number, the Roe scheme presents an excess of articial viscosity. A correction of this scheme, which uses the preconditioning of Turkel, leads to an improvement of the solution. We refer to this new scheme as the Roe-Turkel scheme. We show that for the Roe-Turkel scheme the convergence of the numerical solution towards the exact solution depends only on the mesh size parameter whereas that of the Roe scheme depends on the ratio between mesh size parameter and Mach number. We also show that for the computation of steady state solutions, when the Roe-Turkel scheme is introduced in the physical phase and in the mathematical phase, the iterative convergence of the implicit Defect-Correction method is only moderately aoeected at low M...
Abstract. An existing method and the corresponding software for the numerical solution of the Euler ...
International audienceIt is well known that finite volume schemes are not accurate at low Mach numbe...
Received xxxx xx, xxxx / accepted xxxx xx, xxxx Context. Many problems in stellar astrophysics featu...
In the present study improvements to numerical algorithms for the solution of the compressible Euler...
We look at two simple modifications of the Roe scheme in the incompressible limit, based on differen...
Same as Version 1. In preprint format. Some typo errors corrected.A rescaled matrix-valued dissipati...
The accuracy of many existing codes, originally implemented for transonic or supersonic problems, o...
International audienceThis work is devoted to a review of different modifications proposed to enable...
International audienceThis work is devoted to a review of different modifications proposed to enable...
The accuracy of many existing codes, originally implemented for transonic or supersonic problems, of...
The accuracy of many existing codes, originally implemented for transonic or supersonic problems, of...
Context. Many problems in stellar astrophysics feature flows at low Mach numbers. Conventional compr...
Context. Many problems in stellar astrophysics feature flows at low Mach numbers. Conventional compr...
Context. Many problems in stellar astrophysics feature flows at low Mach numbers. Conventional compr...
In the authors ’ previous studies [1], a time-accurate, upwind finite volume method (ETAU scheme) fo...
Abstract. An existing method and the corresponding software for the numerical solution of the Euler ...
International audienceIt is well known that finite volume schemes are not accurate at low Mach numbe...
Received xxxx xx, xxxx / accepted xxxx xx, xxxx Context. Many problems in stellar astrophysics featu...
In the present study improvements to numerical algorithms for the solution of the compressible Euler...
We look at two simple modifications of the Roe scheme in the incompressible limit, based on differen...
Same as Version 1. In preprint format. Some typo errors corrected.A rescaled matrix-valued dissipati...
The accuracy of many existing codes, originally implemented for transonic or supersonic problems, o...
International audienceThis work is devoted to a review of different modifications proposed to enable...
International audienceThis work is devoted to a review of different modifications proposed to enable...
The accuracy of many existing codes, originally implemented for transonic or supersonic problems, of...
The accuracy of many existing codes, originally implemented for transonic or supersonic problems, of...
Context. Many problems in stellar astrophysics feature flows at low Mach numbers. Conventional compr...
Context. Many problems in stellar astrophysics feature flows at low Mach numbers. Conventional compr...
Context. Many problems in stellar astrophysics feature flows at low Mach numbers. Conventional compr...
In the authors ’ previous studies [1], a time-accurate, upwind finite volume method (ETAU scheme) fo...
Abstract. An existing method and the corresponding software for the numerical solution of the Euler ...
International audienceIt is well known that finite volume schemes are not accurate at low Mach numbe...
Received xxxx xx, xxxx / accepted xxxx xx, xxxx Context. Many problems in stellar astrophysics featu...