Stability constraints for oceanic numerical models: implications for the formulation of time and space discretizations

Author:

Lemarié F.,Debreu L.,Madec G.,Demange J.,Molines J.M.,Honnorat M.

Funder

ANR

Publisher

Elsevier BV

Subject

Atmospheric Science,Geotechnical Engineering and Engineering Geology,Computer Science (miscellaneous),Oceanography

Reference72 articles.

1. Adcroft, A., Campin, J. M., Dutkiewicz, S., Evangelinos, C., Ferreira, D., Forget, G., Fox-Kemper, B., Heimbach, P., Hill, C., Hill, E., Hill, H., Jahn, O., Losch, M., Marshall, J., Maze, G., Menemenlis, D., Molod, A., 2014. MITGCM User Manual. MIT Department of EAPS, 77 Massachusetts Ave., Cambridge, MA02139-4307, March 10, 2014, 470 pp. http://mitgcm.org/public/r2_manual/latest/online_documents/manual.pdf.

2. Global modeling of internal tides within an eddying ocean general circulation model;Arbic;Oceanography,2012

3. Stability analysis for linear discretisations of the advection equation with Runge–Kutta time integration;Baldauf;J. Comp. Phys.,2008

4. Stability of a FBTCS scheme applied to the propagation of shallow-water inertia-gravity waves on various space grids;Beckers;J. Comp. Phys.,1993

5. Revisiting open boundary conditions from the point of view of characteristic variables;Blayo;Ocean Modell.,2005

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