International audienceThis paper considers a class of second-order accurate vertex centered mixed finite element finite-volume MUSCL schemes. These schemes apply to unstructured triangulations and tetrahedrizations and fluxes are computed on an edge basis. We define conditions under which these schemes satisfy a density-positivity statement for Euler flows, a maximum principle for a scalar conservation law and a multicomponent flow. This extends to an Arbitrary- Lagrangian-Eulerian formulation. Steady and unsteady flow simulations illustrate the accuracy and the robustness of these schemes
International audienceThis work is devoted to the design of multi-dimensional finite volume schemes ...
The accuracy of finite volume methods for the discretization of the unsteady Euler equations in the ...
The present paper describes the use of various high-order schemes in a finite volume formulation for...
International audienceThis paper considers a class of second-order accurate vertex centered mixed fi...
International audienceThis paper considers a class of second-order accurate vertex centered mixed fi...
International audienceThis paper considers a class of second-order accurate vertex centered mixed fi...
International audienceThis paper considers a class of second-order accurate vertex centered mixed fi...
International audienceThis paper considers a class of second-order accurate vertex centered mixed fi...
International audienceThis paper considers a class of second-order accurate vertex centered mixed fi...
International audienceWhen one solves PDEs modelling physical phenomena, it is of great importance t...
International audienceWhen one solves PDEs modelling physical phenomena, it is of great importance t...
International audienceWhen one solves PDEs modelling physical phenomena, it is of great importance t...
International audienceThis paper is the second part of a series of two. It follows [44], in which th...
Numerical schemes for fluid flows must preserve the positivity of density and pressure. This is a we...
Numerical schemes for fluid flows must preserve the positivity of density and pressure. This is a we...
International audienceThis work is devoted to the design of multi-dimensional finite volume schemes ...
The accuracy of finite volume methods for the discretization of the unsteady Euler equations in the ...
The present paper describes the use of various high-order schemes in a finite volume formulation for...
International audienceThis paper considers a class of second-order accurate vertex centered mixed fi...
International audienceThis paper considers a class of second-order accurate vertex centered mixed fi...
International audienceThis paper considers a class of second-order accurate vertex centered mixed fi...
International audienceThis paper considers a class of second-order accurate vertex centered mixed fi...
International audienceThis paper considers a class of second-order accurate vertex centered mixed fi...
International audienceThis paper considers a class of second-order accurate vertex centered mixed fi...
International audienceWhen one solves PDEs modelling physical phenomena, it is of great importance t...
International audienceWhen one solves PDEs modelling physical phenomena, it is of great importance t...
International audienceWhen one solves PDEs modelling physical phenomena, it is of great importance t...
International audienceThis paper is the second part of a series of two. It follows [44], in which th...
Numerical schemes for fluid flows must preserve the positivity of density and pressure. This is a we...
Numerical schemes for fluid flows must preserve the positivity of density and pressure. This is a we...
International audienceThis work is devoted to the design of multi-dimensional finite volume schemes ...
The accuracy of finite volume methods for the discretization of the unsteady Euler equations in the ...
The present paper describes the use of various high-order schemes in a finite volume formulation for...