International audienceA novel strategy to solve the finite volume discretization of the unsteady Euler equations within the Arbitrary Lagrangian–Eulerian framework over tetrahedral adaptive grids is proposed. The volume changes due to local mesh adaptation are treated as continuous deformations of the finite volumes and they are taken into account by adding fictitious numerical fluxes to the governing equation. This peculiar interpretation enables to avoid any explicit interpolation of the solution between different grids and to compute grid velocities so that the Geometric Conservation Law is automatically fulfilled also for connectivity changes. The solution on the new grid is obtained through standard ALE techniques, thus preserving the ...
A novel Finite Volume (FV) technique for solving the compressible unsteady Euler equations is presen...
A novel Finite Volume (FV) technique for solving the compressible unsteady Euler equations is presen...
A novel Finite Volume (FV) technique for solving the compressible unsteady Euler equations is presen...
International audienceA novel strategy to solve the finite volume discretization of the unsteady Eul...
A novel strategy to solve the finite volume discretization of the unsteady Euler equations within th...
A novel strategy to solve the finite volume discretization of the unsteady Euler equations within th...
A novel strategy to solve the finite volume discretization of the unsteady Euler equations within th...
A novel strategy to solve the finite volume discretization of the unsteady Euler equations within th...
A novel strategy to solve the finite volume discretization of the unsteady Euler equations within th...
The present work proposes an innovative adaptive finite-volume scheme for compressible inviscid flow...
The present work proposes an innovative adaptive finite-volume scheme for compressible inviscid flow...
The present work proposes an innovative adaptive finite-volume scheme for compressible inviscid flow...
The present work proposes an innovative adaptive finite-volume scheme for compressible inviscid flow...
The present work proposes an innovative adaptive finite-volume scheme for compressible inviscid flow...
A novel Finite Volume (FV) technique for solving the compressible unsteady Euler equations is presen...
A novel Finite Volume (FV) technique for solving the compressible unsteady Euler equations is presen...
A novel Finite Volume (FV) technique for solving the compressible unsteady Euler equations is presen...
A novel Finite Volume (FV) technique for solving the compressible unsteady Euler equations is presen...
International audienceA novel strategy to solve the finite volume discretization of the unsteady Eul...
A novel strategy to solve the finite volume discretization of the unsteady Euler equations within th...
A novel strategy to solve the finite volume discretization of the unsteady Euler equations within th...
A novel strategy to solve the finite volume discretization of the unsteady Euler equations within th...
A novel strategy to solve the finite volume discretization of the unsteady Euler equations within th...
A novel strategy to solve the finite volume discretization of the unsteady Euler equations within th...
The present work proposes an innovative adaptive finite-volume scheme for compressible inviscid flow...
The present work proposes an innovative adaptive finite-volume scheme for compressible inviscid flow...
The present work proposes an innovative adaptive finite-volume scheme for compressible inviscid flow...
The present work proposes an innovative adaptive finite-volume scheme for compressible inviscid flow...
The present work proposes an innovative adaptive finite-volume scheme for compressible inviscid flow...
A novel Finite Volume (FV) technique for solving the compressible unsteady Euler equations is presen...
A novel Finite Volume (FV) technique for solving the compressible unsteady Euler equations is presen...
A novel Finite Volume (FV) technique for solving the compressible unsteady Euler equations is presen...
A novel Finite Volume (FV) technique for solving the compressible unsteady Euler equations is presen...