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Abstract:

We investigate the effect of the future sea level rise (SLR) on the propagation of tides in the Patagonian Shelf by means of numerical simulations. Using a barotropic implementation of the Model for Applications at Regional Scales (MARS), we obtain solutions for scenarios which represent the present condition and potential future SLRs of 1, 2, and 10 m. The effect of flooding of low-lying areas is studied, and its influence on the propagation of tides in the region is discussed. Due to the coastal morphological features and the sense of tidal wave propagation in the Southern Hemisphere, inundation does not significantly modify the solution in the Patagonian Shelf; nevertheless, results are substantially changed in the much lower Northern Argentinean Shelf, north of 40° S, where dissipation is increased. The amplitude of M2 responds to SLR in a spatially nonuniform manner. The response is nonlinear, particularly in regions close to the amphidromic points. Tidal dissipation by bottom friction increases consistently by 16% for the more extreme scenario with a generalized increment of tidal amplitudes, and therefore currents, over the Patagonian Shelf. Changes in the extension and position of tidal fronts are also explored. The results suggest that changes will be significant, with a reduction of the mixed areas in Cabo Blanco and San Sebastián and an increment of them in the vicinity of Península Valdés. Physical mechanisms that explain the observed modifications in the tidal regime are the changes with SLR of the speed of the tidal wave, the Rossby radius of deformation, the energy dissipation by bottom friction, and the resonant properties of the basin. Similarly to numerical studies performed for other coastal areas of the world, results indicate that important changes in the characteristics of tides can occur if SLR is large. ©Coastal Education and Research Foundation, Inc. 2015.

Registro:

Documento: Artículo
Título:Future Sea Level Rise and Changes on Tides in the Patagonian Continental Shelf
Autor:Luz Clara, M.; Simionato, C.G.; D'Onofrio, E.; Moreira, D.
Filiación:Centro de Investigaciones Del Mar y la Atmósfera (CIMA/CONICET-UBA), Departamento de Ciencias de la Atmósfera y Los Océanos, Universidad de Buenos Aires, Buenos Aires, C1428EGA, Argentina
Servicio de Hidrografía Naval, Ministerio de Defensa, Buenos Aires, C1270ABV, Argentina
Instituto de Geodesia y Geofísica Aplicadas, Facultad de Ingeniería, Universidad de Buenos Aires, Buenos Aires, C1127AAR, Argentina
Palabras clave:amphidromic points; Climate change; tidal fronts; tides modeling; barotropic motion; climate change; dissipation; sea level change; Southern Hemisphere; tidal modeling; wave propagation; Argentina; Atlantic Ocean; Canary Islands; Cape Blanc; Chubut; Gomera; Patagonian Shelf; San Sebastian [Gomera]; Santa Cruz de Tenerife [(PRV) Canary Islands]; Spain; Valdes Peninsula
Año:2015
Volumen:31
Número:3
Página de inicio:519
Página de fin:535
DOI: http://dx.doi.org/10.2112/JCOASTRES-D-13-00127.1
Título revista:Journal of Coastal Research
Título revista abreviado:J. Coast. Res.
ISSN:07490208
CODEN:JCRSE
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_07490208_v31_n3_p519_LuzClara

Referencias:

  • Acha, E.M., Mianzan, H.W., Guerrero, R.A., Favero, M., Bava, J., Marine fronts at the continental shelves of austral South America, physical and ecological processes (2004) Journal of Marine Systems, 44 (1-2), pp. 83-105
  • Andre, G., Garreau, P., Garnier, V., Fraunié, P., Modelled variability of the sea surface circulation in the north-western Mediterranean Sea and in the Gulf of Lions (2005) Ocean Dynamics, 55, pp. 294-308
  • Arbic, B.K., Garner, S.T., Hallberg, R.W., Simmons, H.L., The accuracy of surface elevations in forward global barotropic and baroclinic tide models (2004) Deep-Sea Research Part II: Topical Studies in Oceanography, 51, pp. 3069-3101
  • Arbic, B.K., Garrett, C., A coupled oscillator model of shelf and ocean tides (2009) Continental Shelf Research, 30 (6), pp. 564-574
  • Arbic, B.K., Karsten, R.H., Garret, C., On tidal resonance in the global ocean and the back-effect of coastal tides upon open-ocean tides (2010) Atmosphere-Ocean, 47 (4), pp. 239-266
  • Austin, R.M., Modelling Holocene tides on the NW European continental shelf (1991) Terra Nova, 3, pp. 276-288
  • Bava, J., Gagliardini, D.A., Dogliotti, A.I., Lasta, C.A., Annual distribution and variability of remotely sensed sea surface temperature fronts in the south-western Atlantic Ocean (2002) Proceedings of the 29th International Symposium on Remote Sensing of the Environment (Buenos Aires, Argentina, International Center for Remote Sensing of Environment), pp. 1-6
  • Buchwald, V.T., Resonance of Poincaré waves on a continental shelf (1980) Australian Journal of Marine and Freshwater Research, 31, pp. 451-457
  • Carreto, J.I., Benavides, H.R., Negri, R.M., Glorioso, P.D., Toxic red tide in the Argentine Sea. Phytoplankton distribution and survival of the toxic dinoflagellate Gonyaulax excavata in a frontal area (1986) Journal of Plankton Research, 8, pp. 15-28
  • Cartwright, D.E., Ray, R.D., New estimates of oceanic tidal energy dissipation from satellite altimetry (1989) Geophysical Research Letters, 16 (1), pp. 73-76
  • Cazenave, A., Atmosphere: How fast are the ice sheets melting? (2006) Science, 314 (5803), pp. 1250-1252
  • Cnes, Aviso+ Satellite Altimetry Data, , http://www.aviso.oceanobs.com/
  • Convey, P., Bindschadler, R., Di Prisco, G., Fahrbach, E., Gutt, J., Hodgson, D.A., Mayewski, P.A., Turner, J., Antarctic climate change and the environment (2009) Antarctic Science, 21, pp. 541-563
  • Davies, A.M., Sauvel, J., Evans, J., Computing near coastal tide dynamics from observations and a numerical model (1985) Continental Shelf Research, 4, pp. 341-366
  • De Ronde, J.G., Bepaling Knoopfactoren Harmonische Analyse met het Continental Shelf Model (1986) Rijkswaterstaat, Dienst Getijdewateren, 250p. , Notitie GWAO, 86.309
  • Egbert, G.D., Ray, R.D., Significant dissipation of tidal energy in the deep ocean inferred from satellite altimeter data (2000) Nature, 405, pp. 775-778
  • Egbert, G.D., Ray, R.D., Bills, B.G., Numerical modeling of the global semidiurnal tide in the present day and in the last glacial maximum (2004) Journal of Geophysical Research, 109 (C03003), p. 15
  • FFEM (French Fund for the Global Environment), Proyecto "Reducción y Prevención de la Cantaminación de Origen Terrestre en El Río de la Plata y su Frente Marítimo Mediante la Implementación del Programa de Acción Estratégico de Freplata", , http://www.freplata.org
  • Flather, R.A., Williams, J.A., Climate change effects on storm surges: Methodologies and results (2000) Climate Scenarios for Water Related and Climate Impacts, pp. 66-78. , Beersma, J.; Agnew, M.; Viner, D., and Hulme, M., et al. (eds.) ECLAT-2 Workshop Report No KNMI, The Netherlands May 10-12, 2000. Norwich, United Kingdom: Climate Research Unit
  • Flick, R.E., Murray, J.F., Ewing, L.C., Trends in United States tidal datum statistics and tide range (2003) Journal of Waterway, Port, Coastal, and Ocean Engineering - ASCE, 129, pp. 155-164
  • Foreman, M.G.G., Manual for Tidal Heights Analysis and Prediction (1977) Pacific Marine Science Report, 97p. , Patricia Bay, Sidney, B.C., Canada Sidney, B.C., Canada: Institute of Ocean Science
  • Gerritsen, H., Berentsen, C.W.J., A modelling study of tidally induced equilibrium sand balances in the North Sea during the Holocene (1998) Continental Shelf Research, 18, pp. 151-200
  • Gill, A., (1982) Atmosphere-Ocean Dynamics, 662p. , San Diego, California: Academic
  • Glorioso, P.D., Temperature distribution related to shelf-sea fronts on the Patagonian shelf (1987) Continental Shelf Research, 7 (1), pp. 27-34
  • Glorioso, P.D., Patagonian Shelf 3-D tide and surge model (2000) Journal of Marine Systems, 24, pp. 141-151
  • Glorioso, P.D., Flather, R.A., A barotropic model of the currents off SE South America (1995) Journal of Geophysical Research, 100, pp. 13427-13440
  • Glorioso, P.D., Flather, R.A., The Patagonian Shelf tides (1997) Progress in Oceanography, 40, pp. 263-283
  • Glorioso, P.D., Simpson, J.H., Numerical modelling of the M<inf>2</inf> tide on the northern Patagonian shelf (1994) Continental Shelf Research, 14, pp. 267-278
  • Green, J., Ocean tides and resonance (2010) Ocean Dynamics, 60, pp. 1243-1253
  • Greenberg, D.A., Blanchard, W., Smith, B., Barrow, E., Climate change, mean sea level rise and high tides in the Bay of Fundy (2012) Atmosphere-Ocean, 50 (3), pp. 1-16
  • Guerrero, R.A., Piola, A.R., Masas de agua en la plataforma continental (1997) El Mar Argentino y Sus Recursos Pesqueros. Antecedentes Históricos de Las Exploraciones en El Mar y Las Características Ambientales., 1, pp. 107-118. , Boschi, E.E. (ed.) Mar del Plata, Argentina: Instituto Nacional de Investigaciones y Desarrollo Pesquero
  • Haigh, I., Nicholls, R., Wells, N., Assessing changes in extreme sea levels: Application to the English Channel, 1900-2006 (2010) Continental Shelf Research, 30, pp. 1042-1055
  • Howard, T., Lowe, J., Horsburgh, K., Interpreting century-scale changes in southern North Sea storm surge climate derived from coupled model simulations (2010) Journal of Climate, 23, pp. 6234-6247
  • Model for Applications at Regional Scale, , http://wwz.ifremer.fr/mars3d
  • Jay, D.A., Evolution of tidal amplitudes in the eastern Pacific Ocean (2009) Geophysical Research Letters, 36, p. L04603
  • Lazure, P., Dumas, F., An external-internal mode coupling for a 3D hydrodynamic model for applications at regional scale (MARS) (2008) Advances in Water Resources, 31 (2), pp. 233-250
  • Lazure, P., Garnier, V., Dumas, F., Herry, C., Chiffl, M., Development of a hydrodynamic model of the Bay of Biscay. Validation of hydrology (2009) Continental Shelf Research, 29 (8), pp. 985-997
  • Lazure, P., Jegou, A.M., 3D modelling of seasonal evolution of Loire and Gironde plumes on Biscay continental shelf (1998) Oceanologica Acta, 21 (2), pp. 165-177
  • Lazure, P., Salomon, J.C., Etude par modeles mathématiques de la circulation marine entre Quiberon et Noirmoutier. Actes du colloque international sur l'environnement des mers épicontinentales (1991) Oceanologica Acta, 11, pp. 93-99
  • Meehl, G.A., Stocker, T.F., Collins, W.D., Friedlingstein, P., Gaye, A.T., Gregory, J.M., Kitoh, A., Zhao, Z.-C., Global climate projections (2007) Climate Change 2007: The Physical Science Basis. Contribution of Working Group 1 to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change, 2007., pp. 747-845. , Solomon, S.; Qin, M.D.; Manning, M.; Chen, Z.; Marquis, M.; Averyt, K.B.; Tignor, M., and Miller, H.L., (eds.) Cambridge, United Kingdom: Cambridge University Press
  • Middleton, J.H., Bode, L., Poincaré waves obliquely incident to a continental shelf (1987) Continental Shelf Research, 7, pp. 177-190
  • Miller, G.R., The flux of tidal energy out of the deep oceans (1966) Journal of Geophysical Research, 71, pp. 2485-2489
  • Moreira, D., Simionato, C.G., Dragani, W., Modeling ocean tides and their energetics in the North Patagonia Gulfs of Argentina (2011) Journal of Coastal Research, 27 (1), pp. 87-102
  • Moreira, D., Simionato, C.G., Gohin, F., Cayocca, F., Luz Clara Tejedor, M., Suspended matters mean distribution and seasonal cycle in the Río de la Plata estuary and the adjacent shelf from MODIS and in situ observations (2013) Continental Shelf Research, 68, pp. 51-66
  • Müller, M., Rapid change in semi-diurnal tides in the North Atlantic since 1980 (2011) Geophysical Research Letters, 38, p. L11602
  • Muller, H., Blanke, B., Dumas, F., Mariette, V., Identification of typical scenarios for the surface Lagrangian residual circulation in the Iroise Sea (2010) Journal of Geophysical Research - Oceans, 115, p. C07008
  • Nicholls, R.J., Marinova, N., Lowe, J.A., Brown, S., Vellinga, P., De Gusmao, D., Hinkel, J., Tol, R.S.J., Sea-level rise and its possible impacts given a "beyond 4 degrees C world" in the twenty-first century (2011) Philosophical Transactions of the Royal Society of London. Series A. Mathematical, Physical and Engineering, 369, pp. 161-181
  • ETOPO1 Global Relief Model, , http://www.ngdc.noaa.gov/mgg/global/global.html
  • Pairaud, I., Gatti, J., Bensoussan, N., Verney, R., Garreau, P., Hydrology and circulation in a coastal area off Marseille: Balidation of a nested 3D model with observations (2011) Journal of Marine Systems, 88 (1), pp. 20-33
  • Palma, E.D., Matano, R.P., Piola, A.R., A numerical study of the southwestern Atlantic Shelf circulation: Barotropic response to tidal and wind forcing (2004) Journal of Geophysical Research, 109, p. C08014
  • Pelling, H.E., Green, J.A.M., Sea level rise, tidal power and resonance in the Gulf of Maine (2013) Journal of Geophysical Research, 118, pp. 2863-2873
  • Pelling, H.E., Green, J.A.M., Ward, S.L., Modelling tides and sea-level rise: To flood or not to flood (2013) Ocean Modelling, 63, pp. 21-29
  • Peltier, W.R., Global glacial isostasy and the surface of the ice-age earth: The ice-5G (VM2) model and GRACE (2004) Annual Review of Earth and Planetary Sciences, 32, pp. 111-149
  • Pfeffer, W.T., Harper, J.T., O'Neel, S., Kinematic constraints on glacier contributions to 21st century sea-level rise (2008) Science, 321, pp. 1340-1343
  • PHYSED (Laboratoire de la Physique Hydrodynamique et Sédimentaire), Team Description, , http://wwz.ifremer.fr/dyneco/Teams/PHYSED
  • Pickering, M.D., Wells, N.C., Horsburgh, K.J., Green, J.A.M., The impact of future sea-level rise on the European Shelf tides (2012) Continental Shelf Research, 35, pp. 1-15
  • Pond, S., Pickard, G.L., (1983) Introductory Dynamical Oceanography, 2nd Edition, 349p. , Oxford, England: Pergamon Press Ltd
  • Pous, S., (2005) Dynamique Océanique dans les Golfes Persique et d'Oman, 178p. , Brest Cedex, France: Université de Bretagne Occidentale, These de doctorat
  • Pugh, D., (1987) Tides, Surges and Mean Sea-Level, 472p. , Chichester, United Kingdom: Wiley
  • Rahmstorf, S., A semi-empirical approach to projecting future sea-level rise (2007) Science, 315, pp. 368-370
  • Ray, R.D., Secular changes of the M2 tide in the Gulf of Maine (2006) Continental Shelf Research, 26, pp. 422-427
  • Ray, R.D., Secular changes in the solar semidiurnal tide of the western North Atlantic Ocean (2009) Geophysical Research Letters, 36, p. L19601
  • Rivas, A.L., Pisoni, J.P., Identification, characteristics and seasonal evolution of surface thermal fronts in the Argentinean Continental Shelf (2010) Journal of Marine Systems, 79 (1-2), pp. 134-143
  • Rohling, E.J., Grant, K., Hemleben, C., Siddall, M., Hoogakker, B.A.A., Bolshaw, M., Kucera, M., High rates of sea-level rise during the last interglacial period (2008) Nature Geoscience, 1, pp. 39-42
  • Roos, P.C., Velema, J.J., Hulscher, S.J.M.H., Stolk, A., An idealized model of tidal dynamics in the North Sea: Resonance properties and response to large-scale changes (2011) Ocean Dynamics, 61 (12), pp. 2019-2035
  • Sabatini, M.E., Características ambientales, reproducción y alimentación de la merluza (Merluccius hubbsi) y la anchoíta (Engraulis anchoíta)ensuhábito reproductivo patagónico. Síntesis y perspectivas (2004) Revista de Investigación y Desarrollo Pesquero, Argentina, 16, pp. 5-25
  • Shaw, J., Amos, C.L., Greenberg, D.A., O'Reilly, C.T., Parrott, D.R., Patton, E., Catastrophic tidal expansion in the Bay of Fundy, Canada (2010) Canadian Journal of Earth Sciences, 47, pp. 1079-1091
  • Shennan, I., Lambeck, K., Flather, R., Horton, B., McArthur, J., Innes, J., Lloyd, J., Wingfield, R., (2000) Modelling Western North Sea Palaeogeographies and Tidal Changes during the Holocene, 166, pp. 299-319. , Geological Society, London Special Publications
  • Simionato, C.G., Dragani, W., Nuñez, M., Engel, M., A set of 3-D nested models for tidal propagation from the Argentinean Continental Shelf to the Río de La Plata Estuary, Part I M2 (2004) Journal of Coastal Research, 20 (3), pp. 893-912
  • Simionato, C.G., Moreira, D., Piedra-Cueva, I., Fossati, M., Re, M., Sabarots-Gerbet, M., Menendez, A., Cayocca, F., Proyecto FREPLATA-FFEM modelado numérico y mediciones in situ y remotas de las transferencias de sedimentos finos a través del Río de la Plata. Parte B: Simulaciones numéricas (2011) Frente Marítimo, 22, pp. 137-176
  • Simionato, C.G., Moreira, D., Re, M., Fossati, M., Estudio de la Dinámica Hidro-sedimentológica del Río de la Plata: Observación y Modelación Numérica de Los Sedimentos Finos (2011) Publicación Proyecto FREPLATA, CTMFM-CARP, 109p
  • Simpson, J.H., Hunter, J., Fronts in the Irish Sea (1974) Nature, 250, pp. 404-406
  • Sterl, A., Van Den Brink, H., De Vries, H., Haarsma, R., Van Meijgaard, E., An ensemble study of extreme storm surge related water levels in the North Sea in a changing climate (2009) Ocean Science, 5, pp. 369-378
  • Uehara, K., Scourse, J.D., Horsburgh, K.J., Lambeck, K., Purcell, A.P., Tidal evolution of the northwest European shelf seas from the Last Glacial Maximum to the present (2006) Journal of Geophysical Research C: Oceans, 111, p. C09025
  • Vellinga, P., Katsman, C.A., Sterl, A., Beersma, J.J., Church, J.A., Hazeleger, W., Kopp, R.E., Weisse, R., Exploring High-End Climate Change Scenarios for Flood Protection of the Netherlands (2009) Scientific Report WR, International Scientific Assessment Carried out at Request of the Delta Committee, 144p. , Alterra, the Netherlands: KNMI
  • Ward, S., Green, J.A.M., Pelling, H.E., Tides, sea-level rise and tidal power extraction on the European shelf (2012) Ocean Dynamics, 62, pp. 1153-1167
  • Warrick, R.A., Oerlemans, J., Sea level rise (1990) Climate Change. The Intergovernmental Panel on Climate Change First Assessment Report, pp. 261-281. , Houghton, J.T.; Jenkins, G.J., and Emphraums, J.J. (eds.) Cambridge, United Kingdom: Cambridge University Press
  • Webb, D.J., A model of continental-shelf resonances (1976) Deep Sea Research, 23, pp. 1-15
  • Willis, J.K., Roemmich, D., Cornuelle, B., Interannual variability in upper ocean heat content, temperature, and thermosteric expansion on global scales (2004) Journal of Geophysical Research C: Oceans, 109 (12), pp. 1-13
  • Woodworth, P.L., A survey of recent changes in the main components of the ocean tide (2010) Continental Shelf Research, 30, pp. 1680-1691
  • Woodworth, P.L., Shaw, S.M., Blackman, D.B., Secular trends in mean tidal range around the British Isles and along the adjacent European coastline (1991) Geophysical Journal International, 104, pp. 593-610

Citas:

---------- APA ----------
Luz Clara, M., Simionato, C.G., D'Onofrio, E. & Moreira, D. (2015) . Future Sea Level Rise and Changes on Tides in the Patagonian Continental Shelf. Journal of Coastal Research, 31(3), 519-535.
http://dx.doi.org/10.2112/JCOASTRES-D-13-00127.1
---------- CHICAGO ----------
Luz Clara, M., Simionato, C.G., D'Onofrio, E., Moreira, D. "Future Sea Level Rise and Changes on Tides in the Patagonian Continental Shelf" . Journal of Coastal Research 31, no. 3 (2015) : 519-535.
http://dx.doi.org/10.2112/JCOASTRES-D-13-00127.1
---------- MLA ----------
Luz Clara, M., Simionato, C.G., D'Onofrio, E., Moreira, D. "Future Sea Level Rise and Changes on Tides in the Patagonian Continental Shelf" . Journal of Coastal Research, vol. 31, no. 3, 2015, pp. 519-535.
http://dx.doi.org/10.2112/JCOASTRES-D-13-00127.1
---------- VANCOUVER ----------
Luz Clara, M., Simionato, C.G., D'Onofrio, E., Moreira, D. Future Sea Level Rise and Changes on Tides in the Patagonian Continental Shelf. J. Coast. Res. 2015;31(3):519-535.
http://dx.doi.org/10.2112/JCOASTRES-D-13-00127.1