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Identyfikacja nowego typu cyrkulacji prądowej w półzamkniętej zatoce Ria de Vigo (Hiszpania). Część 1

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
EN
Identification of a new type of current circulation in the semi-enclosed bay of Ria de Vigo (Spain). Part 1
Języki publikacji
PL
Abstrakty
PL
Charakterystyka typowego dla Ria de Vigo przepływu resztkowego. Implementacja oraz walidacja za pomocą wysokorozdzielczego, trójwymiarowego modelu hydrodynamicznego ROMS.
EN
Characteristics of typical residual flow in the Ria de Vigo. Implementation and validation using a high-resolution, three-dimensional ROMS hydrodynamic model.
Rocznik
Tom
Strony
102--122
Opis fizyczny
Bibliogr. 42 poz., rys., tab.
Twórcy
  • Instytut Budownictwa Wodnego PAN w Gdańsku
Bibliografia
  • 1. Álvarez-Salgado X.A., Gago J., Miguel B.M., Gilcoto M., Pérez F.F.: Surface waters of the NW Iberian Margin: Upwelling on the shelf versus outwelling of upwelled waters from the Rías Baixas. Estuarine Coastal Shelf Sci., 51, 2000, 821-837.
  • 2. Álvarez-Salgado X. A., Gilcoto M.: Inferring nitrification rates with an inverse method in a coastal upwelling system, Ría de Vigo (NW Spain). Mar Ecol Prog Ser, 276, 2004, 3-17.
  • 3. Barton E. D., Largier J. L., Torres R., Sheridan M., Trasviña A., Souza A., Pazos Y., Valle-Levinson A.: Coastal upwelling and downwelling forcing of circulation in a semi-enclosed bay: Ria de Vigo. Prog. Oceanogr., 134, 2015, 173-189.
  • 4. Blanton J. O., Tenore K. R., Castillejo F., Atkinson L.P., Schwing F. B., Lavin A.: The relationship of upwelling to mussel production in the rias on the western coast of Spain. J. Mar. Res., 45, 1987, 497-511.
  • 5. Debreu L.,Vouland Ch., Blayo E.: AGRIF: Adaptive grid refinement in Fortran. Computers & Geosciences, Elsevier, 34, 2008, 8-13.
  • 6. Estrada M.: Phytoplankton distribution and composition off the coast of Galicia northwest of Spain. J. Plankton Res., 6, 1984, 417-434.
  • 7. Figueiras F. G., Jones K., Mosquera A. M., Alvarez-Salgado X. A., Edwards A. & MacDougall N.: Red tide assemblage formation in an estuarine upwelling ecosystem: Ría de Vigo. J. Plankt. Res. 16, 1994, 857-878.
  • 8. Figueiras F. G., Labarta U., Fernández-Reiriz M.-J.: Coastal upwelling, primary production and mussel growth in the Rías Baixas of Galicia. Hydrobiologia, 484, 2002, 121-131, 10.1023/A:1021309222459.
  • 9. Fiúza A. F. G.: Upwelling patterns of Portugal, in Coastal Upwelling: Its Sediment Record, edited by Suess E. and Thiede J.. Plenum, New York, 1983, 85-97.
  • 10. Flagg C. N., Vennersch J. A, Beardsley R. C.: 1974 MIT New Engl and Shelf Dynamics Experiment (March, 1974). Data Report, Part II: The Moored Array. MIT Rpt. 76-1, 1976.
  • 11. Fraga F. & Rios A. & P F.F. & Figueiras, F. G.: Theoretical limits of oxygen: carbon and oxygen:nitrogen ratios during photosynthesis and mineralisation of organic matter in the sea. Scientia Marina. 62. 161-168. 10.3989/scimar, 1998, 62n1-2161.
  • 12. Fraga F.: Upwelling off the Galician coast, Northwest Spain. In: Richardson, F. A. (Ed.), Coastal Upwelling. American Geophysical Union, Washington, 1981, 176-182.
  • 13. Froján M. Arbones B., Alonso-Pérez F., Zúñiga D., Figueiras F. G., Castro C. G.: Shift in phytoplankton size structure and trophic status of the upwelling system Ría de Vigo (NW Iberia) due to mussel farming, ICES Annual Science Conference, 2014.
  • 14. Froján M., Castro C. G, Zúñiga D., Arbones B., Alonso-Pérez F., & Figueiras F. G.: Mussel farming impact on pelagic production and respiration rates in a coastal upwelling embayment (Ría de Vigo, NW Spain), Estuar. Coast. Shelf Sci., 204, 2018, 130-139, https://doi.org/10.1016/j.ecss.2018.02.025.
  • 15. Gilcoto M., Álvarez Salgado X. A., Pérez F. F.: Computing optimum estuarine residua fluxes with a multiparameter inverse method (OERFIM): Application to the Ria de Vigo (NW Spain), J. Geophys. Res. Oceans, 106 (C12), 2001, 31303.
  • 16. Gilcoto M., Pardo P. C., Álvarez-Salgado X. A., Pérez F. F.: Exchange fluxes between the Ría de Vigo and the shelf: A bidirectional flow forced by remote wind, J. Geophys. Res., 112, 2007 C06001, doi:10.1029/2005JC003140.
  • 17. Gomez-Gesteira M., Montero P., Prego R,. Taboada J., Leitao P., Ruiz-Villarreal M., Neves R., Perez-Villar V.: A two-dimensional particle tracking model for pollution dispersion in A Coruña and Vigo Rias (NW Spain). Oceanol Acta 22(2),1999,167-177
  • 18. Maréchal D.: A soil-based approach to rainfall-runoff modelling in ungauged catchments for England and Wales. PhD thesis, Cranfield University, 2004.
  • 19. Míguez B. M., Farína-Busto L., Figueiras F. G., Pérez F. F.: Succession of phytoplankton assemblages in relations to estuarine hydrodynamics in the Ría de Vigo: a box model approach. Sci.Mar.65(Suppl.), 2001, 65-76.
  • 20. Monfort M. C.: The European market for mussels. Globefish Research Programme 115, FAO, Rome, Italy, 2014.
  • 21. Montero P., Gómez-Gesteira M., Taboada, J. J., Ruiz-Villarreal M., Santos A. P., Neves R. R., Prego R., Pérez-Villar V.: On residual circulation of the Ria of Vigo, using a 3-D baroclinic model. Boletin – Instituto Espanol de Oceanografia. 15, 1999.
  • 22. Otero P., Ruiz-Villarreal M. and Peliz A.: Variability of river plumes off Northwest Iberia in response to wind events. J. Mar. Syst., 72(1-4), 2008, 238-255.
  • 23. Pardo P. C., Gilcoto M., Pérez F. F.: Short-time scale coupling between termohaline and meteorological forcing in the Ría dePontevedra. Sci. Mar., 65, 2001, 229–240.
  • 24. Pérez-Camacho A., Labarta U., Beiras R.: Growth of mussel (Mytilus edulis galloprovincialis) in cultivation raft. Influence of seed source, cultivation site and food availability. Aquaculture 138, 1995, 349–362.
  • 25. Penven P., Marchesiello P., Debreu L., Lefevre J.: Software tools for pre- and post- processing of oceanic regional simulations. Environ Model Softw 23, 2007, 660-662.
  • 26. Peliz A., Rosa, T.L., Santos, A. M. P., Pissarra, J. L.: Fronts, jets, and counter-flows in the Western Iberian upwelling system. Journal of Marine Systems 35 (1-2), 2002, 61-77. http://dx.doi.org/10.1016/S0924-7963(02)00076-3.
  • 27. Piedracoba S., Álvarez-Salgado X. A., Rosón G., Herrera J. L.: Short-timescale thermohaline variability and residual circulation in the central segment of the coastal upwelling system of the Ría de Vigo (northwest Spain) during four contrasting periods. J. Geophys. Res., 110, 2005, C03018, doi:10.1029/2004JC002556.
  • 28. Prego R. Fraga F.: A simple model to calculate the residual flows in a Spanish ria. Hydrographics consequences in the ria of Vigo, Estuarine Coastal Shelf Sci., 34, 1992, 603-615.
  • 29. Ríos, A., Nombela M., Pérez F. F., Rosón G., Fraga F.: Calculation of runoff to an estuary: Ría de Vigo, Sci. Mar., 56(1), 1992, 29–33.
  • 30. Santos A. M. P., Peliz A., Dubert J., Oliveira P.B., Angélico M. M., Ré P.: Impact of a winter upwelling event on the distribution and transport of sardine (Sardina pilchardus) eggs and larvae off western Iberia: a retention mechanism. Continental Shelf Research, Volume 24, Issue 2,2004, 149-165, https://doi.org/10.1016/j.csr.2003.10.004.
  • 31. Shchepetkin A. F., McWilliams J. C.: The regional ocean modeling system: a split-explicit, free-surface, topography following coordinates ocean model. Ocean Model 9, 2005, 347-404.
  • 32. Shchepetkin A. F., McWilliams J.C.: Correction and commentary for “Ocean forecasting in terrain-following coordinates: formulation and skill assessment of the regional ocean modeling system” by Haidvogel et al. J Comp Phys 227:3595–3624, J Comp Phys, 228 (24), 2009, 8985-9000.
  • 33. Sousa M. C., Vaz N., Alvarez I., Gomez-Gesteira M., Dias J. M.: Influence of the Minho River plume on the Rias Baixas (NW of the Iberian Peninsula). J Mar Syst, 139, 2014, 248-260.
  • 34. Souto C., Fariña L., Alvarez E., Rodríguez I.: Wind and tide current prediction using a 3D finite difference model in the Ría de Vigo (NW Spain), Sci. Mar., 65 (1), 2001, 269-276.
  • 35. Souto C., Gilcoto M., Fariña-Busto L., Pérez F. F.: Modelling the residual circulation of a coastal embayment affected by wind driven upwelling: Circulation of the Ria de Vigo (NW Spain), J. Geophys. Res., 108 (C11), 2003, 3340.
  • 36. Taboada J. J., Prego R., Ruiz-Villarreal M., Gómez-Gesteira M., Montero P., Santos A. P., Pérez-Villar V.: Evaluation of the seasonal variations in the residual circulation in the Ría de Vigo (NW Spain) by means of a 3D baroclinic model, Estuar. Coast. Shelf Sci., 47, 1998, 661-670.
  • 37. Tilstone G. H., Figueiras F. G., Fraga F.: Upwelling-downwelling sequences in the generation of red tides in a coastal upwelling system. Mar Ecol Prog Ser 112, 1994, 241-253.
  • 38. Tilstone G. H., Miguez B. M., Figueiras F. G., Fermín E. G.: Diatom dynamics in a coastal ecosystem affected by upwelling: coupling between species succession, circulation and biogeochemical processes. Mar Ecol Prog Ser 205, 2000, 23-41.
  • 39. Torres R., Barton E. D.: Onset and development of the Iberian poleward flow along the Galician coast, Cont. Shelf Res., 26 (10), 2006, 1134-1153.
  • 40. Torres López S., Varela R. A., Delhez E.: Residual circulation and thermohaline distribution of the Ría de Vigo: A 3-D hydrodynamical model, Sci. Mar., 65 (1), 2001, 277-289.
  • 41. Villacieros-Robineau N., Herrera J. L., Castro C. G., Piedracoba S., Roson G.: Hydrodynamic characterization of the bottom boundary layer in a coastal upwelling system (Ría de Vigo, NW Spain), Continental Shelf Research, Volume 68, 2013, Pages 67-79, https://doi.org/10.1016/j.csr.2013.08.017.
  • 42. Zúñiga D., Alonso-Pérez F., Castro C. G., Arbones B., Figueiras F. G.: Seasonal contribution of living phytoplankton carbonto vertical fluxesina coastal upwellingu system (Ría de Vigo, NW Spain). Cont. Shelf Res., 31(5), 2011, 414-424, http://dx.doi.org/10.1016/j.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-27db447a-f9bd-49da-96a5-f868abf31321
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