Tectonophysics2022,Vol.83618.DOI:10.1016/j.tecto.2022.229430

New insights into the Jurassic polyphase strain partition on the patagonian back-arc; constraints from structural analysis of ancient volcanic structures

Benedini, Leonardo Barros, Mercedes Pavon Pivetta, Cecilia Stremel, Agustin Gregori, Daniel A. Marcos, Paulo Bahia, Marcos Scivetti, Nicolas Strazzere, Leonardo Geraldes, Mauro
Tectonophysics2022,Vol.83618.DOI:10.1016/j.tecto.2022.229430

New insights into the Jurassic polyphase strain partition on the patagonian back-arc; constraints from structural analysis of ancient volcanic structures

Benedini, Leonardo 1Barros, Mercedes 1Pavon Pivetta, Cecilia 1Stremel, Agustin 2Gregori, Daniel A. 1Marcos, Paulo 3Bahia, Marcos 2Scivetti, Nicolas 1Strazzere, Leonardo 1Geraldes, Mauro4
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作者信息

  • 1. Univ Nacl Sur
  • 2. Inst Geol Sur
  • 3. Univ Nacl Rio Negro
  • 4. Univ Estado Rio de Janeiro
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Abstract

Located in the western Northpatagonian region, Argentina, the Lower Jurassic Can??ad??on Chileno Complex (CCHC) provides a remarkable opportunity to assess the roles of pre-, syn-, and post-eruptive faulting in felsic diatremes complexes evolution. The structural analyses of fractures, dikes, and folds allow recognition of the occurrence of four different strain partitions (SP1-SP4) developed during the Lower to Middle Jurassic. Recognized strain configurations show equivalent temporal and structural relationships throughout the Jurassic backarc system of Patagonia and contemporary basins of southern South America. The stratigraphical criteria allow inferring an Upper Sinemurian to Lower Pliensbachian time interval for the initial strain configurations (SP1, SP2, and SP3). WNW, NNE, and NE-oriented extensional phases were defined and correlated with adjoining areas. Particularly, the third strain partition phase is characterized by a significant transpressive deformation. A NE contractional episode characterizes the post-eruptive deformation stage (SP4) during the Bajocian to Callovian interval. Tectonic interpretations were elaborated concerning subduction dynamics, continental drift, and rotation that controlled the regional and local stress configuration throughout the Jurassic Period of Patagonia and central Argentina.

Key words

Jurassic polyphase deformation/Felsic maar diatremes structures/Northpatagonian region/Strain Partition/Back arc deformation/BREAK-UP/ARGENTINA IMPLICATIONS/SOUTHERN ARGENTINA/NEUQUEN BASIN/ASFALTO BASIN/MANTLE PLUME/GONDWANA/MASSIF/ROCKS/EVOLUTION

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出版年

2022
Tectonophysics

Tectonophysics

EISCI
ISSN:0040-1951
被引量6
参考文献量101
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