Anticline growth by shortening during crustal exhumation of the Moroccan Atlantic margin

Journal Article (2020)
Author(s)

David Fernández-Blanco (Consejo Superior de Investigaciones Científicas)

Mohamed Gouiza (University of Leeds)

R. Charton (TU Delft - Applied Geology, NARG (North Africa Research Group))

Christian Kluge (TU Delft - Reservoir Engineering)

J. Klaver (RWTH Aachen University)

K. Brautigam (Vrije Universiteit Amsterdam)

G. Bertotti (NARG (North Africa Research Group), TU Delft - Applied Geology)

Research Group
Applied Geology
Copyright
© 2020 D. Fernández-Blanco, M. Gouiza, R.J.G. Charton, C. Kluge, J. Klaver, K. Brautigam, G. Bertotti
DOI related publication
https://doi.org/10.1016/j.jsg.2020.104125
More Info
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Publication Year
2020
Language
English
Copyright
© 2020 D. Fernández-Blanco, M. Gouiza, R.J.G. Charton, C. Kluge, J. Klaver, K. Brautigam, G. Bertotti
Research Group
Applied Geology
Volume number
140
Pages (from-to)
1-14
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Abstract

It is unclear how the crustal-scale erosional exhumation of continental domains of the Moroccan Atlantic margin and the excessive subsidence of its rifted domains affected the Late Jurassic-Early Cretaceous post-rift evolution of the margin. To constrain the km-scale exhumation, we study the structural evolution of the Jbel Amsittene. This anticline is located on the coastal plain of the Moroccan Atlantic margin, and is classically considered to have been developed initially in the Late Cretaceous by halokinesis, and by contraction during the Neogene. Contrarily, our structural analysis indicates that the anticline is a fault-propagation fold verging north with Triassic salts at its core and that it formed by shortening shortly after continental breakup of the Central Atlantic. The anticline grew by NNW-SSE to NNE-SSW contraction, as shown by syn-tectonic wedges, regional kinematic indicators and synsedimentary structures in Upper Jurassic to Lower Cretaceous rocks. It grew further and tightened during the Cenozoic, presumably in relation to the Atlas/Alpine contraction. Thus, our data and interpretation suggest that “tectonic-drives-salt” in the anticline early growth, which is coeval with the growth of other anticlines along the Moroccan Atlantic margin and widespread km-scale exhumation farther onshore. Anticline growth due to shortening argues for intraplate far-field stresses potentially linked to the geodynamic evolution of the African, American and European plates.