Sedimentologic and stratigraphic evolution of the Cacheuta basin: Constraints on the development of the Miocene retroarc foreland basin, south-central Andes

被引:32
|
作者
Buelow, E. K. [1 ]
Suriano, J. [2 ,3 ]
Mahoney, J. B. [4 ]
Kimbrough, D. L. [1 ]
Mescua, J. F. [5 ]
Giambiagi, L. B. [5 ]
Hoke, G. D. [6 ]
机构
[1] San Diego State Univ, Dept Geol Sci, San Diego, CA 92182 USA
[2] Univ Buenos Aires, IGEBA, Inst Geociencias Basicas Ambientales & Aplicadas, Ciudad Univ Pabellon II,Intendente Guiraldes 2160, Buenos Aires, DF, Argentina
[3] Consejo Nacl Invest Cient & Tecn, Ciudad Univ Pabellon II,Intendente Guiraldes 2160, Buenos Aires, DF, Argentina
[4] Univ Wisconsin, Dept Geol, 105 Garfield Ave, Eau Claire, WI 54701 USA
[5] Ctr Cient Tecnol, Inst Argentino Niviol Glaciol & Ciencias Ambienta, Parque San Martin S-N, RA-5500 Mendoza, Argentina
[6] Syracuse Univ, Dept Earth Sci, Heroy Geol Lab 204, Syracuse, NY 13244 USA
基金
美国国家科学基金会;
关键词
ZIRCON U-PB; NORTHERN SIERRAS PAMPEANAS; PRECORDILLERA THRUST BELT; NAZCA PLATE BENEATH; ARGENTINE PRECORDILLERA; ALTIPLANO PLATEAU; NEUQUEN BASIN; SUBDUCTION; MENDOZA; MAGMATISM;
D O I
10.1130/L709.1
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Retroarc foreland basins in contractional arc settings contain evidence of temporal and spatial variations in magmatic activity, deformation, and exhumation along the continental margin and serve as excellent recorders of subduction dynamics through time. The Cacheuta basin, northwestern Mendoza Province, Argentina, is situated within the transition zone between the Pampean flat-slab subduction segment north of 33 degrees S and the normal-dipping slab segment of the Southern Volcanic Zone to the south, and it records a detailed history of Andean orogenic exhumation at this latitude. The integration of sedimentologic, stratigraphic, geochronologic, and sediment provenance data from the Cacheuta basin constrains orogenic exhumation patterns and basin evolution during basin development. Cacheuta basin strata record at least a 12 m.y. period of basin evolution (ca. 20 Ma to younger than 7.5 Ma), based on new geochronology. The timing of initial basin subsidence is constrained by the lowermost sample in the Marino Formation, which yielded a maximum depositional age of 19.2 +/- 0.26 Ma, similar to 4 m.y. earlier than previous interpretations. Conglomerate clast counts, thin section petrography, and detrital zircon analyses, coupled with distinct sedimentologic variations, record progressive orogenic exhumation of the Cordillera Principal, Cordillera Frontal, and Precordillera during early to middle Miocene time. Examination of basinal strata demonstrate that uplift of the Cordillera Principal, Cordillera Frontal, and Precordillera, and simultaneous development of the Cacheuta retroarc foreland basin, in the early to mid-Miocene was the result of contractional deformation and crustal thickening during normal subduction-related orogenic processes and did not result from the development of the flat slab in late Miocene time.
引用
收藏
页码:366 / 391
页数:26
相关论文
共 50 条
  • [31] Tectono-stratigraphic evolution of a deep-water foreland basin: a case study from the Marnoso-arenacea basin, central Italy
    Pasqualone, Luca
    Brozzetti, Francesco
    Mirabella, Francesco
    Luchetti, Lucina
    Tangari, Anna Chiara
    Barchi, Massimiliano R.
    ITALIAN JOURNAL OF GEOSCIENCES, 2024, 143 (01) : 105 - 129
  • [32] Peruvian Altiplano Stratigraphy Highlights Along-Strike Variability in Foreland Basin Evolution of the Cenozoic Central Andes
    Sundell, Kurt E.
    Saylor, Joel E.
    Lapen, Thomas J.
    Styron, Richard H.
    Villarreal, Dustin P.
    Usnayo, Paola
    Cardenas, Jose
    TECTONICS, 2018, 37 (06) : 1876 - 1904
  • [33] Stratigraphic evolution of a salt-walled basin: the influence of diapirism and compressional tectonics on the sedimentary record of the Estopany`a syncline (South-Central Pyrenees)
    Ramirez-Perez, Pedro
    Cofrade, Gabriel
    Martin-Martin, Juan Diego
    Trave, Anna
    MARINE AND PETROLEUM GEOLOGY, 2024, 163
  • [34] UPPER CRETACEOUS PLATFORM-TO-BASIN DEPOSITIONAL SEQUENCE DEVELOPMENT, TREMP BASIN, SOUTH-CENTRAL PYRENEES, SPAIN
    SIMO, AT
    CONTROLS ON CARBONATE PLATFORM AND BASIN DEVELOPMENT, 1989, 44 : 365 - 378
  • [35] Kinematic-stratigraphic evolution of a growth syncline and its implications for tectonic development of the proximal foreland basin, southeastern Ebro basin, Catalunya, Spain
    Lawton, TF
    Roca, E
    Guimerà, J
    GEOLOGICAL SOCIETY OF AMERICA BULLETIN, 1999, 111 (03) : 412 - 431
  • [36] Peri-Gondwanan Arc-back-arc Complex and Badger Retroarc Foreland Basin: Development of the Exploits Orocline of Central Newfoundland
    O'Brien, Brian H.
    GEOSCIENCE CANADA, 2012, 39 : 4 - 5
  • [37] Stratigraphic Architecture and Lithofacies Analysis: Evidence for Development of the Pliocene-Holocene Taichung Foreland Basin, Central Taiwan
    Kao, Chung-Yen
    Hong, Eason
    Yu, Ho-Shing
    Wong, Sam
    TERRESTRIAL ATMOSPHERIC AND OCEANIC SCIENCES, 2013, 24 (01): : 41 - 58
  • [38] Stratigraphic and provenance evolution of the Southern Apennines foreland basin system during the Middle Miocene to Pliocene (Irpinia-Sannio successions, Italy)
    Matano, Fabio
    Critelli, Salvatore
    Barone, Mirko
    Muto, Francesco
    Di Nocera, Silvio
    MARINE AND PETROLEUM GEOLOGY, 2014, 57 : 652 - 670
  • [39] FROM FORELAND RIFT TO FORE-ARC BASIN - TECTONOTHERMAL CONTROLS ON SUBSIDENCE AND STRATIGRAPHIC DEVELOPMENT IN THE MESOZOIC-RECENT SALAR-DE-ATACAMA BASIN, CHILEAN ANDES
    FLINT, S
    TURNER, P
    HARTLEY, A
    JOLLEY, E
    AAPG BULLETIN-AMERICAN ASSOCIATION OF PETROLEUM GEOLOGISTS, 1991, 75 (03): : 575 - 575
  • [40] Tertiary stratigraphy and tectonic development of the Alamosa basin (northern San Luis Basin), Rio Grande rift, south-central Colorado
    Brister, Brian S.
    Gries, Robbie R.
    Special Paper of the Geological Society of America, 1994, 291 : 39 - 58