We present an energy- and potential enstrophy-conserving scheme for the non-traditional shallow water equations that include the complete Coriolis force and topography. These integral conservation properties follow from material conservation of potential vorticity in the continuous shallow water equations. The latter property cannot be preserved by a discretisation on a fixed Eulerian grid, but exact conservation of a discrete energy and a discrete potential enstrophy seems to be an effective substitute that prevents any distortion of the forward and inverse cascades in quasi-two dimensional turbulence through spurious sources and sinks of energy and potential enstrophy, and also increases the robustness of the scheme against nonlinear inst...
We investigate in this work a class of numerical schemes dedicated to the non-linear Shallow Water e...
International audienceWe investigate in this work a class of numerical schemes dedicated to the non-...
International audienceWe investigate in this work a class of numerical schemes dedicated to the non-...
We present an energy- and potential enstrophy-conserving scheme for the non-traditional shallow wate...
The shallow water equations provide a useful analogue of the fully compressible Euler equations sinc...
Arakawa and Lamb discovered a finite-difference approximation to the shallow-water equations that ex...
We describe an energy-enstrophy conserving discretisation for the rotating shallow water equations w...
This work is dedicated to the analysis of a class of energy stable and linearly well-balanced numeri...
This work is dedicated to the analysis of a class of energy stable and linearly well-balanced numeri...
This work is dedicated to the analysis of a class of energy stable and linearly well-balanced numeri...
This work is dedicated to the analysis of a class of energy stable and linearly well-balanced numeri...
An energy-conserving numerical scheme is developed for the multilayer shallow water equations (SWE’s...
We investigate in this work a class of numerical schemes dedicated to the non-linear Shallow Water e...
An energy-conserving numerical scheme is developed for the multilayer shallow water equations (SWE’s...
Using the shallow water equations, a numerical framework on a spherical geodesic grid that conserves...
We investigate in this work a class of numerical schemes dedicated to the non-linear Shallow Water e...
International audienceWe investigate in this work a class of numerical schemes dedicated to the non-...
International audienceWe investigate in this work a class of numerical schemes dedicated to the non-...
We present an energy- and potential enstrophy-conserving scheme for the non-traditional shallow wate...
The shallow water equations provide a useful analogue of the fully compressible Euler equations sinc...
Arakawa and Lamb discovered a finite-difference approximation to the shallow-water equations that ex...
We describe an energy-enstrophy conserving discretisation for the rotating shallow water equations w...
This work is dedicated to the analysis of a class of energy stable and linearly well-balanced numeri...
This work is dedicated to the analysis of a class of energy stable and linearly well-balanced numeri...
This work is dedicated to the analysis of a class of energy stable and linearly well-balanced numeri...
This work is dedicated to the analysis of a class of energy stable and linearly well-balanced numeri...
An energy-conserving numerical scheme is developed for the multilayer shallow water equations (SWE’s...
We investigate in this work a class of numerical schemes dedicated to the non-linear Shallow Water e...
An energy-conserving numerical scheme is developed for the multilayer shallow water equations (SWE’s...
Using the shallow water equations, a numerical framework on a spherical geodesic grid that conserves...
We investigate in this work a class of numerical schemes dedicated to the non-linear Shallow Water e...
International audienceWe investigate in this work a class of numerical schemes dedicated to the non-...
International audienceWe investigate in this work a class of numerical schemes dedicated to the non-...