A fully implicit scheme for the barotropic primitive equations

An efficient implicit finite-difference method is developed and tested for a global barotropic model. The scheme requires, at each time step, the solution of only one-dimensional block-tridiagonal linear systems. This additional computation is offset by the use of a time step chosen independently of...

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Veröffentlicht in:Monthly weather review 1985-04, Vol.113 (4), p.436-448
Hauptverfasser: Cohn, S. E., Dee, D., Marchesin, D., Isaacson, E., Zwas, G.
Format: Artikel
Sprache:eng
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Zusammenfassung:An efficient implicit finite-difference method is developed and tested for a global barotropic model. The scheme requires, at each time step, the solution of only one-dimensional block-tridiagonal linear systems. This additional computation is offset by the use of a time step chosen independently of the mesh spacing. The method is second-order accurate in time and fourth-order accurate in space. Present experience indicates that this implicit method is practical for numerical simulation on fine meshes.
ISSN:0027-0644
1520-0493
DOI:10.1175/1520-0493(1985)113<0436:afisft>2.0.co;2