Exponential integration methods offer a highly accurate approach to the time integration of large systems of differential equations. In recent years, they have attracted increased attention in a number of diverse fields due to advances in their computational efficiency. This has been as a result of the use of Krylov subspace methods for the approximation of the matrix exponentials which typically arise. In this work, we investigate the potential of exponential integration methods for use in atmospheric models. Two schemes are implemented in a shallow water model and tested against reference explicit and semi-implicit methods. In a number of experiments with standard test cases, the exponential methods are found to yield very accurate soluti...
This article studies time integration methods for stiff systems of ordinary differential equations ...
This article studies time integration methods for stiff systems of ordinary differential equations ...
We present an exponential time integration method for the incompressible Navier–Stokes equation. An ...
AbstractThe exponential propagation methods were applied in the past for accurate integration of the...
AbstractThe exponential propagation methods were applied in the past for accurate integration of the...
Stiff systems of ordinary differential equations (ODEs) play an essential role in the temporal integ...
International audienceThe application of exponential integrators based on Krylov techniques to large...
International audienceThe application of exponential integrators based on Krylov techniques to large...
The current trend in high-performance computing of a stagnating or even decreasing processor speed p...
The current trend in high-performance computing of a stagnating or even decreasing processor speed p...
Large scale numerical models of systems evolving over a wide range of temporal and spatial scales a...
Large scale numerical models of systems evolving over a wide range of temporal and spatial scales a...
This article studies time integration methods for stiff systems of ordinary differential equations ...
This article studies time integration methods for stiff systems of ordinary differential equations ...
This article studies time integration methods for stiff systems of ordinary differential equations ...
This article studies time integration methods for stiff systems of ordinary differential equations ...
This article studies time integration methods for stiff systems of ordinary differential equations ...
We present an exponential time integration method for the incompressible Navier–Stokes equation. An ...
AbstractThe exponential propagation methods were applied in the past for accurate integration of the...
AbstractThe exponential propagation methods were applied in the past for accurate integration of the...
Stiff systems of ordinary differential equations (ODEs) play an essential role in the temporal integ...
International audienceThe application of exponential integrators based on Krylov techniques to large...
International audienceThe application of exponential integrators based on Krylov techniques to large...
The current trend in high-performance computing of a stagnating or even decreasing processor speed p...
The current trend in high-performance computing of a stagnating or even decreasing processor speed p...
Large scale numerical models of systems evolving over a wide range of temporal and spatial scales a...
Large scale numerical models of systems evolving over a wide range of temporal and spatial scales a...
This article studies time integration methods for stiff systems of ordinary differential equations ...
This article studies time integration methods for stiff systems of ordinary differential equations ...
This article studies time integration methods for stiff systems of ordinary differential equations ...
This article studies time integration methods for stiff systems of ordinary differential equations ...
This article studies time integration methods for stiff systems of ordinary differential equations ...
We present an exponential time integration method for the incompressible Navier–Stokes equation. An ...