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Exploring the Rheological Properties of the Upper Mantle

Exploring the Rheological Properties of the Upper Mantle
Author: Kathryn M. Kumamoto
Publisher:
Total Pages:
Release: 2018
Genre:
ISBN:

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The ductile deformation and flow of the upper mantle controls a wide variety of geologic phenomena, including the flexure of plates below glaciers, the formation of new plate boundaries, and the movement of tectonic plates. Olivine, the main mineral of the upper mantle, controls mantle deformation behavior, responding differently to applied stresses depending on the deformation conditions (including temperature, pressure, and composition). This dissertation provides constraints on the rheological properties of the Earth's upper mantle across multiple deformation regimes. In Chapter 1, I use nanoindentation experiments to show that the strength of olivine deforming at low temperatures and high stresses is controlled by its grain size, with smaller grains being stronger than larger grains. As the lithospheric mantle has a relatively large grain size, the mantle is likely weaker than many previous studies have suggested. Deformation throughout the lithosphere is sensitive to small concentrations of water, down to the parts per million level in olivine. Chapter 2 contains a comprehensive description of the methodology necessary for measuring water in the nominally anhydrous minerals of the upper mantle: olivine, orthopyroxene, and clinopyroxene. Using this methodology, I measured water in samples from ductile shear zones in the Josephine Peridotite. In Chapter 3, I examine the relationship between water content and the lattice preferred orientation (LPO) of olivine. Previous experiments found that olivine LPO, and thus the dominant active slip system, changes with increasing water content. However, my measurements suggest that the olivine LPO in the shear zones does not vary as a function of water content, and I use micromechanical modeling to show that deformation kinematics can drive the observed LPO changes. Chapter 4 then examines the role of water in shear localization in the same set of shear zones. While water concentrations are elevated relative to other peridotite settings like mid-ocean ridges, my geochemical data indicate that melt was the initial factor that led to shear localization.


Experimental Constraints on the Rheological Behavior of Olivine at Upper Mantle Conditions

Experimental Constraints on the Rheological Behavior of Olivine at Upper Mantle Conditions
Author: Nathaniel Adams Dixon
Publisher:
Total Pages: 125
Release: 2014
Genre:
ISBN:

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Since the discovery of plate tectonics, geophysicists have sought to understand the dynamic system driving the evolution of the earth, both at the surface and in the deep interior. While the deep earth contains far fewer phases than the crust, the inaccessibility of the mantle and core present a different challenge: unraveling the physical behavior of materials at conditions beyond our intuitive, observational, and experimental grasp. Among the most persistent of problems has been determining the influence of pressure on the mechanical behavior of deep rocks. Deformation experiments have typically been limited by equipment capabilities to only a tiny fraction of the pressure of the deep mantle, and thus our understanding pressure effect on rock strength has remained insufficient to precisely model the convection of the mantle at large scales in time and space. In the last decade, a promising new campaign in mantle rheology has been waged with two powerful emerging technologies: synchrotron x-ray diffraction, and complementary multi-anvil deformation machines. These advancements have allowed precisely controlled deformation experiments at conditions representative of the deep upper mantle, with unprecedented measurement precision. Here I present a detailed experimental study of the behavior of olivine at upper mantle conditions. Among the results is evidence of a significant pressure effect on the strength of olivine (an activation volume of 14 ± 3 cm3/mol), as well as pioneering in situ measurements of fabric development, slip system transitions, and stress heterogeneity.


Gravity and Magnetic Exploration

Gravity and Magnetic Exploration
Author: William J. Hinze
Publisher: Cambridge University Press
Total Pages: 527
Release: 2013-03-14
Genre: Science
ISBN: 0521871018

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This combination of textbook and reference manual provides a comprehensive account of gravity and magnetic methods for exploring the subsurface using surface, marine, airborne and satellite measurements. It describes key current topics and techniques, physical properties of rocks and other Earth materials, and digital data analysis methods used to process and interpret anomalies for subsurface information. Each chapter starts with an overview and concludes by listing key concepts to consolidate new learning. An accompanying website presents problem sets and interactive computer-based exercises, providing hands-on experience of processing, modeling and interpreting data. A comprehensive online suite of full-color case histories illustrates the practical utility of modern gravity and magnetic surveys. This is an ideal text for advanced undergraduate and graduate courses and reference text for research academics and professional geophysicists. It is a valuable resource for all those interested in petroleum, engineering, mineral, environmental, geological and archeological exploration of the lithosphere.


Seismic Exploration of the Deep Continental Crust

Seismic Exploration of the Deep Continental Crust
Author: Dirk Gajewski
Publisher: Birkhäuser
Total Pages: 371
Release: 2012-12-06
Genre: Science
ISBN: 3034886705

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DEKORP, the German continental reflection seismic program, was the major focus of deep seismic research in Germany in the 1980s and 1990s. The seismic sections provided fundamental new insight into deep geological structure of the European continent and the dynamics of continental formation. They formed the basis for worldwide comparative studies of orogenic structure. The complicated signature of the reflections from the deep crust indicated that new processing and interpretation techniques must be considered to better image the crystalline crust. Results of these efforts, including pre-stack migration, 3-D imaging, shear waves and seismic anisotropy, are presented in this special volume. In part, the articles open the perspective to new and future research. In part, they document research activity triggered by technical and interpretational questions raised by DEKORP field work and profiling results. Many of the presented methods can find immediate application in industrial seismic prospecting.


The Web of Geological Sciences

The Web of Geological Sciences
Author: Marion Eugene Bickford
Publisher: Geological Society of America
Total Pages: 620
Release: 2013
Genre: Science
ISBN: 0813725003

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"This volume covers many of the important advances in the geological sciences from 1963 to 2013. These advances include understanding plate tectonics, exploration of the Moon and Mars, development of new computing and analytical technologies, understanding of the role of microbiology in geologic processes, and many others"--Provided by publisher.


Dynamics of Plate Tectonics and Mantle Convection

Dynamics of Plate Tectonics and Mantle Convection
Author: Joao Duarte
Publisher: Elsevier
Total Pages: 610
Release: 2023-02-10
Genre: Science
ISBN: 0323885861

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Dynamics of Plate Tectonics and Mantle Convection, written by specialists in the field, gathers state-of-the-art perspectives on the dynamics of plate tectonics and mantle convection. Plate tectonics is a unifying theory of solid Earth sciences. In its initial form, it was a kinematic theory that described how the planet’s surface is fragmented into several rigid lithospheric plates that move in relation to each other over the less viscous asthenosphere. Plate tectonics soon evolved to describe the forces that drive and resist plate movements. The Earth sciences community is now developing a new perspective that looks at plate tectonics and mantle convection as part of a single system. Why does our planet have plate tectonics, and how does it work? How does mantle convection drive the supercontinent cycle? How have tectono-convective modes evolved over the Earth’s history? How did they shape the planet and impact life? Do other planets have mantle convection and tectonics? These are some of the fascinating questions explored in this book. This book started with a challenge from the editor to the authors to provide perspectives from their vantage point and open the curtain to the endeavors and stories behind the science. Provides diverse perspectives from different experts around the world in plate tectonics and geodynamics Includes the most up-to-date knowledge on plate tectonics and mantle convection Sets the scene for the developments and challenges likely to be faced by researchers in the future of geodynamics


The Earth's Crust and Upper Mantle

The Earth's Crust and Upper Mantle
Author: Pembroke J. Hart
Publisher: American Geophysical Union
Total Pages: 801
Release: 1969
Genre: Science
ISBN: 0875900135

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Mantle Convection and Surface Expressions

Mantle Convection and Surface Expressions
Author: Hauke Marquardt
Publisher: John Wiley & Sons
Total Pages: 32
Release: 2021-07-07
Genre: Science
ISBN: 1119528615

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A multidisciplinary perspective on the dynamic processes occurring in Earth's mantle The convective motion of material in Earth's mantle, powered by heat from the deep interior of our planet, drives plate tectonics at the surface, generating earthquakes and volcanic activity. It shapes our familiar surface landscapes, and also stabilizes the oceans and atmosphere on geologic timescales. Mantle Convection and Surface Expressions brings together perspectives from observational geophysics, numerical modelling, geochemistry, and mineral physics to build a holistic picture of the deep Earth. It explores the dynamic processes occurring in the mantle as well as the associated heat and material cycles. Volume highlights include: Perspectives from different scientific disciplines with an emphasis on exploring synergies Current state of the mantle, its physical properties, compositional structure, and dynamic evolution Transport of heat and material through the mantle as constrained by geophysical observations, geochemical data and geodynamic model predictions Surface expressions of mantle dynamics and its control on planetary evolution and habitability The American Geophysical Union promotes discovery in Earth and space science for the benefit of humanity. Its publications disseminate scientific knowledge and provide resources for researchers, students, and professionals.