International audienceThis article deals with the discretization of the compressible Euler system for all Mach numbers regimes. For highly subsonic flows, since acoustic waves are very fast compared to the velocity of the fluid, the gas can be considered as incompressible. From the numerical point of view, when the Mach number tends to zero, the classical Godunov type schemes present two main drawbacks: they lose consistency and they suffer of severe numerical constraints for stability to be guaranteed since the time step must follow the acoustic waves speed. In this work, we propose and analyze a new unconditionally stable an consistent scheme for all Mach number flows, from compressible to incompressible regimes, stability being only rela...
International audienceWe present an Asymptotic-Preserving 'all-speed' scheme for the simulation of c...
International audienceWe present an Asymptotic-Preserving 'all-speed' scheme for the simulation of c...
International audienceWe present an Asymptotic-Preserving 'all-speed' scheme for the simulation of c...
International audienceThis article deals with the discretization of the compressible Euler system fo...
International audienceThis article deals with the discretization of the compressible Euler system fo...
This paper deals with the discretization of the compressible Euler system for all Mach number regime...
International audienceThis article is composed of three self-consistent chapters that can be read in...
Through a linear analysis, we show how to modify Godunov type schemes applied to the compressible Eu...
International audienceThis article is composed of three self-consistent chapters that can be read in...
International audienceThis article is composed of three self-consistent chapters that can be read in...
This article deals with the development of a numerical method for the compressible Euler system vali...
The computation of compressible flows becomes more challenging when the Mach number has different or...
In the present study improvements to numerical algorithms for the solution of the compressible Euler...
A single scale, multiple space scale asymptotic analysis provides detailed insight into the low Mach...
We present an all speed scheme for the Euler-Korteweg model. We study a semi-implicit time-discretis...
International audienceWe present an Asymptotic-Preserving 'all-speed' scheme for the simulation of c...
International audienceWe present an Asymptotic-Preserving 'all-speed' scheme for the simulation of c...
International audienceWe present an Asymptotic-Preserving 'all-speed' scheme for the simulation of c...
International audienceThis article deals with the discretization of the compressible Euler system fo...
International audienceThis article deals with the discretization of the compressible Euler system fo...
This paper deals with the discretization of the compressible Euler system for all Mach number regime...
International audienceThis article is composed of three self-consistent chapters that can be read in...
Through a linear analysis, we show how to modify Godunov type schemes applied to the compressible Eu...
International audienceThis article is composed of three self-consistent chapters that can be read in...
International audienceThis article is composed of three self-consistent chapters that can be read in...
This article deals with the development of a numerical method for the compressible Euler system vali...
The computation of compressible flows becomes more challenging when the Mach number has different or...
In the present study improvements to numerical algorithms for the solution of the compressible Euler...
A single scale, multiple space scale asymptotic analysis provides detailed insight into the low Mach...
We present an all speed scheme for the Euler-Korteweg model. We study a semi-implicit time-discretis...
International audienceWe present an Asymptotic-Preserving 'all-speed' scheme for the simulation of c...
International audienceWe present an Asymptotic-Preserving 'all-speed' scheme for the simulation of c...
International audienceWe present an Asymptotic-Preserving 'all-speed' scheme for the simulation of c...