Pre-existing salt structures and the folding of the Zagros Mountains

Four-dimensional analogue X-ray tomography imagery is used to investigate the role played by pre-existing salt structures during compressive deformation. Initially linear salt structures evolve towards more axisymmetric diapirs. Depending on the diapir geometry and on its thickness relative to the s...

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Published inSalt Tectonics, Sediments and Prospectivity Vol. 363; pp. 545 - 561
Main Authors Callot, Jean-Paul, Trocmé, Vincent, Letouzey, Jean, Albouy, Emily, Jahani, Salman, Sherkati, Sharam
Format Book Chapter
LanguageEnglish
Published London The Geological Society of London 01.01.2012
Geological Society of London (GSL)
SeriesGeological Society, London, Special Publications
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Abstract Four-dimensional analogue X-ray tomography imagery is used to investigate the role played by pre-existing salt structures during compressive deformation. Initially linear salt structures evolve towards more axisymmetric diapirs. Depending on the diapir geometry and on its thickness relative to the sedimentary column thickness, the diapirs are either (1) shortened and localize sharp overturned folds for vertical pipe-like diapirs or else (2) act as preferentially oriented ramps, the diapir being incorporated in the fold for pillow-like diapirs. The ridges have a strong effect on the lateral extent and orientation of folds: they disconnect the folds formed on either side of the salt wall. Compressional relays between ridges allow for a folded connection between both sides. The Zagros Mountains in southern Iran offer a large variety of comparable structures, associated with the Hormuz salt level which acts as the regional décollement. Most of the salt structures have been active from the Early Palaeozoic until the present day. The first-order critical taper is controlled by the distribution of Hormuz décollement level and by its thickness. At a smaller scale, the fold geometry and size are locally controlled by the pre-existing salt structures, which are the main source of heterogeneity in the deformation.
AbstractList Four-dimensional analogue X-ray tomography imagery is used to investigate the role played by pre-existing salt structures during compressive deformation. Initially linear salt structures evolve towards more axisymmetric diapirs. Depending on the diapir geometry and on its thickness relative to the sedimentary column thickness, the diapirs are either (1) shortened and localize sharp overturned folds for vertical pipe-like diapirs or else (2) act as preferentially oriented ramps, the diapir being incorporated in the fold for pillow-like diapirs. The ridges have a strong effect on the lateral extent and orientation of folds: they disconnect the folds formed on either side of the salt wall. Compressional relays between ridges allow for a folded connection between both sides. The Zagros Mountains in southern Iran offer a large variety of comparable structures, associated with the Hormuz salt level which acts as the regional décollement. Most of the salt structures have been active from the Early Palaeozoic until the present day. The first-order critical taper is controlled by the distribution of Hormuz décollement level and by its thickness. At a smaller scale, the fold geometry and size are locally controlled by the pre-existing salt structures, which are the main source of heterogeneity in the deformation.
Author Jahani, Salman
Callot, Jean-Paul
Albouy, Emily
Letouzey, Jean
Trocmé, Vincent
Sherkati, Sharam
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2012
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Snippet Four-dimensional analogue X-ray tomography imagery is used to investigate the role played by pre-existing salt structures during compressive deformation....
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StartPage 545
SubjectTerms Earth Sciences
Geophysics, Geodesy & Seismology
TableOfContents 27.1 Geological Setting 27.2 Analogue Experiments Set-up 27.3 Experimental Results 27.4 Discussion and Conclusions References
Title Pre-existing salt structures and the folding of the Zagros Mountains
URI https://www.lyellcollection.org/doi/10.1144/SP363.27
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