AbstractSemi-Lagrangian semi-implicit (SLSI) method is currently one of the most efficient approaches for numerical solution of the atmosphere dynamics equations. In this research we apply splitting techniques in the context of a two-time-level SLSI scheme in order to simplify the treatment of the slow physical modes and optimize the solution of the elliptic equations related to implicit part of the scheme. The performed numerical experiments show the accuracy and computational efficiency of the scheme
The semi-Lagrangian numerical method, in conjunction with semi-implicit time integration, provides n...
Explicit time integration methods are characterised by a small numerical effort per time step. In th...
Numerical algorithms are proposed, analyzed and tested for improved efficiency and reliabil-ity of t...
An import issue for numerical weather prediction modes (NWP) is the time it takes to produce a valid...
Time splitting is a numerical procedure used in solution of partial differential equations whose solu...
The accuracy of atmospheric numerical models has steadily improved with increases in resolution. Thi...
The cell-integrated semi-Lagrangian method, in which trajectories from the corner points of a grid c...
Explicit time integration methods are characterized by a small numerical effort per time step. In th...
A new horizontally explicit/vertically implicit (HEVI) time splitting scheme for atmospheric modelli...
AbstractHybrid Eulerian-Lagrangian semi-implicit time-integrators (HELSI) are presented which use th...
AbstractA time-split transport scheme has been developed for the high-order multiscale atmospheric m...
SIGLEAvailable from British Library Document Supply Centre- DSC:DXN060676 / BLDSC - British Library ...
In this paper, we provide a systematic derivation of regularized equations for a non-hydrostatic and...
This article is devoted to the construction of a new class of semi-Lagrangian (SL) schemes with impl...
The cell-integrated semi-Lagrangian method, in which trajectories from the corner points of a grid c...
The semi-Lagrangian numerical method, in conjunction with semi-implicit time integration, provides n...
Explicit time integration methods are characterised by a small numerical effort per time step. In th...
Numerical algorithms are proposed, analyzed and tested for improved efficiency and reliabil-ity of t...
An import issue for numerical weather prediction modes (NWP) is the time it takes to produce a valid...
Time splitting is a numerical procedure used in solution of partial differential equations whose solu...
The accuracy of atmospheric numerical models has steadily improved with increases in resolution. Thi...
The cell-integrated semi-Lagrangian method, in which trajectories from the corner points of a grid c...
Explicit time integration methods are characterized by a small numerical effort per time step. In th...
A new horizontally explicit/vertically implicit (HEVI) time splitting scheme for atmospheric modelli...
AbstractHybrid Eulerian-Lagrangian semi-implicit time-integrators (HELSI) are presented which use th...
AbstractA time-split transport scheme has been developed for the high-order multiscale atmospheric m...
SIGLEAvailable from British Library Document Supply Centre- DSC:DXN060676 / BLDSC - British Library ...
In this paper, we provide a systematic derivation of regularized equations for a non-hydrostatic and...
This article is devoted to the construction of a new class of semi-Lagrangian (SL) schemes with impl...
The cell-integrated semi-Lagrangian method, in which trajectories from the corner points of a grid c...
The semi-Lagrangian numerical method, in conjunction with semi-implicit time integration, provides n...
Explicit time integration methods are characterised by a small numerical effort per time step. In th...
Numerical algorithms are proposed, analyzed and tested for improved efficiency and reliabil-ity of t...