This is the final version. Available from Elsevier via the DOI in this record.We describe a compatible finite element discretisation for the shallow water equations on the rotating sphere, concentrating on integrating consistent upwind stabilisation into the framework. Although the prognostic variables are velocity and layer depth, the discretisation has a diagnostic potential vorticity that satisfies a stable upwinded advection equation through a Taylor–Galerkin scheme; this provides a mechanism for dissipating enstrophy at the gridscale whilst retaining optimal order consistency. We also use upwind discontinuous Galerkin schemes for the transport of layer depth. These transport schemes are incorporated into a semi-implicit formulation tha...
The problem to obtain accurate simulations of the atmospheric and oceanic equations has become essen...
The numerical simulation of the Earth’s atmosphere plays an important role in developing our unders...
The authors describe a numerical model for simulating shallow water flows on a rotating sphere. The ...
We describe a compatible finite element discretisation for the shallow water equations on the rotati...
We present an energy conserving space discretisation of the rotating shallow water equations using c...
We describe an energy-enstrophy conserving discretisation for the rotating shallow water equations w...
This is the final version. Available from Oxford University Press via the DOI in this record.Compati...
Copyright © 2015 Elsevier. NOTICE: this is the author’s version of a work that was accepted for pub...
This is the author accepted manuscript. The final version is available from Wiley via the DOI in thi...
We present an energy/entropy stable and high order accurate finite difference method for solving the...
Methods for upwinding the potential vorticity in a compatible finite element discretisation of the r...
The shallow water equations in spherical geometry provide a first prototype for developing and testi...
In this paper we outline several new particle-mesh methods that conserve potential vorticity (PV) in...
Partial support for this work was provided through the National Science Foundation award AGS-1333029...
A key part of numerical weather prediction is the simulation of the partial differential equations ...
The problem to obtain accurate simulations of the atmospheric and oceanic equations has become essen...
The numerical simulation of the Earth’s atmosphere plays an important role in developing our unders...
The authors describe a numerical model for simulating shallow water flows on a rotating sphere. The ...
We describe a compatible finite element discretisation for the shallow water equations on the rotati...
We present an energy conserving space discretisation of the rotating shallow water equations using c...
We describe an energy-enstrophy conserving discretisation for the rotating shallow water equations w...
This is the final version. Available from Oxford University Press via the DOI in this record.Compati...
Copyright © 2015 Elsevier. NOTICE: this is the author’s version of a work that was accepted for pub...
This is the author accepted manuscript. The final version is available from Wiley via the DOI in thi...
We present an energy/entropy stable and high order accurate finite difference method for solving the...
Methods for upwinding the potential vorticity in a compatible finite element discretisation of the r...
The shallow water equations in spherical geometry provide a first prototype for developing and testi...
In this paper we outline several new particle-mesh methods that conserve potential vorticity (PV) in...
Partial support for this work was provided through the National Science Foundation award AGS-1333029...
A key part of numerical weather prediction is the simulation of the partial differential equations ...
The problem to obtain accurate simulations of the atmospheric and oceanic equations has become essen...
The numerical simulation of the Earth’s atmosphere plays an important role in developing our unders...
The authors describe a numerical model for simulating shallow water flows on a rotating sphere. The ...