000 03735nmc a2200265 4500
005 20260520010405.0
008 260224s2018 xxu esp
041 _aEspañol
082 _a068.82 553.28 C62 2018 0015658
245 0 0 _aAnalogías entre la Sierra Silva y el anticlinal Perales
_bImpacto en el análisis estructural de la Faja Plegada de San Bernardo (Cuenca del Golfo San Jorge)
260 _a
_b
_c2018
270 _a02/09/2025 ; 09/04/2019
300 _a21 p. ; 531-552
520 _aThe San Bernardo Fold Belt (SBFB) is a region of the Golfo San Jorge Basin (GSJB) characterized by N-S to NNW-SSE folds linked to positive tectonic inversion. Almost all of these folds have a multiphase construction origin. The Sierra Silva (SS) is among the most characteristic morphostructure of the SBFB. The topographic and structural architecture of SS expose a NNE-SSW complex fold, segmented by faults oblique to the fold axis, these brittle structures have lateral and vertical displacement components. These faults are interpreted as secondary faults partially reactivated and exhumed during the cenozoic tectonic inversion. The morphology of this fold and its tectonostratigraphic evolution contribute fundamental evidences to extrapolate them to the analogues structures in subsurface.Southern to the Senguerr River elbow, the SBFB is developed in the subsurface of the GSJB where many of these fault-fold structures are oil bearing structural traps. In particular, Perales Anticline (PA) constitute one of the main structures of the Los Perales-Las Mesetas block. These structure has been systematically studied and developed since its discovery in 1934. Although this scenario, at the present time the validated structural interpretations are contrasting and antagonistic. On one hand it is proposed a tectonostratigraphic evolution where the Castillo Formation (Albian-Cenomanian) represent a sin-inversion unit, while on the other hand, that unit is linked to the extensional-thermal subsidence of the basin.The present contribution makes the geometric, kinematic and dynamic structural analysis of both fault-related folds to define analogies and differences between them. In cross sections perpendicular to the folds axis, the strata (SS) and the sismo-sequences (PA) do not show stratigraphic wedges linked to growth-strata towards the folds hinge. This characteristic, in addition with the absence of progressive unconformities, sustain an uplift after the deposition of the Chubut Group base. This context is support with inlines parallel to the main fault of PA, where that stratigraphic interval shows an increasing in the stratigraphic thickness and reflectors divergence toward the crest of the braquianticline. At the same time, the transverse to oblique secondary faults show evidences of sin-extensional activity, so them can be interpreted as cretaceous extensional brittle structures reactivated during the inversion. This architecture is analogous to the recognized at surface at SS. Revalidation of an extensional-thermal tectonoestratigraphic context for the base of the Chubut Group is essential to define strategies for the production and exploration of nontraditional stratigraphic levels.
773 _g
942 _cCONGTP
100 1 _aAllard, José Oscar
_9764
100 1 _aFoix, Nicolás
_9765
100 1 _aBueti, Sebastián
_958784
100 1 _aFerreira Pittau, María Leonor
_958785
100 1 _aAtencio, Mario
_9995
111 2 _aCongreso de Exploración y Desarrollo de Hidrocarburos (10mo. : 2018 nov. 5 - 9 : Mendoza)
_9573
999 _c192825
_d192825
856 _uhttps://biblioteca.iapg.org.ar/ArchivosAdjuntos/Conexplor2018/1456.pdf