Details

Ductile Shear Zones


Ductile Shear Zones

From Micro- to Macro-scales
1. Aufl.

von: Soumyajit Mukherjee, Kieran F. Mulchrone

125,99 €

Verlag: Wiley-Blackwell
Format: EPUB
Veröffentl.: 08.10.2015
ISBN/EAN: 9781118844922
Sprache: englisch
Anzahl Seiten: 320

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Beschreibungen

The elucidation of the mechanisms and kinematics of shear zone deformation, at both local and regional scales, is the subject of a great deal of interest to scientists in the hydrocarbon industry, in seismology, and in structural geology more generally. This book comprises a collection of five theoretical and twelve regional contributions to the subject from a number of leading researchers in the field, with particular emphasis on work carried out in the Indian subcontinent. The book will be invaluable to advances students and researchers involved in the kinematics of shear.
<p>Contributors vii</p> <p>Acknowledgments ix</p> <p>Introduction x</p> <p><b>Part I: Theoretical Advances and New Methods</b></p> <p>1 From finite to incremental strain: Insights into heterogeneous shear zone evolution 3<br /><i>Stefano Vitale and Stefano Mazzoli</i></p> <p>2 How far does a ductile shear zone permit transpression? 14<br /><i>Sujoy Dasgupta, Nibir Mandal, and Santanu Bose</i></p> <p>3 2D model for development of steady?]state and oblique foliations in simple shear and more<br />general deformations 30<br /><i>Kieran F. Mulchrone, Patrick A. Meere, and Dave J. McCarthy</i></p> <p>4 Ductile deformation of single inclusions in simple shear with a finite?]strain hyperelastoviscoplastic rheology 46<br /><i>Christoph Eckart Schrank, Ali Karrech, David Alexandre Boutelier, and Klaus Regenauer?]Lieb</i></p> <p>5 Biviscous horizontal simple shear zones of concentric arcs (Taylor–Couette flow) with incompressible Newtonian rheology 59<br /><i>Soumyajit Mukherjee and Rakesh Biswas</i></p> <p><b>Part II: Examples from Regional Aspects</b></p> <p>6 Quartz?]strain?]rate?]metry (QSR), an efficient tool to quantify strain localization in the continental crust 65<br /><i>Emmanuelle Boutonnet and Phillipe?]Herve Leloup</i></p> <p>7 Thermal structure of shear zones from Ti?]in?]quartz thermometry of mylonites: Methods and example from the basal shear zone, northern Scandinavian Caledonides 93<br /><i>Andrea M. Wolfowicz, Matthew J. Kohn, and Clyde J. Northrup</i></p> <p>8 Brittle?]ductile shear zones along inversion?]related frontal and oblique thrust ramps: Insights from the Central–Northern Apennines curved thrust system (Italy) 111<br /><i>Paolo Pace, Fernando Calamita, and Enrico Tavarnelli</i></p> <p>9 Microstructural variations in quartzofeldspathic mylonites and the problem of vorticity analysis<br />using rotating porphyroclasts in the Phulad Shear Zone, Rajasthan, India 128<br /><i>Sudipta Sengupta and Sadhana M. Chatterjee</i></p> <p>10 Mineralogical, textural, and chemical reconstitution of granitic rock in ductile shear zones: A study from a part of the South Purulia Shear Zone, West Bengal, India 141<br /><i>Nandini Chattopadhyay, Sayan Ray, Sanjoy Sanyal, and Pulak Sengupta</i></p> <p>11 Reworking of a basement–cover interface during Terrane Boundary shearing: An example from the Khariar basin, Bastar craton, India 164<br /><i>Subhadip Bhadra and Saibal Gupta</i></p> <p>12 Intrafolial folds: Review and examples from the western Indian Higher Himalaya 182<br /><i>Soumyajit Mukherjee, Jahnavi Narayan Punekar, Tanushree Mahadani, and Rupsa Mukherjee</i></p> <p>13 Structure and Variscan evolution of Malpica–Lamego ductile shear zone (NW of Iberian Peninsula) 206<br /><i>Jorge Pamplona, Benedito C. Rodrigues, Sergio Llana?]Funez, Pedro Pimenta Simoes, Narciso Ferreira, Carlos Coke, Eurico Pereira, Paulo Castro, and Jose Rodrigues</i></p> <p>14 Microstructural development in ductile deformed metapelitic–metapsamitic rocks: A case study from the greenschist to granulite facies megashear zone of the Pringles Metamorphic Complex, Argentina 224<br /><i>Sergio Delpino, Marina Rueda, Ivana Urraza, and Bernhard Grasemann</i></p> <p>15 Strike–slip ductile shear zones in Thailand 250<br /><i>Pitsanupong Kanjanapayont</i></p> <p>16 Geotectonic evolution of the Nihonkoku Mylonite Zone of north central Japan based on geology, geochemistry, and radiometric ages of the Nihonkoku Mylonites: Implications for Cretaceous to Paleogene tectonics of the Japanese Islands 270<br /><i>Yutaka Takahashi</i></p> <p>17 Flanking structures as shear sense indicators in the Higher Himalayan gneisses near Tato, West Siang District, Arunachal Pradesh, India 293<br /><i>Tapos Kumar Goswami and Sukumar Baruah</i></p> <p>Index 302</p>
<b>Soumyajit Mukherjee</b> is a faculty member at the Indian Institute of Technology Bombay, India where he teaches structural geology and stratigraphy. He is an Associate Editor of the <i>International Journal of Earth Sciences</i>. He received the Hutchison Young Scientist Award from IUGS, and worked as a Guest Researcher at the Hans Ramberg Tectonic Lab, Uppsala University, Sweden. <br /><br /><b>Kieran F. Mulchrone</b> is a Senior Lecturer in the Department of Applied Mathematics, School of Mathematical Sciences, University College, Cork where he runs the M.Sc. in Mathematical Modelling and Scientific Computing. His research delves into the interface between structural geology and applied mathematics. He is an Associate Editor of the <i>Journal of Structural Geology</i>.
<p>The elucidation of the mechanisms and kinematics of shear zone deformation, at both local and regional scales, is the subject of a great deal of interest to scientists in the hydrocarbon industry, in seismology, and in structural geology more generally. This book comprises a collection of five theoretical and twelve regional contributions to the subject from a number of leading researchers in the field, with particular emphasis on work carried out in the Indian subcontinent. The book will be invaluable to advances students and researchers involved in the kinematics of shear.</p>

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