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Pregled bibliografske jedinice broj: 1137936

Impact of dense-water flow over a sloping bottom on open-sea circulation: laboratory experiments and an Ionian Sea (Mediterranean) example


Gačić, Miroslav; Ursella, Laura; Kovačević, Vedrana; Menna, Milena; Malačič, Vlado; Bensi, Manuel; Negretti, Maria-Eletta; Cardin, Vanessa; Orlić, Mirko; Sommeria, Joël et al.
Impact of dense-water flow over a sloping bottom on open-sea circulation: laboratory experiments and an Ionian Sea (Mediterranean) example // Ocean science, 17 (2021), 4; 975-996 doi:10.5194/os-17-975-2021 (međunarodna recenzija, članak, znanstveni)


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Naslov
Impact of dense-water flow over a sloping bottom on open-sea circulation: laboratory experiments and an Ionian Sea (Mediterranean) example

Autori
Gačić, Miroslav ; Ursella, Laura ; Kovačević, Vedrana ; Menna, Milena ; Malačič, Vlado ; Bensi, Manuel ; Negretti, Maria-Eletta ; Cardin, Vanessa ; Orlić, Mirko ; Sommeria, Joël ; Viana Barreto, Ricardo ; Viboud, Samuel ; Valran, Thomas ; Petelin, Boris ; Siena, Giuseppe ; Rubino, Angelo

Izvornik
Ocean science (1812-0784) 17 (2021), 4; 975-996

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
Ionian Sea ; Adriatic Deep Water ; Vorticity ; The North Ionian Gyre

Sažetak
The North Ionian Gyre (NIG) displays prominent inversions on decadal scales. We investigate the role of internal forcing induced by changes in the horizontal pressure gradient due to the varying density of Adriatic Deep Water (AdDW), which spreads into the deep layers of the northern Ionian Sea. In turn, the AdDW density fluctuates according to the circulation of the NIG through a feedback mechanism known as the bimodal oscillating system. We set up laboratory experiments with a two-layer ambient fluid in a circular rotating tank, where densities of 1000 and 1015 kg m−3 characterize the upper and lower layers, respectively. From the potential vorticity evolution during the dense-water outflow from a marginal sea, we analyze the response of the open-sea circulation to the along-slope dense-water flow. In addition, we show some features of the cyclonic and anticyclonic eddies that form in the upper layer over the slope area. We illustrate the outcome of the experiments of varying density and varying discharge rates associated with dense-water injection. When the density is high (1020 kg m−3) and the discharge is large, the kinetic energy of the mean flow is stronger than the eddy kinetic energy. Conversely, when the density is lower (1010 kg m−3) and the discharge is reduced, vortices are more energetic than the mean flow – that is, the eddy kinetic energy is larger than the kinetic energy of the mean flow. In general, over the slope, following the onset of dense-water injection, the cyclonic vorticity associated with current shear develops in the upper layer. The vorticity behaves in a two-layer fashion, thereby becoming anticyclonic in the lower layer of the slope area. Concurrently, over the deep flat-bottom portion of the basin, a large-scale anticyclonic gyre forms in the upper layer extending partly toward a sloping rim. The density record shows the rise of the pycnocline due to the dense-water sinking toward the flat-bottom portion of the tank. We show that the rate of increase in the anticyclonic potential vorticity is proportional to the rate of the rise of the interface, namely to the rate of decrease in the upper-layer thickness (i.e., the upper-layer squeezing). The comparison of laboratory experiments with the Ionian Sea is made for a situation when the sudden switch from cyclonic to anticyclonic basin-wide circulation took place following extremely dense Adriatic water overflow after the harsh winter in 2012. We show how similar the temporal evolution and the vertical structure are in both laboratory and oceanic conditions. The demonstrated similarity further supports the assertion that the wind-stress curl over the Ionian Sea is not of paramount importance in generating basin-wide circulation inversions compared with the internal forcing.

Izvorni jezik
Engleski

Znanstvena područja
Geofizika



POVEZANOST RADA


Ustanove:
Prirodoslovno-matematički fakultet, Zagreb

Profili:

Avatar Url Vedrana Kovačević (autor)

Avatar Url Miroslav Gačić (autor)

Avatar Url Mirko Orlić (autor)

Poveznice na cjeloviti tekst rada:

doi os.copernicus.org

Citiraj ovu publikaciju:

Gačić, Miroslav; Ursella, Laura; Kovačević, Vedrana; Menna, Milena; Malačič, Vlado; Bensi, Manuel; Negretti, Maria-Eletta; Cardin, Vanessa; Orlić, Mirko; Sommeria, Joël et al.
Impact of dense-water flow over a sloping bottom on open-sea circulation: laboratory experiments and an Ionian Sea (Mediterranean) example // Ocean science, 17 (2021), 4; 975-996 doi:10.5194/os-17-975-2021 (međunarodna recenzija, članak, znanstveni)
Gačić, M., Ursella, L., Kovačević, V., Menna, M., Malačič, V., Bensi, M., Negretti, M., Cardin, V., Orlić, M. & Sommeria, J. (2021) Impact of dense-water flow over a sloping bottom on open-sea circulation: laboratory experiments and an Ionian Sea (Mediterranean) example. Ocean science, 17 (4), 975-996 doi:10.5194/os-17-975-2021.
@article{article, author = {Ga\v{c}i\'{c}, Miroslav and Ursella, Laura and Kova\v{c}evi\'{c}, Vedrana and Menna, Milena and Mala\v{c}i\v{c}, Vlado and Bensi, Manuel and Negretti, Maria-Eletta and Cardin, Vanessa and Orli\'{c}, Mirko and Sommeria, Jo\"{e}l and Viana Barreto, Ricardo and Viboud, Samuel and Valran, Thomas and Petelin, Boris and Siena, Giuseppe and Rubino, Angelo}, year = {2021}, pages = {975-996}, DOI = {10.5194/os-17-975-2021}, keywords = {Ionian Sea, Adriatic Deep Water, Vorticity, The North Ionian Gyre}, journal = {Ocean science}, doi = {10.5194/os-17-975-2021}, volume = {17}, number = {4}, issn = {1812-0784}, title = {Impact of dense-water flow over a sloping bottom on open-sea circulation: laboratory experiments and an Ionian Sea (Mediterranean) example}, keyword = {Ionian Sea, Adriatic Deep Water, Vorticity, The North Ionian Gyre} }
@article{article, author = {Ga\v{c}i\'{c}, Miroslav and Ursella, Laura and Kova\v{c}evi\'{c}, Vedrana and Menna, Milena and Mala\v{c}i\v{c}, Vlado and Bensi, Manuel and Negretti, Maria-Eletta and Cardin, Vanessa and Orli\'{c}, Mirko and Sommeria, Jo\"{e}l and Viana Barreto, Ricardo and Viboud, Samuel and Valran, Thomas and Petelin, Boris and Siena, Giuseppe and Rubino, Angelo}, year = {2021}, pages = {975-996}, DOI = {10.5194/os-17-975-2021}, keywords = {Ionian Sea, Adriatic Deep Water, Vorticity, The North Ionian Gyre}, journal = {Ocean science}, doi = {10.5194/os-17-975-2021}, volume = {17}, number = {4}, issn = {1812-0784}, title = {Impact of dense-water flow over a sloping bottom on open-sea circulation: laboratory experiments and an Ionian Sea (Mediterranean) example}, keyword = {Ionian Sea, Adriatic Deep Water, Vorticity, The North Ionian Gyre} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus


Citati:





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