Petrotectonic framework of granitoids and associated granulites at Nagavalli Shear Zone (NSZ), Eastern Ghats Belt: Evidence of a late transpression orogeny

Megacrystic granitoids associated with migmatitic and metasedimentary gneisses occurring around Nagavalli Shear Zone (NSZ) preserve complex metamorphic and deformation history. Thinly laminated discontinuous banding of quartzofeldspathic layer (S 1 ) in the migmatites is the product of first incipie...

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Published inJournal of Earth System Science Vol. 124; no. 4; pp. 707 - 727
Main Authors Saha, Tamoghna, Karmakar, Subrata
Format Journal Article
LanguageEnglish
Published New Delhi Springer India 01.06.2015
Springer Nature B.V
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Abstract Megacrystic granitoids associated with migmatitic and metasedimentary gneisses occurring around Nagavalli Shear Zone (NSZ) preserve complex metamorphic and deformation history. Thinly laminated discontinuous banding of quartzofeldspathic layer (S 1 ) in the migmatites is the product of first incipient melting during prograde M 1 –D 1 tectonothermal event. Peak M 2 –D 2 event is manifested by the development of S 2 gneissic foliation in all rocks, which is axial planar to rootless folds on S 1 . Porphyroblastic garnet mantled by leucosomal melt fraction in granitoids, suggest that the rock suffered peak granulite facies metamorphism along with host migmatitic gneisses. The subsequent D 3 event deforms differently the massive granitoids and the migmatitic granulite gneisses. The D 4 deformation acted as transpression with broad northwest–southeast compression that develops strong discontinuous regional-scale anastomosing shear zones transecting the earlier gneissosity (S 2 ) in the granitoids with prominent sinistral shear sense. It deforms the axial plane of regional folds in migmatites and develops superposed non-plane non-cylindrical folds in outcrop to regional scale. Thus we infer megacrystic granitoids were possibly emplaced in pre- to syn-peak metamorphic event within the host granulites. Granitoids and associated migmatitic gneisses of Late Meso- to Neoproterozoic age suffered subsequent petrotectonic events followed by a sinistral transpression acted along NSZ.
AbstractList Megacrystic granitoids associated with migmatitic and metasedimentary gneisses occurring around Nagavalli Shear Zone (NSZ) preserve complex metamorphic and deformation history. Thinly laminated discontinuous banding of quartzofeldspathic layer (S1) in the migmatites is the product of first incipient melting during prograde M1–D1 tectonothermal event. Peak M2–D2 event is manifested by the development of S2 gneissic foliation in all rocks, which is axial planar to rootless folds on S1. Porphyroblastic garnet mantled by leucosomal melt fraction in granitoids, suggest that the rock suffered peak granulite facies metamorphism along with host migmatitic gneisses. The subsequent D3 event deforms differently the massive granitoids and the migmatitic granulite gneisses. The D4 deformation acted as transpression with broad northwest–southeast compression that develops strong discontinuous regional-scale anastomosing shear zones transecting the earlier gneissosity (S2) in the granitoids with prominent sinistral shear sense. It deforms the axial plane of regional folds in migmatites and develops superposed non-plane non-cylindrical folds in outcrop to regional scale. Thus we infer megacrystic granitoids were possibly emplaced in pre- to syn-peak metamorphic event within the host granulites. Granitoids and associated migmatitic gneisses of Late Meso- to Neoproterozoic age suffered subsequent petrotectonic events followed by a sinistral transpression acted along NSZ.
Megacrystic granitoids associated with migmatitic and metasedimentary gneisses occurring around Nagavalli Shear Zone (NSZ) preserve complex metamorphic and deformation history. Thinly laminated discontinuous banding of quartzofeldspathic layer (S 1 ) in the migmatites is the product of first incipient melting during prograde M 1 –D 1 tectonothermal event. Peak M 2 –D 2 event is manifested by the development of S 2 gneissic foliation in all rocks, which is axial planar to rootless folds on S 1 . Porphyroblastic garnet mantled by leucosomal melt fraction in granitoids, suggest that the rock suffered peak granulite facies metamorphism along with host migmatitic gneisses. The subsequent D 3 event deforms differently the massive granitoids and the migmatitic granulite gneisses. The D 4 deformation acted as transpression with broad northwest–southeast compression that develops strong discontinuous regional-scale anastomosing shear zones transecting the earlier gneissosity (S 2 ) in the granitoids with prominent sinistral shear sense. It deforms the axial plane of regional folds in migmatites and develops superposed non-plane non-cylindrical folds in outcrop to regional scale. Thus we infer megacrystic granitoids were possibly emplaced in pre- to syn-peak metamorphic event within the host granulites. Granitoids and associated migmatitic gneisses of Late Meso- to Neoproterozoic age suffered subsequent petrotectonic events followed by a sinistral transpression acted along NSZ.
Author Saha, Tamoghna
Karmakar, Subrata
Author_xml – sequence: 1
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  surname: Saha
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  surname: Karmakar
  fullname: Karmakar, Subrata
  email: subrata.jugeol@gmail.com
  organization: Department of Geological Sciences, Jadavpur University
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Keywords tectonothermal events
transpression
Granitoids
Nagavalli Shear Zone (NSZ)
peak metamorphism
sinistral shear
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  ident: 579_CR18
  publication-title: Lithos
  doi: 10.1016/j.lithos.2012.11.005
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Snippet Megacrystic granitoids associated with migmatitic and metasedimentary gneisses occurring around Nagavalli Shear Zone (NSZ) preserve complex metamorphic and...
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SubjectTerms Earth and Environmental Science
Earth Sciences
Granular materials
Metamorphic rocks
Metamorphism
Minerals
Orogeny
Rocks
Sedimentary geology
Shear strength
Space Exploration and Astronautics
Space Sciences (including Extraterrestrial Physics
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Title Petrotectonic framework of granitoids and associated granulites at Nagavalli Shear Zone (NSZ), Eastern Ghats Belt: Evidence of a late transpression orogeny
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