Revisiting the geodynamics of the Middle East region from an integrated geophysical perspective

被引:1
|
作者
Civiero, Chiara [1 ,2 ]
Celli, Nicolas L. [3 ]
Tesauro, Magdala [1 ,4 ]
机构
[1] Univ Trieste, Dipartimento Matemat & Geosci, Trieste, Italy
[2] CSIC, Inst Ciencies Mar ICM, Barcelona, Spain
[3] Dublin Inst Adv Studies DIAS, Dublin D02Y006, Ireland
[4] Univ Utrecht, Dept Geosci, Utrecht, Netherlands
关键词
Mantle flow; Azimuth a l anisotropy; Seismic Tomography; Lithospheric thickness; Mantle plumes; Upwelling-induced traction; SEISMIC ANISOTROPY BENEATH; WAVE VELOCITY STRUCTURE; WESTERN SAUDI-ARABIA; INDUCED MANTLE FLOW; P-WAVE; LITHOSPHERIC STRUCTURE; TRAVEL-TIME; SPLITTING MEASUREMENTS; RESIDUAL TOPOGRAPHY; CRUSTAL DEFORMATION;
D O I
10.1016/j.jog.2023.102005
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
A long-standing question in geodynamics is whether mantle flow is driven by the plate motion alone, or mantle upwelling makes a significant contribution to it. Subducting slabs and lateral variations of the continental lithosphere can further influence the asthenospheric flow and control its direction. The Middle East region (MER) is a complex continental setting where different processes such as rifting, break-up, plate collision, and tectonic escape kinematically interact with each other. In this context, the role that lithospheric structure, mantle flow, and active upwellings may play is debated . Tomographic images provide a snapshot of the current thermal conditions of a region and seismic anisotropy can also help resolve mantle convection. Here, we synthesize shear-wave splitting observations together with up-to-date tomography models of the mantle structure beneath the MER and other geophysical data. Low-velocity anomalies are seen at asthenospheric depths beneath W Arabia, NW Iran, and Anatolia, suggesting a spreading zone of warm mantle. Two deep low-velocity bodies in Afar and Levant -interpreted as hot mantle plumes- are the sources of this shallower mantle flow. Where low velocities are imaged, we observe predominantly NE-SW oriented anisotropy, anomalously high topography, and abundant basaltic volcanism. The integrated analysis suggests that a horizontal component associated with active up-welling is present in the upper-mantle flow field. The large-scale circulation flow fed by the Afar and Levant Plumes, aided by the subduction-induced forces, facilitates the lateral motion of the Anatolian microplate and affects the dynamic evolution of the Zagros orogen. The proposed scenario demonstrates that the interplay be-tween plate-tectonic events and mantle dynamics controls the kinematics of the region and can explain the general patterns of deformation observed at the surface.
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页数:21
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