In this talk we present a geometric variational discretization of equations describing compressible fluids. The numerical scheme is obtained by discretizing, in a structure-preserving way, the Lie group formulation of fluid dynamics on diffeomorphism groups and the associated variational principles. Our framework applies to irregular mesh discretizations in 2D and 3D. It systematically extends work previously made for incompressible fluids to the compressible case. We consider in details the numerical scheme on 2D irregular simplicial meshes and evaluate the scheme numerically for the rotating shallow water equations. In particular, we investigate whether the scheme conserves stationary solutions, represents well the nonlinear dynamics, and...
International audienceWe derive a variational approach for discretizing fluid-structure interactions...
International audienceWe derive a variational approach for discretizing fluid-structure interactions...
International audienceWe derive a variational approach for discretizing fluid-structure interactions...
In this talk we present a geometric variational discretization of equations describing compressible ...
International audienceThis paper presents a geometric variational discretization of compressible flu...
International audienceThis paper presents a geometric variational discretization of compressible flu...
International audienceThis paper presents a geometric variational discretization of compressible flu...
International audienceThis paper presents a geometric variational discretization of compressible flu...
International audienceThis paper presents a geometric variational discretization of compressible flu...
International audienceThis paper presents a geometric variational discretization of compressible flu...
International audienceThis paper presents a geometric variational discretization of compressible flu...
This paper presents a geometric variational discretization of compressible fluid dynamics. The numer...
This study derives geometric, variational discretization of continuum theories arising in fluid dyna...
This study derives geometric, variational discretization of continuum theories arising in fluid dyna...
International audienceWe derive a variational approach for discretizing fluid-structure interactions...
International audienceWe derive a variational approach for discretizing fluid-structure interactions...
International audienceWe derive a variational approach for discretizing fluid-structure interactions...
International audienceWe derive a variational approach for discretizing fluid-structure interactions...
In this talk we present a geometric variational discretization of equations describing compressible ...
International audienceThis paper presents a geometric variational discretization of compressible flu...
International audienceThis paper presents a geometric variational discretization of compressible flu...
International audienceThis paper presents a geometric variational discretization of compressible flu...
International audienceThis paper presents a geometric variational discretization of compressible flu...
International audienceThis paper presents a geometric variational discretization of compressible flu...
International audienceThis paper presents a geometric variational discretization of compressible flu...
International audienceThis paper presents a geometric variational discretization of compressible flu...
This paper presents a geometric variational discretization of compressible fluid dynamics. The numer...
This study derives geometric, variational discretization of continuum theories arising in fluid dyna...
This study derives geometric, variational discretization of continuum theories arising in fluid dyna...
International audienceWe derive a variational approach for discretizing fluid-structure interactions...
International audienceWe derive a variational approach for discretizing fluid-structure interactions...
International audienceWe derive a variational approach for discretizing fluid-structure interactions...
International audienceWe derive a variational approach for discretizing fluid-structure interactions...