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Theoretical Mantle Dynamics

Theoretical Mantle Dynamics
Author: Neil M. Ribe
Publisher: Cambridge University Press
Total Pages: 331
Release: 2018-10-04
Genre: Science
ISBN: 131680061X

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Geodynamics is the study of the deformation and flow of the solid Earth and other planetary interiors. Focusing on the Earth's mantle, this book provides a comprehensive, mathematically advanced treatment of the continuum mechanics of mantle processes and the craft of formulating geodynamical models to approximate them. Topics covered include slow viscous flow, elasticity and viscoelasticity, boundary-layer theory, long-wave theories including lubrication theory and shell theory, two-phase flow, and hydrodynamic stability and thermal convection. A unifying theme is the utility of powerful general methods (dimensional analysis, scaling analysis, and asymptotic analysis) that can be applied in many specific contexts. Featuring abundant exercises with worked solutions for graduate students and researchers, this book will make a useful resource for Earth scientists and applied mathematicians with an interest in mantle dynamics and geodynamics more broadly.


Theoretical Mantle Dynamics

Theoretical Mantle Dynamics
Author: Neil M. Ribe
Publisher: Cambridge University Press
Total Pages: 331
Release: 2018-10-04
Genre: Science
ISBN: 1107174465

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Comprehensive, mathematically advanced treatment of the continuum mechanics of the Earth's mantle and the geodynamic models used to investigate it.


Mantle Convection

Mantle Convection
Author: W. R. Peltier
Publisher: CRC Press
Total Pages: 902
Release: 1989
Genre: Science
ISBN: 9780677221205

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A text which details the most important advance in earth sciences since the emergence of plate tectonics in the 1960s. Armed with the new techniques of seismic tomography, nine leading scientists in geophysical research present an experimental and theoretical description of the dynamics of the Earth's mantle. What emerges is a coherent modern theory of mantle convection leading to a greater understanding of both surface motions and large-scale structure of the Earth's interior.


Treatise on Geophysics, Volume 7

Treatise on Geophysics, Volume 7
Author: David Bercovici
Publisher: Elsevier
Total Pages: 521
Release: 2010-05-17
Genre: Science
ISBN: 0444535802

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Treatise on Geophysics: Mantle Dynamics, Volume 7 aims to provide both a classical and state-of-the-art introduction to the methods and science of mantle dynamics, as well as survey leading order problems (both solved and unsolved) and current understanding of how the mantle works. It is organized around two themes: (1) how is mantle convection studied; and (2) what do we understand about mantle dynamics to date. The first four chapters are thus concerned with pedagogical reviews of the physics of mantle convection; laboratory studies of the fluid dynamics of convection relevant to the mantle; theoretical analysis of mantle dynamics; and numerical analysis and methods of mantle convection. The subsequent chapters concentrate on leading issues of mantle convection itself, which include the energy budget of the mantle; the upper mantle and lithosphere in and near the spreading center (mid-ocean ridge) environment; the dynamics of subducting slabs; hot spots, melting anomalies, and mantle plumes; and finally, geochemical mantle dynamics and mixing. Self-contained volume starts with an overview of the subject then explores each topic in detail Extensive reference lists and cross references with other volumes to facilitate further research Full-color figures and tables support the text and aid in understanding Content suited for both the expert and non-expert


Mantle Dynamics

Mantle Dynamics
Author: David Bercovici
Publisher: Elsevier Science Limited
Total Pages: 505
Release: 2009
Genre: Science
ISBN: 9780444534569

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Treatise on Geophysics: Mantle Dynamics, Volume 7 aims to provide both a classical and state-of-the-art introduction to the methods and science of mantle dynamics, as well as survey leading order problems (both solved and unsolved) and current understanding of how the mantle works. It is organized around two themes: (1) how is mantle convection studied; and (2) what do we understand about mantle dynamics to date. The first four chapters are thus concerned with pedagogical reviews of the physics of mantle convection; laboratory studies of the fluid dynamics of convection relevant to the mantle; theoretical analysis of mantle dynamics; and numerical analysis and methods of mantle convection. The subsequent chapters concentrate on leading issues of mantle convection itself, which include the energy budget of the mantle; the upper mantle and lithosphere in and near the spreading center (mid-ocean ridge) environment; the dynamics of subducting slabs; hot spots, melting anomalies, and mantle plumes; and finally, geochemical mantle dynamics and mixing. Self-contained volume starts with an overview of the subject then explores each topic in detail Extensive reference lists and cross references with other volumes to facilitate further research Full-color figures and tables support the text and aid in understanding Content suited for both the expert and non-expert


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.


Mantle Convection for Geologists

Mantle Convection for Geologists
Author: Geoffrey F. Davies
Publisher: Cambridge University Press
Total Pages: 241
Release: 2011-02-03
Genre: Science
ISBN: 1139496182

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Mantle convection is the fundamental agent driving many of the geological features observed at the Earth's surface, including plate tectonics and plume volcanism. Yet many Earth scientists have an incomplete understanding of the process. This book describes the physics and fluid dynamics of mantle convection, explaining what it is, how it works, and how to quantify it in simple terms. It assumes no specialist background: mechanisms are explained simply and the required basic physics is fully reviewed and explained with minimal mathematics. The distinctive forms that convection takes in the Earth's mantle are described within the context of tectonic plates and mantle plumes, and implications are explored for geochemistry and tectonic evolution. Common misconceptions and controversies are addressed - providing a straightforward but rigorous explanation of this key process for students and researchers across a variety of geoscience disciplines.


Encyclopedia of Solid Earth Geophysics

Encyclopedia of Solid Earth Geophysics
Author: Harsh Gupta
Publisher: Springer Science & Business Media
Total Pages: 1579
Release: 2011-06-29
Genre: Science
ISBN: 904818701X

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The past few decades have witnessed the growth of the Earth Sciences in the pursuit of knowledge and understanding of the planet that we live on. This development addresses the challenging endeavor to enrich human lives with the bounties of Nature as well as to preserve the planet for the generations to come. Solid Earth Geophysics aspires to define and quantify the internal structure and processes of the Earth in terms of the principles of physics and forms the intrinsic framework, which other allied disciplines utilize for more specific investigations. The first edition of the Encyclopedia of Solid Earth Geophysics was published in 1989 by Van Nostrand Reinhold publishing company. More than two decades later, this new volume, edited by Prof. Harsh K. Gupta, represents a thoroughly revised and expanded reference work. It brings together more than 200 articles covering established and new concepts of Geophysics across the various sub-disciplines such as Gravity, Geodesy, Geomagnetism, Seismology, Seismics, Deep Earth Processes, Plate Tectonics, Thermal Domains, Computational Methods, etc. in a systematic and consistent format and standard. It is an authoritative and current reference source with extraordinary width of scope. It draws its unique strength from the expert contributions of editors and authors across the globe. It is designed to serve as a valuable and cherished source of information for current and future generations of professionals.


Geodynamics of Lithosphere & Earth’s Mantle

Geodynamics of Lithosphere & Earth’s Mantle
Author: Jaroslava Plomerova
Publisher: Birkhäuser
Total Pages: 496
Release: 2012-12-06
Genre: Science
ISBN: 3034887779

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Plate tectonics has significantly broadened our view of the dynamics of continental evolution, involving both the processes currently active at the surface and those extending deep into the interior of the Earth. Seismic anisotropy provides some of the most diagnostic evidence for mapping past and present deformation of the entire crustmantle system. This volume contains papers presented originally at an international workshop at the Chateau of Trest in the Czech Republic in 1996. This workshop brought together geophysicists and geologists who work in the field of observational and theoretical seismology, mineral and rock physics, gravity studies and geodynamic modelling. Topics include large-scale anisotropy of the Earth's mantle, mantle heterogeneity vs. anisotropy 3-D velocity and density structures and inferences on mantle dynamics, mineral and rock physics studies, and mathematical aspects of complex wave propagation.


Geophysical Constraints on Mantle Dynamics

Geophysical Constraints on Mantle Dynamics
Author: Giovanni Pari
Publisher:
Total Pages: 0
Release: 1997
Genre:
ISBN:

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This thesis contains a study of four geophysical fields intimately related to the general convective circulation within Earth's mantle. Detailed investigations of the geoid, the free-air gravity anomaly, and for the first time, of the radial component of heat advection and the pattern of surface heat flux anomalies, are presented within the framework of an anelastically compressible internal loading theory. Recent global tomographic models of shear-wave velocity heterogeneity are employed to define the three-dimensional field of mantle buoyancy sources which drive the flow. Theoretical predictions of the longest wavelength components of these geodynamical fields are compared to observations in order to constrain mantle properties such as viscosity, as well as to interpret large scale features of the convective circulation. The nonhydrostatic geoid is found to provide useful constraints on the depth-dependence of mantle viscosity. The class of viscosity profiles that is inferred on this basis is shown to also allow a description of postglacial rebound data and the average heat flow at Earth's surface. A detailed investigation of the depth profile of heat advection is presented and the usefulness of this profile to probe for thermal boundary layers is discussed. A method to compute the pattern of surface heat flux anomalies within the internal loading formalism is proposed. It is shown that optimal descriptions of the long-wavelength components of this field are obtained within the framework of a layered-mantle theory. This is contrasted with the gravity field which is shown to be best reconciled within the context of the whole-mantle circulation theory. A synthesis of these results suggests that it is not currently possible to deduce whether the radial style of the mantle general circulation is whole-mantle or layered at the depth of 670 km seismic discontinuity. The free-air gravity field is employed to constrain the nature of the deep, subcontinental mantle. On this basis, it is demonstrated that the hypothesis that seismically fast, subcontinental features may be the reflection of chemically distinct and anomalously light material is rejected in favor of the alternative hypothesis in which the subcontinental mantle is composed of anomalous dense, downwelling material.