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Rifted margins: Ductile deformation, boudinage, continentward-dipping normal faults and the role of the weak lower crust

期刊

GONDWANA RESEARCH
卷 53, 期 -, 页码 20-40

出版社

ELSEVIER
DOI: 10.1016/j.gr.2017.04.030

关键词

Passive margin; Boudinage; Rifting; Lower crust; South China Sea; Atlantic

资金

  1. Total SA
  2. ERC [290864]
  3. Total
  4. European Research Council (ERC) [290864] Funding Source: European Research Council (ERC)

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The stunningly increased resolution of the deep crustal levels in recent industrial seismic profiles acquired along most of the world's rifted margins leads to the unraveling of an unexpected variety of structures. It provides unprecedented access to the processes occurring in the middle and lower continental crust. We present a series of so far unreleased profiles that allows the identification of various rift-related geological processes such as crustal boudinage, ductile shear and low-angle detachment faulting, and a rifting history that differs from the classical models of oceanward-dipping normal faults. The lower crust in rifted margins appears much more intensely deformed than usually represented. At the foot of both magma-rich and magma-poor margins, we observe clear indications of ductile deformation of the deep continental crust along large-scale shallow dipping shear zones. These shear zones generally show a top-to-the-continent sense of shear consistent with the activity of Continentward Dipping Normal Faults (CDNF) observed in the upper crust. This pattern is responsible for a migration of the deformation and associated sedimentation and/or volcanic activity toward the ocean. We discuss the origin of these CDNF and investigate their implications and the effect of sediment thermal blanketing on crustal rheology. In some cases, low-angle shear zones define an anastomosed pattern that delineates boudin-like structures. The maximum deformation is localized in the inter-boudin areas. The upper crust is intensely boudinaged and the highly deformed lower crust fills the inter-boudins underneath. The boudinage pattern controls the position and dip of upper crustal normal faults. We present some of the most striking examples from the margins of Uruguay, West Africa, South China Sea and Barents Sea, and discuss their implications for the time temperature history of the margins. (C) 2017 International Association for Gondwana Research. Published by Elsevier B.V. All rights reserved.

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