Reference : Marine hydrodynamical and biogeochemical model: general 3D circulation model of the West...
Scientific congresses and symposiums : Paper published in a book
Physical, chemical, mathematical & earth Sciences : Earth sciences & physical geography
http://hdl.handle.net/2268/74316
Marine hydrodynamical and biogeochemical model: general 3D circulation model of the Western Mediterranean Sea
English
Nihoul, Jacques mailto [Université de Liège - ULg > Services généraux (Faculté des sciences) > Relations académiques et scientifiques (Sciences) >]
Beckers, Jean-Marie mailto [Université de Liège - ULg > Département d'astrophys., géophysique et océanographie (AGO) > GeoHydrodynamics and Environment Research (GHER) >]
Brasseur, P. [> >]
Deleersnijder, E. [> >]
Djenidi, Salim mailto [Université de Liège - ULg > Département d'astrophys., géophysique et océanographie (AGO) > GeoHydrodynamics and Environment Research (GHER) >]
Lagasse, B. [> >]
Robe, F. [> >]
Smitz, J. [> >]
1991
EROS 2000 (European River Ocean System)
Martin, Jean-Marie
Barth, Hartmut
Commission of the European Communities
Water Pollution Research, EEC, Vol 26
19-37
International
Brussels
2nd Workshop on the North-West Mediterranean Sea
février 1990
Commission of the European Communities
Blanes
Spain
[en] The GHER 3D OGCM has been applied to the study of the general circulation of the Western Mediterranean. Taking into account inflows and outflows through the Straits and the atmospheric forcings, the model visualizes the horizontal and vertical motions of water masses and their month to month variability. The results of the basin scale provides boundary conditions for a finer grid nested model of the Gulf of Lion and of the Rhone rivers's plume.
Centre Interfacultaire de Recherches en Océanologie - MARE
http://hdl.handle.net/2268/74316

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