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- | ====== ANR STATOCEAN ====== | ||
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- | **Out of equilibrium statistical mechanics of geophysical flows and applications to the Kuroshio current (east of Japan) and to the Zapiola anticyclone (east of Argentina)** | ||
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- | Contact: Freddy Bouchet \\ | ||
- | Freddy.Bouchet [at] ens-lyon.fr \\ | ||
- | Funded by ANR-STATOCEAN \\ | ||
- | [[http:// | ||
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- | Members of the group: | ||
- | * Freddy Bouchet, Laboratoire de Physique, Ecole Normale Supérieure de Lyon (ENS-Lyon) | ||
- | * Eric Simonnet, Institut Non Linéaire de Nice Sophia-Antipolis (Valbonne) | ||
- | * Marianne Corvellec, Institut Non Linéaire de Nice Sophia-Antipolis (Valbonne) | ||
- | * Joël Sommeria, LEGI - Plaque Coriolis (Grenoble) | ||
- | * Julien Le Sommer, LEGI - Plaque Coriolis (Grenoble) | ||
- | * Antoine Venaille, LEGI - Plaque Coriolis (Grenoble) | ||
- | * Xavier Carton, LPO: Laboratoire de Physique des Océans (Brest) | ||
- | ===== Statistical mechanics ===== | ||
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- | This project aims at applying and developing tools of statistical physics for the study of the statistics of the large scales of geophysical flows. Even if they are out of equilibrium, | ||
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- | ===== The Kuroshio current and the Zapiola anticyclone ===== | ||
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- | We will study several important phenomena for the large scale dynamics of oceans ; on one hand the bistability of some of the western boundary currents like the Gulf Stream, but especially of the Kuroshio current (east of Japan), and on the other hand the self-organized Zapiola ocean anticyclone, | ||
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- | //[From Hallberg-Gnanadesikan - JPO 2006.] | ||
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- | // | ||
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- | ===== Aims in terms of statistical physics ===== | ||
- | * Theoretical ideas explaining and predicting in details, the self-organization of these flows, independently of the dynamical complexity, | ||
- | * New tools (large deviations) allowing to precisely characterize the statistics of the largest scales of these flows, | ||
- | * The design of models with a lower complexity, reproducing reasonably well the large scales dynamics and statistics and usable in climate problems (which is not the case currently). | ||
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- | ===== Aims in terms of geophysical fluid dynamics ===== | ||
- | * Reproduce current bistability in simple situations in laboratory experiments | ||
- | * Make numerical simulations of the Kuroshio bistability in simple models | ||
- | * Determine the dynamical mechanics of the Kuroshio bistability | ||
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- | Our approach is thus complementary and not opposed to the more traditional fluid dynamics and nonlinear dynamics developed earlier by oceanographers. A non negligible part of the project is experimental. It aims at reproducing in the lab the type of bistability that characterizes the Kuroshio current, thanks to indications that will be provided by statistical mechanics. | ||