000 03854nmc a2200289 4500
005 20260520010356.0
008 260224s2018 xxu esp
041 _aEspañol
082 _a068.82 553.28 C62 2018 0015655
245 0 0 _aEvolución tectonosedimentaria del Grupo Cuyo en el ámbito occidental de la dorsal Huincul, Cuenca Neuquina, Argentina
260 _a
_b
_c2018
270 _a01/07/2022 ; 06/03/2019
300 _a25 p. ; 269-294
520 _aBased on subsurface data, this work documents the relationships between tectonics and sedimentation duringthe EarlyPliensbachian–Early Callovian (CuyoGr.) in thewestern segment of the Huincul High,one of the most complex areas of the prolific Neuquen basin (Argentina). The Cuyo Gr., which records the opening of the Neuquen Basin to the proto-Pacific Ocean, constitutes an up to 2,800 meter-thick second order transgressive–regressive sequence composed of basinal organic-rich shales, interbedded with fine to coarse grained sandstones, and slope mudstones (Los Molles Fm.), shallow-water and coastal conglomerates, sandstones and shales (Lajas Fm.), and terrestrial reddish deposits (Challacó Fm.).The Huincul Highis a 300 km W-E oriented complex macrostructure comprisingpaleohighs, folds and folds related to reverse and inverted normal faults, generated under a N30°W s1 compressive event during Jurassic and Cretaceous time. The stratigraphy and structure of the Huincul High has been studied at different scales during more than 100 years, due to the multilayer complex oil and gas fields present there. Nevertheless, data dispersion coupled with lessinformation compared to adjacent areas (notably the Neuquén Embayment) have hindered its understanding and the stratigraphiccorrelations between both areas.The main goals were a) to carry out a new stratigraphic and structural interpretation based on data integration, b) to define of a correlation skin between fields, and c) to analyze the unit equivalence between this environment and the less deformedEmbayment.Data used in this work include 3,000 km2 of 3D seismic, completed with logs, core, cutting and biostratigraphic data from more than 80 wells. Subsurface data significantly improved our 3D understanding of the Huincul High.Interpreted cyclesreveal a large-scale progradational, shallowing-upward pattern for the CuyoGr., punctuated by several major seismic surfaces, including two angular unconformities, traceable into those defined in the adjacent Embayment.Both upwards and updip, distal aggradationaldeep-water TOC-rich shales evolve into slope mudstoneswith a sigmoidal seismic-scale geometry (Los Molles Fm.) and then intocoastal and finally continental deposits (LajasandChallacóFms., respectively) with horizontal to discontinuous seismic facies. The oldest units display a ramp geometry, which after the Intra-Toarcian unconformity event evolved into a well-defined clinoformal geometryrevealingan overall northwestwardsprogradation of the entire system.The improved 3D information of the Huincul High shows that the CuyoGr.stratigraphy and depositional-system geometry were deeply controlled by the Huincul High structures and their timing.
773 _g
942 _cCONGTP
100 1 _aGiunta, David
_958446
100 1 _aFernández, Luis Pedro
_958470
100 1 _aPoblet, Josep
_958471
100 1 _aMassaferro, José Luis
_940265
111 2 _aCongreso de Exploración y Desarrollo de Hidrocarburos (10mo. : 2018 nov. 5 - 9 : Mendoza)
_9573
111 2 _aSimposio de Recursos No Convencionales (2018 nov. 5 - 9 : Mendoza)
_9781
650 0 _aRelaciones tectónica-sedimentación
_958472
650 0 _aGrupo Cuyo
_958465
999 _c192697
_d192697
856 _uhttps://biblioteca.iapg.org.ar/ArchivosAdjuntos/Conexplor2018/SRNC/1179.pdf