Study of Atrato river plume in a tropical estuary: Effects of the wind and tidal regime on the Gulf of Uraba, Colombia [Estudio de la pluma del río Atrato en un estuario en el trópico: Efectos del viento y del régimen de mareas en el Golfo de Urabá, Colombia]

dc.contributor.affiliationMontoya, L.J., School of Engineering, Universidad de Medellin, Medellin, Colombiaspa
dc.contributor.affiliationGeosciences and Environmental Department, Facultad de Minas, Universidad Nacional de Colombia, Medellin, Colombiaspa
dc.contributor.affiliationGomez-Giraldo, A., Geosciences and Environmental Department, School of Mines, Universidad Nacional de Colombia, Medellin, Colombiaspa
dc.contributor.authorMontoya L.J.
dc.contributor.authorToro-Botero F.M.
dc.contributor.authorGomez-Giraldo A.
dc.date.accessioned2017-12-19T19:36:48Z
dc.date.available2017-12-19T19:36:48Z
dc.date.issued2017
dc.description.abstractThis study focuses on the relative importance of the forcing agents of Atrato River plume as it propagates in a tropical estuary located in the Gulf of Uraba in the Colombian Caribbean Sea. Six campaigns of intensive field data collection were carried out from 2004 to 2007 to identify the main features of the plume and to calibrate and validate a numerical model. Field data and numerical models revealed high spatial and temporal plume variability according to the magnitudes of river discharges, tidal cycles, and wind stress. Atrato River discharge spreads over a considerable portion of the gulf, but only occupies the top 2 m of the surface layer. The tide modifies the position of the plume by inducing a horizontal migration of the salinity front during the day. Two principal modes of circulation in the gulf were identified under different wind conditions. © The author; licensee Universidad Nacional de Colombia.eng
dc.identifier.doi10.15446/dyna.v84n200.55040
dc.identifier.instnameinstname:Universidad de Medellínspa
dc.identifier.issn127353
dc.identifier.reponamereponame:Repositorio Institucional Universidad de Medellínspa
dc.identifier.urihttp://hdl.handle.net/11407/4324
dc.language.isoeng
dc.publisherUniversidad Nacional de Colombiaspa
dc.publisher.facultyFacultad de Ingenieríasspa
dc.relation.ispartofDYNA (Colombia)spa
dc.relation.isversionofhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85021800652&doi=10.15446%2fdyna.v84n200.55040&partnerID=40&md5=24ab53e225ad729ebeda7df10748e0c4
dc.relation.referencesBowman, M.J., Estuarine fronts, in hydrodynamics of estuaries (1988) Volume I: Estuarine Physics, pp. 86-131. , Boca Raton, FLA: CRC pressspa
dc.relation.referencesSimionato, C.G., Dragani, W., Meccia, V., Nuñez, M., A numerical study of the barotropic circulation of the Río de la Plata estuary: Sensitivity to bathymetry, the Earth’s rotation and low frequency wind variability. Estuarine (2004) Coastal and Shelf Science, 61, pp. 261-273spa
dc.relation.referencesChao, S.Y., Wind-driven motion of estuarine plumes (1988) Journal of Physical Oceanography, 18, pp. 1144-1166spa
dc.relation.referencesFong, D.A., Geyer, W.R., Response of a river plume during a upwelling favourable wind event (2001) Journal of Geophysical Research, 106, pp. 1067-1084spa
dc.relation.referencesGarcia-Berdeal, I., Hickey, B., Kawase, M., Influence of wind stress and ambient flow on a high discharge River Plume (2002) Journal of Geophysical Research – Oceans, 107 (C9), pp. 1-13spa
dc.relation.referencesSpillman, C.M., Imberger, J., Hamilton, D.P., Hipsey, M.R., Romero, J.R., Modelling the effects of Po River discharge, internal nutrient cycling and hydrodynamics on biogeochemistry of the Northern Adriatic Sea (2007) Journal of Marine Systems, 68, pp. 167-200spa
dc.relation.referencesSimpson, J.H., Physical processes in the ROFI regime (1997) Journal of Marine Systems, 12, pp. 3-15spa
dc.relation.referencesFujiwara, T., Sanford, L.P., Nakatsuji, K., Sugiyama, Y., Anti-cyclonic circulation driven by the estuarine circulation in a gulf type ROFI (1997) Journal of Marine System, 12, pp. 83-99spa
dc.relation.referencesJames, I.D., A numerical model of the development of anticyclonic circulation in a gulf-type region of freshwater influence (1997) Continental Shelf Research, 17 (14), pp. 1803-1816spa
dc.relation.referencesHetland, R.D., Relating river plume structure to vertical mixing (2005) Journal of Physical Oceanography, 35 (9), pp. 1667-1688spa
dc.relation.referencesRong, Z., Hetland, R.D., Zhang, W., Zhang, X., Current-wave interaction in the Mississippi-Atchafalaya river plume on the Texas-Louisiana shelf (2014) Ocean Modelling, 84, pp. 67-83spa
dc.relation.referencesWiseman, W., Garvine, R., Plumes and coastal currents near large river mouths (1995) Estuaries, 16 (3), pp. 509-517spa
dc.relation.referencesGarvine, R., A dynamical system for classifying buoyant coastal discharges (1995) Continental Shelf Research, 15, pp. 1585-1596spa
dc.relation.referencesEstournel, C., Broche, P., Marsaleix, P., Devenon, J.L., Auclair, F., Vehil, R., The Rhone River plume in unsteady conditions: Numerical and experimental results. Estuarine (2001) Coastal and Shelf Science, 53, pp. 25-38spa
dc.relation.referencesTilburg, C.E., Garvine, R.W., Three-dimensional flow in a Shallow Coastal upwelling zone: Alongshore convergence and divergence on the New Jersey shelf (2003) Journal of Physical Oceanography, 33, pp. 2113-2125spa
dc.relation.referencesWhitney, M., Garvine, R., Simulationg the Delaware Bay Bouyant outflow: Comparison with observations (2006) Journal of Physical Oceanography, 36, pp. 3-21spa
dc.relation.referencesBaptista, A., Zhang, Y., Chawla, A., Zulauf, M., Seaton, C., Edward, P., Myers, E.P., Turner, P., A cross-scale model for 3D baroclinic circulation in estuary–plume–shelf systems: II. Application to the Columbia River (2005) Continental Shelf Research, 25, pp. 935-972spa
dc.relation.referencesFarcieri, F.M., Benetazzo, A., Sclavo, M., Russo, A., Carniel, S., Po River plume pattern variability investigated from model data (2014) Continental Shelf Research, 87, pp. 84-95spa
dc.relation.referencesNikiema, O., Devenon, J.-L., Baklouti, M., Numerical modeling of the Amazon River plume (2007) Continental Shelf Research, 27, pp. 873-899spa
dc.relation.referencesChevillot, P., Molina, A., Giraldo, L., Molina, C., Estudio geológico e hidrológico del golfo de Urabá (1993) Boletín Científico CIOH, 14, pp. 79-89spa
dc.relation.referencesBernal, G., Montoya, L.J., Garizabal, C., Toro, M., La complejidad de la dimensión física en la problemática costera del Golfo de Urabá, Colombia (2005) Gestión Y Ambiente, 8, pp. 123-135spa
dc.relation.referencesLonin, S., Vásquez, J., Hidrodinámica y distribución de coliformes en el Golfo de Urabá (2005) Boletín Científico CIOH, 23, pp. 76-89spa
dc.relation.referencesMontoya, L.J., Toro, M., Calibración de un modelo hidrodinámico para el estudio de los patrones de circulación en el Golfo de Urabá, Colombia (2006) Avances En Recursos Hidráulicos, 13, pp. 37-54spa
dc.relation.referencesEscobar, C.A., Velásquez, L., Posada, F., Marine currents in the Gulf of Urabá. Colombian Caribbean sea (2015) Journal of Coastal Research, 6, pp. 1363-1374spa
dc.relation.referencesCorrea, I.D., Vernette, G., Introducción al problema de la erosión litoral en Urabá (Sector Arboletes-Turbo) Costa Caribe Colombiana (2004) Boletín Investigaciones Marinas Y Costeras, 33, pp. 7-28spa
dc.relation.referencesHodges, B., Imberger, J., Saggio, A., Winters, K.B., Modeling basin-scale internal waves in strafied lake (2000) Limnology and Oceangraphy, 45 (7), pp. 1603-1620spa
dc.relation.referencesCasulli, V., Cheng, R.T., Semi-implicit finite difference methods for three-dimensional shallow water flow (1992) International Journal for Numerical Methods in Fluids, 15, pp. 629-648spa
dc.relation.referencesLeonard, B.P., The ULTIMATE conservative difference scheme applied to unsteady one-dimensional advection (1991) Computer Methods in Applied Mechanics and Engineering, 88, pp. 17-74spa
dc.relation.referencesKalnay, E., Kanamitsu, M., Kistler, R., Collins, W., Deaven, D., Gandin, L., Iredell, M., Dennis, J.R.J., The NCEP/NCAR 40-Year Reanalysis Project (1996) Ulletin of the American Meteorological Society, 77 (3), pp. 437-471spa
dc.relation.referencesPoveda, G., Mesa, O.J., Velez, J.I., Mantilla, R., Ramirez, J.M., Hernández, O.O., Borja, A.F., Urzola, J.A., HidroSIG: An interactive digital atlas of Colombia’s hydro-climatology (2007) Journal of Hydroinformatics, 9, pp. 145-156spa
dc.relation.referencesUlses, C., Grenz, C., Marsaleix, P., Schaaff, E., Estournel, C., Meule, S., Pinazo, C., Circulation in a semi-enclosed bay under influence of strong freshwater input (2005) Journal of Marine Systems, 56, pp. 113-132spa
dc.relation.referencesSierra, J.P., Sanchez-Arcilla, A., Del Rio, J.G., Flos, J., Movellan, E., Mosso, C., Martinez, R., Romero, I., Spatial distribution of nutrients in the Ebro estuary and plume (2002) Continental Shelf Research, 22, pp. 361-378spa
dc.relation.referencesYankovsky, A.E., Chapman, D.C., A simple theory for the fate of bouyant coastal discharge (1997) Journal of Physical Oceanography, 27, pp. 1386-1401spa
dc.relation.referencesLentz, S.J., Largier, J., The influence of wind forcing on the Chesapeake Bay buoyant Coastal Current (2006) Journal of Physical Oceanography, 36, pp. 1305-1316spa
dc.rights.accessrightsinfo:eu-repo/semantics/restrictedAccess
dc.sourceScopusspa
dc.subject.proposalELCOM modeleng
dc.subject.proposalFreshwater river plumeeng
dc.subject.proposalGulf of Urabaeng
dc.subject.proposalHydrodynamicseng
dc.subject.proposalTropical estuarieseng
dc.titleStudy of Atrato river plume in a tropical estuary: Effects of the wind and tidal regime on the Gulf of Uraba, Colombia [Estudio de la pluma del río Atrato en un estuario en el trópico: Efectos del viento y del régimen de mareas en el Golfo de Urabá, Colombia]spa
dc.typeArticle
dc.type.driverinfo:eu-repo/semantics/article
dc.type.versioninfo:eu-repo/semantics/publishedVersion

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