New evidence of delamination in the Western Alboran Sea Geodynamic evolution of the Alboran domain and its margins

被引:9
|
作者
Timoulali, Youssef [1 ]
Djellit, Hamou [2 ]
Hahou, Youssef [1 ]
Jabour, Nacer [1 ]
Merrouch, Redouane [1 ]
机构
[1] CNRST, Rabat, Morocco
[2] CRAAG, Algiers, Algeria
关键词
Alboran Sea; Seismic tomography; Crustal velocity; Tectonics blocks; TRAVEL-TIME TOMOGRAPHY; VELOCITY STRUCTURE; IBERIAN PENINSULA; CRUSTAL STRUCTURE; BETIC CORDILLERA; SEISMIC ANISOTROPY; THERMAL EVOLUTION; METAMORPHIC ROCKS; STRUCTURE BENEATH; SLAB DETACHMENT;
D O I
10.1016/j.jog.2013.10.005
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The presence of continuous upper crustal blocks between the Iberian Betics and Moroccan Rif in the western and middle Alboran Sea, detected with tomography, can add new information about the lithosphere structure and geodynamic evolution in this region. A large volume of seismic data (P and S wave arrival times) has been collected for the period between 1 December 1988 and 31 December 2008 by 57 stations located in northern Morocco (National Institute of Geophysics, CNRST, Rabat), southern Portugal (Instituto de Meteorologia, Lisbon) and Spain (Institut Geografico National, Madrid) and used to investigate the lithosphere in the western Alboran Sea region. We use a linearized inversion procedure comprising two steps: (1) finding the minimal 1-D model and simultaneous relocation of hypocenters and (2) determination of local velocity structure using linearized inversion. The model parameterization in this method assumes a continuous velocity field. The resolution tests indicate that the calculated images give near true structure imaged at 5 km depth for the Tanger peninsula, the Alhoceima region and southern Spain. At 15, 30 and 45 km depth we observe a near true structure imaged in northern Morocco, and southern Spain. At 60 and 100 km, southern Spain and the SW region of the Alboran Sea give a near true structure. The resulting tomographic image shows the presence of two upper crustal bodies (velocity 6.5 km/s) at 5-10 km depth between the Betics, Rif, western and central Alboran Sea. Low velocities at the base of these two bodies favor the presence of melt. This new evidence proves that the Tethysian ocean upper crust was not totally collapsed or broken down during the late Oligocene-early Miocene. These two blocks of upper crust were initially one block. The geodynamic process in the eastern of the Mediterranean is driven by slab rollback. The delamination process of the lithospheric mantle terminates with the proposed slab rollback in the western part of the Mediterranean. This can be explained by the removal of the major part of the lithosphere beneath the area, except in the SW part of the Alboran Sea where a small part of the lithospheric mantle is still attached and is extends and dips to SE beneath the Rif, slowly peeled back to the west. A second detached lithospheric mantle is located and extends to eastern part of the Rif and dips to the SE. The removal of lithosphere mantle from the base of the crust was replaced and heated by extrusion of asthenospheric material coming from depth to replace the part of crust detached. A combination of isostatic surface/topographic uplift and erosion induced a rapid exhumation and cooling of deep crustal rocks. (c) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:206 / 216
页数:11
相关论文
共 50 条
  • [1] Seismological evidence for a delamination process in the lithosphere under the Alboran Sea
    Mezcua, J
    Rueda, J
    GEOPHYSICAL JOURNAL INTERNATIONAL, 1997, 129 (01) : F1 - F8
  • [2] Opposite Symmetry in the Lithospheric Structure of the Alboran and Algerian Basins and Their Margins (Western Mediterranean): Geodynamic Implications
    Kumar, Ajay
    Fernandez, Manel
    Verges, Jaume
    Torne, Montserrat
    Jimenez-Munt, Ivone
    JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2021, 126 (07)
  • [3] Crustal types and Tertiary tectonic evolution of the Alboran sea, western Mediterranean
    Booth-Rea, G.
    Ranero, C. R.
    Martinez-Martinez, J. M.
    Grevemeyer, I.
    GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, 2007, 8
  • [4] Tectonic and stratigraphic evolution of the Western Alboran Sea Basin in the last 25 Myrs
    Do Couto, Damien
    Gorini, Christian
    Jolivet, Laurent
    Lebret, Noemie
    Augier, Romain
    Gumiaux, Charles
    d'Acremont, Elia
    Ammar, Abdellah
    Jabour, Haddou
    Auxietre, Jean-Luc
    TECTONOPHYSICS, 2016, 677 : 280 - 311
  • [5] Early Miocene strike-slip tectonics and granite emplacement in the Alboran Domain (Rif Chain, Morocco): significance for the geodynamic evolution of Western Mediterranean
    Rossetti, Federico
    Dini, Andrea
    Lucci, Federico
    Bouybaouenne, Mohamed
    Faccenna, Claudio
    TECTONOPHYSICS, 2013, 608 : 774 - 791
  • [6] Modelling the Gibraltar Strait/Western Alboran Sea ecohydrodynamics
    Nikolaos Skliris
    Jean-Marie Beckers
    Ocean Dynamics, 2009, 59 : 489 - 508
  • [7] Modelling the Gibraltar Strait/Western Alboran Sea ecohydrodynamics
    Skliris, Nikolaos
    Beckers, Jean-Marie
    OCEAN DYNAMICS, 2009, 59 (03) : 489 - 508
  • [8] New insights from seismic tomography on the complex geodynamic evolution of two adjacent domains: Gulf of Cadiz and Alboran Sea
    Monna, S.
    Cimini, G. B.
    Montuori, C.
    Matias, L.
    Geissler, W. H.
    Favali, P.
    JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2013, 118 (04) : 1587 - 1601
  • [9] Spatial distribution of ichthyofauna in the northern Alboran Sea (western Mediterranean)
    Garcia-Ruiz, Cristina
    Lloris, Domingo
    Luis Rueda, Jose
    Carmen Garcia-Martinez, M.
    Gil de Sola, Luis
    JOURNAL OF NATURAL HISTORY, 2015, 49 (19-20) : 1191 - 1224
  • [10] The Alboran Sea circulation and its biological response: A review
    Sanchez-Garrido, Jose C.
    Nadal, Irene
    FRONTIERS IN MARINE SCIENCE, 2022, 9