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Pregled bibliografske jedinice broj: 585624

Numerical analysis of the circulation variability in the Zadar channel area (east Adriatic)


Lončar, Goran; Beg Paklar, Gordana; Andročec, Vladimir
Numerical analysis of the circulation variability in the Zadar channel area (east Adriatic) // Advances in fluid mechanics IX / M. Rahman & C.A. Brebbia (ur.).
Southampton: Wessex Institute of Technology Press, 2012. str. 521-532


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Naslov
Numerical analysis of the circulation variability in the Zadar channel area (east Adriatic)

Autori
Lončar, Goran ; Beg Paklar, Gordana ; Andročec, Vladimir

Vrsta, podvrsta i kategorija rada
Poglavlja u knjigama, znanstveni

Knjiga
Advances in fluid mechanics IX

Urednik/ci
M. Rahman & C.A. Brebbia

Izdavač
Wessex Institute of Technology Press

Grad
Southampton

Godina
2012

Raspon stranica
521-532

ISBN
978-1-84564-600-4

Ključne riječi
hydrodynamic models, ROMS, POM, MIKE 3 FM, wind-induced currents, tidal currents, ADCP measurements, Adriatic Sea, Zadar.

Sažetak
Three numerical hydrodynamic models, ROMS, POM and MIKE 3 FM, were used to simulate circulation variability in the middle Adriatic coastal area. ROMS and POM models were used to perform a year-long simulation of the Adriatic circulation with the spatial resolution of approximately 2 km. Temperature, salinity and sea level fields, obtained by the ROMS model, were used for the initial and boundary conditions in the MIKE 3 FM local domain covering the channel area off Zadar. A similar area was covered with the POM local domain nested within the shelf and Adriatic-scale POM models using threedimensional velocity, temperature and salinity fields, as well as two-dimensional sea level fields from coarser resolution grids. Current fields obtained by both modelling systems are in agreement with the ADCP measurements performed in the area of the local models. During winter northwestward currents dominate in the surface layer, while in the lower layers of the channel topographically controlled gyres can be observed. Both measurements and numerical simulations indicate current reversal to southeastern direction in the coastal area off Zadar during summer.

Izvorni jezik
Engleski

Znanstvena područja
Građevinarstvo



POVEZANOST RADA


Ustanove:
Institut za oceanografiju i ribarstvo, Split,
Građevinski fakultet, Zagreb

Poveznice na cjeloviti tekst rada:

Pristup cjelovitom tekstu rada

Citiraj ovu publikaciju:

Lončar, Goran; Beg Paklar, Gordana; Andročec, Vladimir
Numerical analysis of the circulation variability in the Zadar channel area (east Adriatic) // Advances in fluid mechanics IX / M. Rahman & C.A. Brebbia (ur.).
Southampton: Wessex Institute of Technology Press, 2012. str. 521-532
Lončar, G., Beg Paklar, G. & Andročec, V. (2012) Numerical analysis of the circulation variability in the Zadar channel area (east Adriatic). U: M. Rahman & C.A. Brebbia (ur.) Advances in fluid mechanics IX. Southampton, Wessex Institute of Technology Press, str. 521-532.
@inbook{inbook, author = {Lon\v{c}ar, Goran and Beg Paklar, Gordana and Andro\v{c}ec, Vladimir}, year = {2012}, pages = {521-532}, keywords = {hydrodynamic models, ROMS, POM, MIKE 3 FM, wind-induced currents, tidal currents, ADCP measurements, Adriatic Sea, Zadar.}, isbn = {978-1-84564-600-4}, title = {Numerical analysis of the circulation variability in the Zadar channel area (east Adriatic)}, keyword = {hydrodynamic models, ROMS, POM, MIKE 3 FM, wind-induced currents, tidal currents, ADCP measurements, Adriatic Sea, Zadar.}, publisher = {Wessex Institute of Technology Press}, publisherplace = {Southampton} }
@inbook{inbook, author = {Lon\v{c}ar, Goran and Beg Paklar, Gordana and Andro\v{c}ec, Vladimir}, year = {2012}, pages = {521-532}, keywords = {hydrodynamic models, ROMS, POM, MIKE 3 FM, wind-induced currents, tidal currents, ADCP measurements, Adriatic Sea, Zadar.}, isbn = {978-1-84564-600-4}, title = {Numerical analysis of the circulation variability in the Zadar channel area (east Adriatic)}, keyword = {hydrodynamic models, ROMS, POM, MIKE 3 FM, wind-induced currents, tidal currents, ADCP measurements, Adriatic Sea, Zadar.}, publisher = {Wessex Institute of Technology Press}, publisherplace = {Southampton} }




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