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Punturo, Rosalda, Cirrincione, Rosolino, Fazio, Eugenio, Fiannacca, Patrizia, Kern, Hartmut, Mengel, Kurt, Ortolano, Gaetano, Pezzino, Antonino (2014) Microstructural, compositional and petrophysical properties of mylonitic granodiorites from an extensional shear zone (Rhodope Core complex, Greece) Geological Magazine, 151 (6) 1051-1071 doi:10.1017/s001675681300109x

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Reference TypeJournal (article/letter/editorial)
TitleMicrostructural, compositional and petrophysical properties of mylonitic granodiorites from an extensional shear zone (Rhodope Core complex, Greece)
JournalGeological Magazine
AuthorsPunturo, RosaldaAuthor
Cirrincione, RosolinoAuthor
Fazio, EugenioAuthor
Fiannacca, PatriziaAuthor
Kern, HartmutAuthor
Mengel, KurtAuthor
Ortolano, GaetanoAuthor
Pezzino, AntoninoAuthor
Year2014 (November)Volume151
Issue6
PublisherCambridge University Press (CUP)
DOIdoi:10.1017/s001675681300109xSearch in ResearchGate
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Mindat Ref. ID260889Long-form Identifiermindat:1:5:260889:5
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Full ReferencePunturo, Rosalda, Cirrincione, Rosolino, Fazio, Eugenio, Fiannacca, Patrizia, Kern, Hartmut, Mengel, Kurt, Ortolano, Gaetano, Pezzino, Antonino (2014) Microstructural, compositional and petrophysical properties of mylonitic granodiorites from an extensional shear zone (Rhodope Core complex, Greece) Geological Magazine, 151 (6) 1051-1071 doi:10.1017/s001675681300109x
Plain TextPunturo, Rosalda, Cirrincione, Rosolino, Fazio, Eugenio, Fiannacca, Patrizia, Kern, Hartmut, Mengel, Kurt, Ortolano, Gaetano, Pezzino, Antonino (2014) Microstructural, compositional and petrophysical properties of mylonitic granodiorites from an extensional shear zone (Rhodope Core complex, Greece) Geological Magazine, 151 (6) 1051-1071 doi:10.1017/s001675681300109x
In(2014, November) Geological Magazine Vol. 151 (6) Cambridge University Press (CUP)
Abstract/NotesAbstractAt the southern boundary of the Rhodope Massif, NE Greece, the Kavala Shear Zone (KSZ) represents an example of the Eastern Mediterranean deep-seated extensional tectonic setting. During Miocene time, extensional deformation favoured syntectonic emplacement and subsequent exhumation of plutonic bodies. This paper deals with the strain-related changes in macroscopic, geochemical and microstructural properties of the lithotypes collected along the KSZ, comprising granitoids from the pluton, aplitic dykes and host rock gneisses. Moreover, we investigated the evolution of seismic anisotropy on a suite of granitoid mylonites as a result of progressive strain. Isotropic compressional and shear wave velocities (Vp, Vs) and densities calculated from modal proportions and single-crystal elastic properties at given pressure–temperature (P–T) conditions are compared to respective experimental data including the directional dependence (anisotropy) of wave velocities. Compared to the calculated isotropic velocities, which are similar for all of the investigated mylonites (average values: Vp ~ 5.87 km s−1, Vs ~ 3.4 km s−1, Vp/Vs = 1.73 and density = 2.65 g cm−3), the seismic measurements give evidence for marked P-wave velocity anisotropy up to 6.92% (at 400 MPa) in the most deformed rock due to marked microstructural changes with progressive strain, as highlighted by the alignment of mica, chlorite minerals and quartz ribbons. The highest P- and S-wave velocities are parallel to the foliation plane and lowest normal to the foliation plane. Importantly, Vp remains constant within the foliation with progressive strain, but decreases normal to foliation. The potential of the observed seismic anisotropy of the KSZ mylonites with respect to detectable seismic reflections is briefly discussed.


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