Lithotectonic And Metallogenic Synthesis Of The New Quebec Orogen Labrador Trough PDF Download

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Dyke Swarms - Time Markers of Crustal Evolution

Dyke Swarms - Time Markers of Crustal Evolution
Author: E. Hanski
Publisher: CRC Press
Total Pages: 282
Release: 2006-09-28
Genre: Science
ISBN: 1000006719

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Dyke swarms are remnants of large igneous provinces, and are pointers of continental break-up events, as well as indicators for ancient continental reconstructions. These global geodynamic aspects are of crucial significance in tectonics, and with recent developments in high-precision age, dating it has become possible to enter these short-lived ma


Petrology, Geochemistry and Evolution of the Labrador Trough Basaltic Suite, Labrador and New Quebec

Petrology, Geochemistry and Evolution of the Labrador Trough Basaltic Suite, Labrador and New Quebec
Author: Jonathan Findlay
Publisher:
Total Pages: 0
Release: 1996
Genre:
ISBN:

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The central Labrador Trough is an Early Proterozoic volcano-sedimentary succession which preserves the remnants of a major magmatic province, the Labrador Trough Basaltic Suite (LTBS). The Menihek gabbros, which are distinctive members of the LTBS, form a sill-sediment complex with turbidites of the Menihek Formation. The Menihek gabbros often exhibit spectacular plagioclase glomeroporphyritic textures. Tholeiitic basalts of the LTBS (Le Fer and upper Menihek/Willbob basalts) exhibit many textural and geochemical similarities, despite a difference of $\sim$260 Ma in the ages of the two principal suites. The alkaline rocks of the LTBS (Nimish, lower Menihek and lower Murdoch basalts) exhibit strong compositional diversity, and it is probable that variations in mantle source composition and/or melting depths, crustal assimilation, fractional crystallization and post-crystallization processes influenced the geochemistries of these suites. The Nimish and lower Menihek basalts exhibit extended trace element patterns which indicate that their parental melts were derived primarily from a relatively undepleted mantle reservoir, but with variable contributions from a depleted source. The stratigraphic and geochemical characteristics of the LTBS suggest that magmatism accompanied crustal extension and formation of pull-apart basins on the thinned margin of the Superior craton. Initial cycle 1 sedimentation ($>$2169 Ma) was fluviatile and accompanied by localized alkaline volcanism, but subsequent subsidience and marine transgression led to deposition of shallow to deep water sediments, culminating with the Le Fer turbidites. Magmatic activity and sedimentation continued until at least 2142 Ma, at which point crustal extension and basin subsidence ceased, sedimentation was interrupted, and in places pre-existing strata were eroded. Crustal attenuation and basin subsidence again led to a transgressive marine sequence, culminating with the Menihek turbidites. Alkaline volcanism of the Nimish and lower Menihek formations accompanied early cycle 2 sedimentation, while turbidite deposition was accompanied by tholeiitic volcanism in the axial regions of the basin (Doublet terrane) and by emplacement of numerous gabbro sills in flanking regions (Howse zone). The Superior craton is likely to have formed the basement to the Labrador Trough succession throughout most of its evolution, but the eruption of late high-Mg basalts in the Doublet terrane, coupled with the emplacement of high-Mg magmas as sills, may record the late rupture of the continental crust. The continental crust thus acted as a density barrier to primitive partial melts until late in the evolutionary history of the Labrador Trough. The transition from alkaline to tholeiitic magmatism in each volcano-sedimentary cycle is thought to reflect progressive increases in the degree of decompressive partial melting in the upwelling, heterogeneous asthenospheric mantle during crustal attenuation. (Abstract shortened by UMI.).


Structure and Tectonics of the Indian Continental Crust and Its Adjoining Region

Structure and Tectonics of the Indian Continental Crust and Its Adjoining Region
Author: Harish C Tewari
Publisher: Elsevier
Total Pages: 268
Release: 2018-02-07
Genre: Science
ISBN: 0128136863

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Structure and Tectonics of the Indian Continental Crust and Its Adjoining Region: Deep Seismic Studies, Second Edition, collates essential data from seismic studies of Earth’s crust across India, offering an essential understanding of the tectonic development of the Indian subcontinent. Seismic studies have been carried out in various parts of India since 1972, recording crust-related seismic data for determination of velocity-depth configuration and determination of structural patterns. The book examines the details of these studies, including their synthesis and global applications. The book presents both background and applications in one cohesive volume for researchers and students of geophysics and geology. Presents all the information and metadata of the Indian continental crust and its neighbouring regions in a cohesive way Provides basic knowledge of the Indian subcontinent to support the discussion of seismic studies related to crustal structure Includes all new chapter covering global applications and synthesis of the findings and observations


Earth Accretionary Systems in Space and Time

Earth Accretionary Systems in Space and Time
Author: Peter Anthony Cawood
Publisher: Geological Society of London
Total Pages: 430
Release: 2009
Genre: Science
ISBN: 9781862392786

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Accretionary orogens form at convergent plate boundaries and include the supra-subduction zone forearc, magmatic arc and backarc components. They can be broken into retreating and advancing types, based on their kinematic framework and resulting geological character.Accretionary systems have been active throughout Earth history, extending back until at least 3.2 Ga, and provide an important constraint on the initiation of horizontal motion of lithospheric plates on Earth. Accretionary orogens have been responsible for major growth of the continental lithosphere, through the addition of juvenile magmatic products, but are also major sites of consumption and reworking of continental crust through time.The aim of this volume is to provide a better understanding of accretionary processes and their role in the formation and evolution of the continental crust. Fourteen papers deal with general aspects of accretion and metamorphism and discuss examples of accretionary orogens and crustal growth through Earth history, from the Archaean to the Cenozoic.


Geodynamics of the Indian Plate

Geodynamics of the Indian Plate
Author: Neal Gupta
Publisher: Springer Nature
Total Pages: 574
Release: 2020-02-28
Genre: Science
ISBN: 3030159892

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This book provides insights on new geological, tectonic, and climatic developments in India through a time progression from the Archean to the Anthropocene that are captured via authoritative entries from experts in earth sciences. This volume aims to bring graduate students and researchers up to date on the geodynamic evolution of the Indian Plate; concepts that have so far resulted in a rather uneven treatment of the subject at different institutions. The book is divided into 4 sections and includes perspectives such as the formation and evolution of the Indian crust in comparison to its neighbors such as Antarctica, Africa and Australia; the evolution of Precambrian cratons and sedimentary basins of India; and a summary account of early life reported in the Indian stratigraphic record. Readers will also discover the key recent research into the neotectonics, tectonic geomorphology, and paleoseismology of the Himalayan Front. Researchers and students in geology, earth sciences, sedimentology, paleobiology and geography will find this book appealing.


Economic Geology

Economic Geology
Author: Jeffrey W. Hedenquist
Publisher:
Total Pages: 0
Release: 2005
Genre:
ISBN: 9781887483018

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Geology of Southwest Gondwana

Geology of Southwest Gondwana
Author: Siegfried Siegesmund
Publisher: Springer
Total Pages: 700
Release: 2018-02-02
Genre: Science
ISBN: 3319689207

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This book focuses on the geological evolution of Southwest (SW) Gondwana and presents state-of-the-art insights into its evolution. It addresses the diachronic assembly of continental fragments derived from the break-up of the Rodinia supercontinent later amalgamated to build SW Gondwana during the Neoproterozoic–Cambrian transition, which on a global scale includes parts of present-day South America, Africa and Madagascar. The book presents 24 state-of-the-art reviews including the most crucial controversies. Most experienced scientists about the geology of SW Gondwana from Europe, Africa, South America and Australia present contributions on key areas addressing the interactions between the main cratons and fold belts on both sides of the South Atlantic Ocean. Chapters related to the geology of the major Archean- Paleoproterozoic cratons and Neoproterozoic Brasiliano/Pan-African fold belts enable readers to gain an in-depth understanding of the tectonometamorphic and magmatic evolution of SW Gondwana. The book covers a wide range of issues including metallogenetic, sedimentary, paleobiological and paleoclimatic processes and allows a deep insight into this key period of the Earth’s evolution.