A two-level finite element discretization of the streamfunction formulation of the stationary quasi-geostrophic equations of the ocean

Journal Article (2013)
Author(s)

E.L. Foster (Virginia Tech, BCAM Basque Center for Applied Mathematics)

T. Iliescu (Virginia Tech)

David Wells (Virginia Tech)

Affiliation
External organisation
DOI related publication
https://doi.org/10.1016/j.camwa.2013.07.025
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Publication Year
2013
Language
English
Affiliation
External organisation
Pages (from-to)
1261-1271

Abstract

In this paper we proposed a two-level finite element discretization of the nonlinear stationary quasi-geostrophic equations, which model the wind driven large scale ocean circulation. Optimal error estimates for the two-level finite element discretization were derived. Numerical experiments for the two-level algorithm with the Argyris finite element were also carried out. The numerical results verified the theoretical error estimates and showed that, for the appropriate scaling between the coarse and fine mesh sizes, the two-level algorithm significantly decreases the computational time of the standard one-level algorithm.

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