Articles | Volume 7, issue 4
https://doi.org/10.5194/os-7-503-2011
© Author(s) 2011. This work is distributed under
the Creative Commons Attribution 3.0 License.Numerical simulation and decomposition of kinetic energy in the Central Mediterranean: insight on mesoscale circulation and energy conversion
Related subject area
Approach: Numerical Models | Depth range: Surface | Geographical range: Mediterranean Sea | Phenomena: Current Field
Use of a hydrodynamic model for the management of water renovation in a coastal system
Three-dimensional modelling of wave-induced current from the surf zone to the inner shelf
Ocean Sci., 15, 215–226,
2019Ocean Sci., 8, 657–681,
2012Cited articles
Artale, V., Astraldi, M., Buffoni, G., and Gasparini, G. P.: Seasonal variability of gyre-scale circulation in the Northern Tyrrhenian Sea, J. Geophys. Res. Ocean, 99(C7), 14127–14137, 1994.
Astraldi, M., Gasparini, G. P., Sparnocchia, S., Moretti, S., and Sansone, E.: The characteristics of the Mediterranean water masses and the water transport in the Sicily Channel at longtime scale, edited by: Briand, F., Dynamics of the Straits and Channels, 2, CIESM Science Series, Monaco, 95–118, 1996.
Astraldi, M., Balopoulos, S., Candela, J., Font, J., Gacic, M., Gasparini, G. P., Manca, B., Theocharis, A., and Tintoré, J.: The role of straits and channels in understanding the characteristics of Mediterranean circulation, Prog. Oceanogr., 44, 65–108, 1999.
Astraldi, M., Gasparini, G. P., Vetrano, A., and Vignudelli, S.: Hydrographic characteristics and interannual variability of water masses in the central Mediterranean: a sensitivity test for long-term changes in the Mediterranean Sea, Deep-Sea Res. Pt. I, 49, 661–680, 2002.
Auclair, F., Casitas, S., and Marsaleix, P.: Application of an Inverse Method to Coastal Modeling, J. Atmos. Ocean Technol., 17, 1368–1391, 2000.