4.5 Article

Kinematics of the Torcal Shear Zone: Transpressional tectonics in a salient-recess transition at the northern Gibraltar Arc

期刊

TECTONOPHYSICS
卷 663, 期 -, 页码 62-77

出版社

ELSEVIER
DOI: 10.1016/j.tecto.2015.05.002

关键词

Map-view curves; Gibraltar Arc; Oblique convergence; Triclinic transpression; Strain partitioning

资金

  1. TOPOIBERIA [CONSOLIDER-INGENIO2010-CSD-2006-0041, CGL2013-46368-P, RNM-451]

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Complex strain patterns in the Gibraltar Arc derive from the interaction between the westward drift and concomitant back-arc extension of the arc hinterland (Alboran Domain) and the Europe-Africa convergence. In order to explore strain partitioning modes within the arc and the role played by large-scale oblique structures, we have studied the kinematics of the Torcal Shear Zone located at the northern branch of the Gibraltar Arc. The Torcal Shear Zone is a 70 km-long, E-W brittle-ductile shear zone that underwent overall dextral transpression during the Late Miocene to Quaternary time. Within the Torcal Shear Zone strain is highly partitioned at multiple scales into shortening, oblique, extensional and strike-slip structures. Moreover, strain partitioning is heterogeneous along-strike giving rise to four distinct structural domains. In the central sector the strain is pure-shear dominated, although narrow sectors parallel to the shear walls are simple-shear dominated. A single N99 degrees E-N109 degrees E trending horizontal velocity vector ((V) over right arrow) could explain the kinematics of the entire central sector of the Torcal Shear Zone. lateral domains have different strain patterns and are comparable to splay-dominated and thrust-dominated strike-slip fault tips. The Torcal Shear Zone provokes the subvertical extrusion of the External Betics units against the Alboran Domain and a dextral deflection of the structural trend. Moreover, the estimated (V) over right arrow points to the importance of the westward motion of the hinterland relative to the external wedge and fits well with the radial outward thrusting pattern identified in the arc. (C) 2015 Elsevier B.V. All rights reserved.

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