Artículo

Estamos trabajando para incorporar este artículo al repositorio
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

Horizontal stress directions have been determined in the southernmost flat-slab boundary Andean retroarc between 32°44' and 33°40'S within Cuyo Basin, Argentina. These directions were obtained from the borehole breakout analysis of 42 wells using four-arm caliper data. The mean maximum horizontal stress (SHmax) direction for the whole region is 104.1° with a 95% confidence interval of 8.1°. The present-day stress field has an approximately preferred E-W trend maximum horizontal stress direction, consistent with the plate boundary forces (80°) and the topographic forces (near E-W). The calculated SHmax directions are near the expected values, but some local deviations were observed. The SHmax rotates from an E-W orientation in the south to a NW-SE orientation to the north of this sector of the Andean retroarc. A regional variation in the stress field can be observed when these results for the Cuyo Basin are analyzed together with those presented in a previous study in the Neuquen Basin to the south. The maximum horizontal stress varies from ̃NW-NE along this combined section of the Andean retroarc, with the ̃E-W SHmax directions in the northern Neuquen Basin consistent with those observed in the southern sector of Cuyo Basin. These variations in the stress field orientation appear related with the topography geometry. From the analysis between the mean SHmax obtained and the acting forces, it can be concluded that the topographic control on the horizontal stress field seems to be dominant in the Cuyo Basin and in the north of Neuquen Basin. To the south of Neuquen Basin the horizontal stress field should be mainly controlled by the plate boundary forces. © 2009 by the American Geophysical Union.

Registro:

Documento: Artículo
Título:Contemporary stress orientations from borehole breakout analysis in the southernmost flat-slab boundary Andean retroarc (32°44' and 33°40'S)
Autor:Guzmán, C.G.; Cristallini, E.O.
Filiación:Laboratorio de Modelado Geológico, Departamento de Ciencias Geológicas, Universidad de Buenos Aires, Pabellón II, Ciudad Universitaria, Buenos Aires C1428EHA, Argentina
Consejo Nacional de Investigaciones Cientificas y Técnicas, Buenos Aires, Argentina
Palabras clave:borehole breakout; data interpretation; plate boundary; stress field; stress measurement; Argentina; Cuyo Basin; Neuquen Basin; South America
Año:2009
Volumen:114
Número:2
DOI: http://dx.doi.org/10.1029/2007JB005505
Título revista:Journal of Geophysical Research: Solid Earth
Título revista abreviado:J. Geophys. Res. B Solid Earth
ISSN:21699313
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_21699313_v114_n2_p_Guzman

Referencias:

  • Alvarado, P., Beck, S., Zandt, G., Araujo, M., Triep, E., Crustal deformation in the south-central Andes backarc terranes as viewed from regional broad-band seismic waveform modeling (2005) Geophys. J. Int, 163 (2), pp. 580-598. , doi:10.1111/J.1365-246X.2005.02759.X
  • Angermann, D., Klotz, J., Reigber, C., Space-geodetic estimation of the Nazca-South America Euler vector (1999) Earth Planet. Sci. Lett, 171, pp. 329-334
  • Assumpcao, M., The regional intraplate stress field in South America (1992), 11,889-11.903; Bevis, M., Isacks, B., Hypocentral trend surface analysis: Probing the geometry of Benioff zones (1984) J. Geophys. Res, 89, pp. 6153-6170
  • Borgnia, M., (2004) Neotectonica del piedemonte oriental del cordon del Plata al norte del rio Blanco, provincia de Mendoza, Trabajo Final de Licenciatura, , 143 pp, Departamento de Geologia, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, trabajo inedito, Buenos Aires, Argentina
  • Brooks, B.A., Bevis, M., Smalley Jr., R., Kendrick, E., Manceda, R., Lauria, E., Maturana, R., Araujo, M., Crustal motion in the Southern Andes (26° 36°S): Do the Andes behave like a microplate? (2003) Geochem. Geophys. Geosysl, 4 (10), p. 1085. , doi:10.1029/2003GC000505
  • Cahill, T., Isacks, B.L., Seismicity and shape of the subducted Nazca plate (1992) J. Geophys. Res, 97, pp. 17,503-17,529
  • Casa, A.L., Geologia y neotectónica del piedemonte oriental del cordón del Plata en los alrededores de El Salto, provincia de Mendoza (2005) Trabajo Final de Licenciatura, , 174 pp. Departamento de Geologia, Facultad de Ciencias Exactas y Naturales. Universidad de Buenos Aires, trabajo inedito, Buenos Aires, Argentina
  • Coblentz, D.D., Richardson, R.M., Analysis of the South American intraplate stress field (1996) J. Geophys. Res, 101, pp. 8643-8657
  • Colmenares, L., Zoback, M.D., Stress field and seismotectonics of northern South America (2003) Geology, 31 (8), pp. 721-724
  • Cortés, J. M., P. Vinciguerra, M. Yamin, and M. M. Pasini (1999), Tectónica Cuaternaria de la Region Andina del Nuevo Cuyo (28°-38° LS). in Geologia Argentina. Subsecretaria de Mineria de la Nación, edited by R. Caminos, Sen. Geol. Min. Argent. An., 29(24), 760-778, Geologia y Recursos Minerales, SEGEMAR; Cortés, J.M., Fauqué, L., Yamin, M., Folguera, A., Etcheverria, M., Pisan, M., Geometric patterns of Quaternary structure in western Precordillera and cordon del Plata (30°30'-33°30'SL) (2000) Flat-Slab Subduction in Present and Ancient Orogens, IGCP 453 "Modern and Ancient Orogens ", Transcuyo Working Group - ICL C.C.4. Joint Meeting (Mendoza), pp. 8-9. , Program with Abstracts, pp, Mendoza, Argentina
  • Cortés, J.M., Casa, A., Pasini, M.M., Yamín, M., Fajas de estructuras neotectónicas asociadas a rasgos paleotectónicos en Precordillera sur y Cordillera (31°3O'-33°3O' LS) (2005) XVI Congreso Geológico Argentino, Asoc. Geol. Arg, , paper presented at, La Plata, Argentina, 20-23 Sept
  • Dalmayarc, B., Molnar, P., Parallel thrust and normal faulting in Peru and constraints on the state of stress (1981) Earth Planet. Sci. Lett, 55, pp. 473-481
  • García, V., (2004) Análisis estructural y geotectónico de las Lomas Jaboncillo y del Peral, departamento de Tupungato, provincia de Mendoza, Trabajo Final de Licenciatura, , 100 pp, Departamento de Geologia, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, trabajo inedito, Buenos Aires, Argentina
  • García, V., Cristallini, E., Cortés, J., Rodriguez, M.C., (2004) Estructura y Neotectónica de los anticlinales Jaboncillo y del Peral, Departamento de Tupungato, provincia de Mendoza, paper presented at XXII Reunion de Microtectonica y Geologia Estructural, Cafayate, , Salta, 6-9 Oct
  • Gutscher, M.A., Spakman, W., Bijwaard, H., Engdahl, E.R., Geodynamics of flat subduction: Seismicity and tomographic constraints from the Andean margin (2000) Tectonics, 19, pp. 814-833
  • Guzmán, C., (2007) Estudio de la deformation andina entre los 32° y los 39° latitud sur mediante el analisis de breakout de pozos, , Tesis doctoral, 241 pp, Departamento de Geologia, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, trabajo inedito, Buenos Aires, Argentina
  • Guzmán, C., Cristallini, E., Bottesi, G., Contemporary stress orientations in the Andean retroarc between 34°S and 39°S from borehole breakout analysis (2007) Tectonics, 26, pp. TC3016. , doi:10.1029/ 2006TC001958
  • Microzonación Sísmica del Valle de Tulum-Provincia de San Juan (1982) Inf. Téc. Gen, 1 (3). , INPRES , 120 pp
  • Microzonificación Sísmica del Gran Mendoza (1995) Resumen Ejecutivo, , INPRES , 283 pp, Publicatión Técnica, San Juan, Argentina
  • Isacks, B.L., Jordan, T.E., Allmendinger, R.W., Ramos, V.A., La segmentation tectonica de los Andes Centrales y su relatión con la geometria de la placa de Nazca subductada (1982) V° Congreso Latinoamericano de Geológia, , paper presented at, Argentina. Servicio Geologico Nacional, 17-22 Oct
  • Jordan, T., Isacks, B., Allmendigner, R., Brewer, J., Ramos, V., Ando, C., Andean tectonics related to geometry of the subducted Nazca plate (1983) Geol. Soc. Am. Bull, 94, pp. 341-361
  • Kadinsky-Cade, K., Reilinger, R., Isacks, B., Surface deformations associated with the November 23, 1977. Caucete, Argentina, earthquake sequence (1985), 12,691-12.700; Kay, S.M., Abbruzzi, J.M., Magmatic evidence for Neogene lithospheric evolution of the Central Andean "flat-slab" between 30° and 32°S (1996) Tectonophysics, 259, pp. 15-28
  • Kendrick, E., Becis, M., Smalley Jr., R., Brooks, B., Vargas, R.B., Lauria, E., Souto Fortes, L.P., The Nazca-South America Euler vector and its rate of change (2003) J. South Am. Earth Sci, 16, pp. 125-131
  • Kendrick, E., Brooks, B.A., Bevis, M., Smalley Jr., R., Lauria, E., Araujo, M., Parra, H., Avtive orogeny of the South-Central Andes studied with GPS geodesy (2006) Rev. Asoc. Geol. Argent, 61 (4), pp. 555-566
  • Kozlowski, E.E., Manceda, R., Ramos, V., Estructura (1993) Geología y Recursos Naturales de Mendoza, 1 (18), pp. 235-256. , edited by V. Ramos, Relatorio, Asoc. Geol. Arg, Buenos Aires, Argentina
  • Legarreta, L., Kokogian, D.A., Dellape, D.A., Estructuracion terciaria de la Cuenca Cuyana: Cuańto de inversion tectonica? (1992) Rev. Asoc. Geol. Argent, 47 (1), pp. 83-86
  • Lima, C., Nascimiento, E., Assumpcao, M., Stress orientations in Brazilian sedimentary basins from breakout análisis: Implications for force models in the South American plate (1997) Geophys. J. Int, 130, pp. 112-124
  • Mardia, K.V., (1972) Statistics of Directional Data: Probability and Mathematical Statistics, , 357 pp, Elsevier, New York
  • Meijer, P.T., Govers, R., Wortel, M.J.R., Forces controlling the present-day state of stress in the Andes (1997) Earth Planet Sci Lett, 148, pp. 157-170
  • Miranda, S., Robles, J.A., Posibilidades de atenuación cortical en la cuenca Cuyana a partir del análisis de datos de gravedad (2002) Rev. Asoc Geol. Argent, 57 (3), pp. 271-279
  • Mpodozis, C, and V. A. Ramos (1989), The Andes of Chile and Argentina, in Geology of the Andes and Its Relation to Hydrocarbon and Mineral Resources, Circum-Pacific Council for Energy and Mineral Resources, edited by G. E. Ericksen, M. T. Canas Pinochet, and J. A. Reinemund, Earth Sci. Sen, 11, 59-90; (2008) USGS, global seismic database on earthquake, , http://neic.usgs.gov/neis/epic/epic-rect.html, National Earthquake Information Center NEIC, Available at
  • Norabuena, E., Dixon, T., Stein, S., Harrison, C.G.A., Decelerating Nazca-South America and Nazca-Paciftc motions (1999) Geophys Res Lett, 26, pp. 3405-3408
  • Pilger, R.H., Plate reconstructions, aseismic ridges, and low angle subduction beneath the Andes (1981) Geol. Soc. Am. Bull, 92, pp. 448-456
  • Ramos, V. A. (1985), The tectonics of the Central Andes (3O°-33°S), paper presented at Symposium on Processes in Continental Lithospheric Deformation, Abstracts, Yale Univ., New Haven, 21-22 Feb; Ramos, V. A. (1988), The tectonics of the Central Andes: 30° to 33°S latitude, in Processes in Continental Lithospheric Deformation, edited by S. Clark and D. Burchfiel, Geol. Soc. Am. Spec. Pap., 218, 31-54; Ramos, V.A., Cegarra, M., Cristallini, E.O., Cenozoic tectonics of the high Andes of west-central Argentina (30°-36°S latitude) (1996) Tecto-nophysics, 259, pp. 185-200
  • Reinecker, J., Tingay, M., Muller, B., (2004) Borehole breakout analysis from fourarm caliper logs, , www.world-stress-map.org, Available at
  • Reinecker, J., Heidbach, O., Tingay, M., Sperner, B., Muller, B., (2005) The 2005 release of the World Stress Map, , www.world-stress-map.org, Available at
  • Richardson, R.M., Coblentz, D.D., Stress modelling in the Andes: Constraints on South American intraplate stress magnitudes (1994) J. Geophys. Res, 99, pp. 22,015-22,025
  • Sarewitz, D., High rate of Late Cenozoic crustal shortening in the Andean foreland, Mendoza province, Argentina (1988) Geology, 16 (12), pp. 1138-1142
  • Siame, L.L., Bellier, O., Sebrier, M., Araujo, M., Deformation partitioning in flat subduction setting: Case of the Andean foreland of western Argentina (28°S-33°S) (2005) Tectonics, 24, pp. TC5003. , doi'10 1029/ 2005TCO01787
  • Siame, L.L., Bellier, O., Sebrier, M., Active tectonics in the Argentine Precordillera and western Sierras Pampeanas (2006) Rev Asoc Geol Argent, 61 (4), pp. 604-619
  • Smalley Jr., R., Isacks, B.L., Seismotectonics of thin- and thick-skinned deformation in the Andean foreland from local network data: Evidence for a seismogenic lower crust (1990) J Geophys Rec, 95, pp. 12,487-12,498
  • Sperner, B., Müller, B., Heidbach, O., Delvaux, D., Reinecker, J., Fuclis, K., Tectonic stress in the earth's crust: Advances in the World Stress Map Project (2003) New Insights into Structural Interpretation and Modeling, 212, pp. 101-116. , edited by D. Nieuwland Geol Soc London Spec. Pubi
  • Tingay, M., Muller, B., Reinecker, J., Haidbach, O., Wenzel, F., Fleckenstein, P., The World Stress Map Project "Present-day stress in sedimentary basins" initiative: Building a valuable public resource to understand tectonic stress in the oil patch (2005) Lead Edge, 24 (12), pp. 1276-1282
  • Uliana, M.A., Biddle, K.T., Mesozoic-Cenozoic paleogeo-graphic and geodynamic evolution of southern South America (1988) Rev. Bras Geocienc, 18, pp. 172-190
  • Uliana, M.A., Arteaga, M.E., Legarreta, L., Cerdán, J.J., Peroni, G., Inversion structures and hydrocarbon occurrence in Argentina (1995) Basin Inversion, 88, pp. 211-233. , edited by J. G. Buchman and P. G. Buchman Geol Soc London Spec. Publ
  • Vergés, J., Ramos, V.A., Meigs, A., Cristallini, E., Bettini, F.H., Cortés, J.M., Crustal wedging triggering recent deformation in the Andean thrust front between 31 °S and 33°S: Sierras Pampeanas-Precordillera interaction (2007) J. Geophys. Res, p. 112. , BO3S15, doi:10.1029/2006JB004287
  • Zerwer, A., Yassir, N.A., Borehole breakout interpretation in the Gulf Coast, offshore Louisiana (1994) Rock Mechanics, pp. 225-232. , edited by Nelson and Laubach, pp, A. A. Balkema, Brookfield, Vt
  • Zoback, M.L., The first and second order patterns of stress in the lithosphere: The World Stress Map Project (1992) J. Geophys Res, 97, pp. 11,703-11,728
  • Zoback, M. L., and M. D. Zoback (1989), Tectonic stress field of the conterminous United States, in Geophysical Framework of the Continental United States, edited by L. C. Pakiser and W. D Mooney Mem Geol Soc. Am., 172, 523-539; Zoback, M.D., Zoback, M.L., Tectonic stress field of North America and relative plate motions (1991) Neotectonics of North America Decade Map, 1, pp. 339-366. , edited by D. B. Sletnmons et al, pp, Geol. Soc. of Am, Boulder, Colo

Citas:

---------- APA ----------
Guzmán, C.G. & Cristallini, E.O. (2009) . Contemporary stress orientations from borehole breakout analysis in the southernmost flat-slab boundary Andean retroarc (32°44' and 33°40'S). Journal of Geophysical Research: Solid Earth, 114(2).
http://dx.doi.org/10.1029/2007JB005505
---------- CHICAGO ----------
Guzmán, C.G., Cristallini, E.O. "Contemporary stress orientations from borehole breakout analysis in the southernmost flat-slab boundary Andean retroarc (32°44' and 33°40'S)" . Journal of Geophysical Research: Solid Earth 114, no. 2 (2009).
http://dx.doi.org/10.1029/2007JB005505
---------- MLA ----------
Guzmán, C.G., Cristallini, E.O. "Contemporary stress orientations from borehole breakout analysis in the southernmost flat-slab boundary Andean retroarc (32°44' and 33°40'S)" . Journal of Geophysical Research: Solid Earth, vol. 114, no. 2, 2009.
http://dx.doi.org/10.1029/2007JB005505
---------- VANCOUVER ----------
Guzmán, C.G., Cristallini, E.O. Contemporary stress orientations from borehole breakout analysis in the southernmost flat-slab boundary Andean retroarc (32°44' and 33°40'S). J. Geophys. Res. B Solid Earth. 2009;114(2).
http://dx.doi.org/10.1029/2007JB005505