Seismostratigraphic and structural setting of the Malvinas Basin and its southern margin (Tierra del fuego Atlantic offshore)

Authors

  • A. TASSONE CONICET-Instituto de Geofísica “Daniel A. Valencio” (INGEODAV). Departamento de GeologíaFacultad de Ciencias Exactas y Naturales. Universidad de Buenos AiresCiudad Universitaria. Pabellón 2. 1428 Ciudad Autónoma de Buenos Aires. Argentina.
  • E. LODOLO Istituto Nazionale di Oceanografia e Geofisica Sperimentale (OGS)Borgo Grotta Gigante 42/C. 34010 Sgonico. Trieste. Italy.
  • M. MENICHETTI Istituto di Scienze della Terra. Università di Urbino.Campus Scientifico Universitario. 61029 Urbino. Italy.
  • D. L. YAGUPSKY CONICET-Instituto de Geofísica “Daniel A. Valencio” (INGEODAV). Departamento de GeologíaFacultad de Ciencias Exactas y Naturales. Universidad de Buenos AiresCiudad Universitaria. Pabellón 2. 1428 Ciudad Autónoma de Buenos Aires. Argentina.
  • M. CAFFAU Istituto Nazionale di Oceanografia e Geofisica Sperimentale (OGS)Borgo Grotta Gigante 42/C. 34010 Sgonico. Trieste. Italy.
  • J. F. A. VILAS CONICET-Instituto de Geofísica “Daniel A. Valencio” (INGEODAV). Departamento de GeologíaFacultad de Ciencias Exactas y Naturales. Universidad de Buenos AiresCiudad Universitaria. Pabellón 2. 1428 Ciudad Autónoma de Buenos Aires. Argentina.

DOI:

https://doi.org/10.1344/105.000000241

Keywords:

Tierra del Fuego Atlantic margin, Malvinas basin, Magallanes fold-and-thrust belt, Tectonic evolution, Seismostratigraphy, Multichannel seismic data

Abstract

New multichannel seismic reflection profiles acquired off the Tierra del Fuego Atlantic margin, from the southern part of the Malvinas foreland basin to the inner sector of the Magallanes fold and thrust belt, combined with available commercial profiles and exploration wells, allowed to outline the sedimentary architecture of the foreland basin and the structure of its deformed southern margin. Five major unconformities were differentiated within the sedimentary fill of the southern Malvinas basin, which neighbours the offshore extension of the Magallanes basin in Tierra del Fuego. The unconformity-bounded units record the corresponding major evolutionary tectonostratigraphic phases of the southern part of the Malvinas basin, and the development of the Magallanes fold-and thrust belt during Mesozoic and Cenozoic times: Unit 1 - Pre-Jurassic basement; Unit 2 - Rift phase (Middle - Upper Jurassic); Unit 3 - Sag phase (Lower – Upper Cretaceous); Unit 4 – Foredeep transitional phase (Upper Cretaceous - Middle Eocene); Unit 5 - Foreland phase (Middle Eocene - Pleistocene). The southern edge of the Malvinas basin corresponds to the imbricate basement wedges of the Fuegian Cordillera, which shows a thick-skin structural style developed as a consequence of the Middle Tertiary Andean compressional tectonic phase. Large folds, with low angle NE-verging thrusts propagated the shortening basin-ward at shallow structural levels. These structures are superimposed by an array of left-lateral strike-slip lineaments pertaining to the EW trending Magallanes-Fagnano fault system. In the Tierra del Fuego region these structures represent the western segment of the South America – Scotia plate boundary. Several Neogene pull-apart basins were formed along the principal deformation zone in correspondence of step-overs and releasing bends. These basins show an evident asymmetry in the sedimentary architecture, and are bounded by sub-vertical faults that in some cases reach the sea-floor. Other transtensional features were also recognized in the inner sector of the fold-and-thrust belt together with the formation of restricted pull-apart basins.

References

Álvarez-Marrón, J., McClay, K.R., Harambour, S., Rojas, L., Skarmeta, J., 1993. Geometry and evolution of the frontal part of the Magallanes foreland thrust and fold belt (Vicuña area), Tierra del Fuego, southern Chile. American Association of Petroleum Geologist Bulletin, 11, 1904-1921.

Biddle, K.T., Uliana, M.A., Mitchum Jr., R.M., Fitzgerald, M.G., Whrigt, R.C., 1986. The stratigraphy and structural evolution of the central and eastern Magallanes Basin, southern South America. International Association of Sedimentologists Special Publication, 8, 41-61.

Calderón, M., Hervé, F, Fanning, C.M., 2004. Late Jurassic birth of the Rocas Verdes Basin at the Sarmiento Ophiolitic Complex: evidence from zircon U-Pb SHRIMP geochronology. Bolletino di Geofisica, 45, 15-18

Caminos, R., 1980. Cordillera Fueguina. In: Turner, J.C. (ed.). Simposio de Geología Regional Argentina, Córdoba, 2, 1463-1501.

Caminos, R., Haller, M., Lapido, J., Lizuain, O., Page, A., Ramos, V., 1981. Reconocimiento geológico de los Andes Fueguinos. Territorio Nacional de Tierra del Fuego. VIII Congreso Geológico Argentino, San Luis, Argentina, Actas, 3, 759-786.

Cunningham, W.D., 1993. Strike-slip faults in the southernmost Andes and the development of the Patagonian orocline. Tectonics, 12, 169-186.

Cunningham, W.D., 1995. Orogenesis at the southern tip of the Americas: the structural evolution of the Cordillera Darwin metamorphic complex, southernmost Chile. Tectonophysics, 244, 197-229.

Dalziel, I.W.D., 1981. Back-arc extension in the southern Andes: A review and critical reappraisal. Philosophycal Transactions of the Royal Society, A-300, 319-335.

Dalziel, I.W.D., De Wit, M.J., Palmer, K.F., 1974. Fossil marginal basin in the southern Andes. Nature, 250, 291-294.

Diraison, M., Cobbold, P.R., Gapais, D., Rossello, E.A., Le Corre, C., 2000. Cenozoic crustal tickening, wrenching and rifting in the foothills of the southernmost Andes. Tectonophysics, 316, 91-119.

Forsythe, R.D., 1982. The Late Paleozoic to Early Mesozoic evolution of southern South America: a plate tectonic interpretation. Journal of the Geological Society of London, 139, 671-682.

Galeazzi, J.S., 1994. Stratigraphic and structural evolution of the Western Malvinas and Southeastern Magallanes Basins. M.S. Thesis. Rice University, Houston, 149 pp.

Galeazzi, J.S., 1998. Structural and stratigraphic evolution of the Western Malvinas Basins. American Association of Petreleum Geologist Bulletin, 82(4), 596-636.

Geletti, R., 2001. Elaborazione delle linee sismiche multicanale acquisite nella campagna TESAC. Istituto Nazionale di Oceanografia e di Geofisica Sperimentale (OGS) Open-File Report 9OGS/11GDL, 43 pp.

Geletti, R., Lodolo, E., Schreider, A., Polonia, A., 2005. Seismic structure and tectonics of the Shackleton Fracture Zone (Drake Passage, Scotia Sea). Marine Geophysical Researches, 26, 17-28, doi:10.1007/s11001-005-0147-4.

Ghiglione, M.C., Ramos, V., 2005. Progression of deformation and sedimentation in the southernmost Andes. Tectonophysics, 405, 25-46.

Ghiglione, M.C., Ramos, V.A., Cristallini, E.O., 2002. Estructura y estratos de crecimiento en la faja plegada y corrida de los Andes Fueguinos. Revista Geológica de Chile, 29(1), 3-27.

Klepeis, K.A., 1994a. Relationship between uplift of the metamorphic core of the southernmost Andes and shortening in the Magallanes foreland fold and thrust belt, Tierra del Fuego. Tectonics, 13, 882-904.

Klepeis, K.A., 1994b. The Magallanes and Deseado fault zones: major segments of the South American-Scotia transform plate boundary in southernmost South America, Tierra del Fuego. Journal of Geophysical Research, doi: 99,22.001-22.014.

Lodolo, E., Donda, F., Tassone, A., 2006. Western Scotia Sea margins: Improved constraints on the opening of the Drake Passage, Journal of Geophysical Research, 111, B06101, doi: 10.1029/2006JB004361.

Lodolo, E., Menichetti, M., Tassone, A., Geletti, R., Sterzai, P., Lippai, H., Hormaechea, J.-L., 2002a. Researchers Target a continental transform Fault in Tierra del Fuego. EOS Transactions AGU, 83(1), 1-6.

Lodolo E., Menichetti, M., Tassone, A. Sterzai, P., 2002b. Morphostructure of the central-eastern Tierra del Fuego Island from geological data and remote-sensing images. European Geophysical Society, Stephan Mueller Special Pub. Series, 2, 1-16.

Lodolo, E., Menichetti, M., Bartole, R., Ben-Avraham, Z., Tassone, A., Lippai, H., 2003. Magallanes-Fagnano continental transform fault (Tierra del Fuego, Southernmost South America). Tectonics, 22(6), p. 1076, doi: 10.1029/2003TC0901500.

Menichetti M., Lodolo, E., Tassone A., 2008. Structural geology of the Fuegian Andes and Magallanes fold-and-thrust belt – Tierra del Fuego Island. Geologica Acta, 6(1), 19-42.

Menichetti, M., Acevedo, R.D., Bujalesky, G.G., Cenni, M., Cerredo, M.E., Coronato, A., Hormachea, J.L., Lippai, H., Lodolo, E., Olivero, E.B., Rabassa, J., Tassone, A., 2004. Field Trip guide of the Tierra del Fuego. Geosur 2004, Buenos Aires-Ushuaia, 39 pp.

Mitchum Jr., R.M., Van Wagoner, J.C., 1991. High-frequency sequences and their stacking patterns: sequence stratigraphic evidence of high-frequency eustatic cycles. Sedimentary Geology, 70, 131-160.

Mukasa S.B., Dalziel, I.W.D., 1996. Southernmost Andes and South Georgia Island, North Scotia Ridge: zircon U-Pb and muscovite TMAr/39Ar age constraints on tectonic evolution of southwestern Gondwanaland. Journal of South American Earth Sciences, 9, 349-365.

Olivero, E.B., Malumián, N., 1999. Eocene stratigraphy of southeastern Tierra del Fuego Island, Argentina, American Association of Petroleum geologist Bulletin, 83, 295-313.

Olivero, E.B., Malumián, N., 2008. Mesozoic-Cenozoic stratigraphy of the Fuegian Andes, Argentina. Geologica Acta, 6(1), 5-18.

Olivero, E.B., Medina, F.A. 2001. Geología y paleontología del Cretácico marino en el sureste de los Andes Fueguinos, Argentina. Revista de la Asociación Geológica Argentina, 56(3), 344-352.

Pankhurst, R.J., Riley, T.R., Fanning, C.M., Kelley, S.P., 2000. Episodic silicic volcanism in Patagonia and the Antarctic Peninsula: chronology of magmatism associated with the break-up of Gondwana. Journal of Petrology, 41, 605-625.

Ramos, V.A., 1996. Evolución Tectónica de la Plataforma Continental. In: Ramos, V.A., Turic, M.A. (eds.). Geología y recursos naturales de la plataforma continental argentina. 13 Congreso Geológico Argentino and 3 Congreso de Exploración de Hidrocarburos, Buenos Aires, Relatorio, 385-404.

Robbiano, J.A., Arbe, H., Gangui, A., 1996. Cuenca Austral Marina. In: Ramos, V.A., Turic, M.A. (eds.). Geología y recursos naturales de la plataforma continental argentina. 13 Congreso Geológico Argentino and 3 Congreso de Exploración de Hidrocarburos, Buenos Aires, Relatorio, 323-342.

Rosello, E.A., Haring, C.E., Cardinali, G., Suáres, F., Laffitte, G.A., Nevistic, A.V., 2008. Hydrocarbons and petroleum geology of Tierra del Fuego, Argentina. Geologica Acta, 6(1), 69-83.

Sangree, J.B., Widmier, J.M., 1977. Seismic stratigraphy and global changes of sea level. Part 9: Seismic interpretation of clastic depositional facies. In: Payton, C.E. (ed.). Seismic stratigraphy. American Association of Petroleum Geologists Memoir, 26, 165-184.

Tassone, A., Cominguez, A.H., Lodolo, E., 2003. Depth seismic-migration modeling, Northern ‘Isla de los Estados’, Argentina (54° 25´ S). 10° Congreso Geológico Chileno, Concepción. Chile, CD-rom, 8 pp.

Tassone, A., Lodolo, E., Lippai, H., Cominguez, A., Foster, M., Geletti R., Menichetti, M., 2001. Seismic study of the Magallanes fold-and-thrust belt, southern Argentinean continental margin: Preliminary results. XV Congreso Latinoamericano de Geología. Simposio sobre evolución geológica de los Andes. Montevideo, Uruguay, In CD and Abstract, p. 8.

Tassone, A., Lippai, H., Lodolo, E., Menichetti, M., Comba, A., Hormaechea, J.L., Vilas, J.F., 2005. A geological and geophysical crustal section across the Magallanes-Fagnano fault in Tierra del Fuego. Journal of South American Earth Sciences, 19, 99-109.

Urien, C.M., Zambrano, J.J., 1996. Estructura de la Plataforma continental. In: Ramos, V.A., Turic, M.A. (eds.). Geología y recursos naturales de la plataforma continental argentina. 13 Congreso Geológico Argentino and 3 Congreso de Exploración de Hidrocarburos, Buenos Aires, Relatorio, 29-66.

Vail, P.R., Audemard, F., Bowman, S.A., Eisner, P.N., PérezCruz, G., 1991. The stratigraphic signatures of tectonics, eustasy and sedimentation-An overview. In: Einsele, G., Ricken, W., Seilacher, A. (eds.). Cycles and Events in Stratigraphy. Berlin, Springer-Verlag, 617-659.

Vaughan, A. P.M., Storey, B.C., 2000. The eastern Palmer Land shear zone: a new terrane accretion model for the Mesozoic development of the Antartic Peninsula. Journal of the Geological Society, London, 157, 1243-1256.

Wilson T.J., 1991. Transition from back-arc to foreland basin development in the southernmost Andes: Stratigraphic record from the Última Esperanza District, Chile. Geological Society of America Bulletin, 103, 98-111.

Winslow, M.A., 1982. The structural evolution of the Magallanes Basin and neotectonics in the southernmost Andes. In: Craddock, C. (ed.). Antarctic Geoscience Madison. University of Winsconsin Press, 143-154.

Yagupsky, D., 2004. Estudio sismoestratigráfico y estructural del sector meridional de las cuencas de Magallanes y Malvinas. Graduate thesis. University of Buenos Aires, 111 pp.

Yagupsky, D., Tassone, A., Lodolo, E., Vilas, J.F., Lippai, H., 2003. Estudio sismoestratigráfico del sector sudoccidental de la cuenca de antepaís de Malvinas. Margen continental atlántico. Argentina. 10° Congreso Geológico Chileno, Concepción, Chile, CD-rom, 10 pp

Yagupsky, D., Tassone, A., Lodolo, E., Menichetti, M, Vilas, J.F., 2004. Seismic Imaging of the Magallanes-Fagnano Fault System. SW Atlantic Ocean. Bollettino di Geofísica teorica ed applicata. Vol. 45. Nro. 2 suplement. GeoSur 2004, 47-49.

Yrigoyen, M.R., 1989. Cuenca de Malvinas. In: Chebli, G., Spalletti, L. (eds). Cuencas Sedimentarias Argentinas. Universidad Nacional de Tucumán, Serie Correlación Geológica 6, 481-491.

Zambrano, J.J., Urien, C.M., 1970. Geological outlines of the basins in southern Argentina and their offshore extension. Journal of Geophysical Research, 75, 1363-1396.

Downloads

Published

2008-03-26

Similar Articles

1 2 > >> 

You may also start an advanced similarity search for this article.