During Tertiary, the Palaeozoic crystalline basement and the Mesozoic-Lower Eocene cover of Eastern Sardinia, have been affected by a transcurrent tectonics, with contemporaneous development of both transpressive and transtensive structures. Recent geological survey carried in the Supramonte area and a more detailed structural analysis also supported by 3D geological modeling, allow us to recognise a more complicated architecture that involved both thrusts and related folds and strike-slip faults. At first the rigid basement blocks was displaced along planar, high angle reverse faults and the sedimentary Mesozoic cover was deformed as a forced-folding system. After that the sinistral strike-slip faults, and related structures, clearly post-date the thrust. Therefore, a two stage of evolution can be supposed, probably related to the same geodynamic evolution related to the deformation of a rigid crustal block with a sedimentary cover, bounded by E-W dextral transpressive strike-slip faults and NE-SW sinistral strike-slip faults, pushed-upward and toward the east.
Buttau, C., Funedda, A., Pasci, S., Carmignani, L., Oggiano, G., Sale, V. (2008). Polyphasic deformation of the Mesozoic and tertiary succession in the Supramonte (Eastern Sardinia) [Deformazione polifasica della successione mesozoica e terziaria del Supramonte (Sardegna orientale)]. RENDICONTI ONLINE DELLA SOCIETÀ GEOLOGICA ITALIANA, 1(1), 40-42.
Polyphasic deformation of the Mesozoic and tertiary succession in the Supramonte (Eastern Sardinia) [Deformazione polifasica della successione mesozoica e terziaria del Supramonte (Sardegna orientale)]
Carmignani, L.;
2008-01-01
Abstract
During Tertiary, the Palaeozoic crystalline basement and the Mesozoic-Lower Eocene cover of Eastern Sardinia, have been affected by a transcurrent tectonics, with contemporaneous development of both transpressive and transtensive structures. Recent geological survey carried in the Supramonte area and a more detailed structural analysis also supported by 3D geological modeling, allow us to recognise a more complicated architecture that involved both thrusts and related folds and strike-slip faults. At first the rigid basement blocks was displaced along planar, high angle reverse faults and the sedimentary Mesozoic cover was deformed as a forced-folding system. After that the sinistral strike-slip faults, and related structures, clearly post-date the thrust. Therefore, a two stage of evolution can be supposed, probably related to the same geodynamic evolution related to the deformation of a rigid crustal block with a sedimentary cover, bounded by E-W dextral transpressive strike-slip faults and NE-SW sinistral strike-slip faults, pushed-upward and toward the east.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/45183
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