The Self-Potential Method

The Self-Potential Method

Author: André Revil

Publisher: Cambridge University Press

Published: 2013-07-11

Total Pages: 385

ISBN-13: 1107244714

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The self-potential method enables non-intrusive assessment and imaging of disturbances in electrical currents of conductive subsurface materials. It has an increasing number of applications, from mapping fluid flow in the subsurface of the Earth to detecting preferential flow paths in earth dams and embankments. This book provides the first full overview of the fundamental concepts of this method and its applications in the field. It discusses the historical perspective, laboratory investigations undertaken, the inverse problem and seismoelectric coupling, and concludes with the application of the self-potential method to geohazards, water resources and hydrothermal systems. Chapter exercises, online datasets and analytical software enable the reader to put the theory into practice. This book is a key reference for academic researchers and professionals working in the areas of geophysics, environmental science, hydrology and geotechnical engineering. It will also be valuable reading for related graduate courses.


Self-Potential Method: Theoretical Modeling and Applications in Geosciences

Self-Potential Method: Theoretical Modeling and Applications in Geosciences

Author: Arkoprovo Biswas

Publisher: Springer Nature

Published: 2021-08-21

Total Pages: 322

ISBN-13: 3030793338

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The book deals primarily with the aspects of advances in Self-Potential geophysical data modeling, different interpretation techniques, new ideas and an integrated study to delineate the subsurface structures associated with exploration, contamination, buried paleochannels, archaeological investigations, glaciology, geomorphology, subsurface mapping and also in hydrocarbon exploration.The book is specifically aimed with the state-of-art information regarding research advances and new development in these areas of study, coupled to extensive modelling and field investigations obtained from around the world. It is extremely enlightening for the students, research workers, scientists, faculty members in Applied Geophysics, Near Surface Geophysics, Potential field, Electrical and Electromagnetic methods, Mathematical Modeling Techniques in Earth Sciences, as well as Environmental and other practical problems associated with Earth Sciences.


Applied Hydrogeophysics

Applied Hydrogeophysics

Author: Harry Vereecken

Publisher: Springer Science & Business Media

Published: 2007-04-22

Total Pages: 391

ISBN-13: 1402049129

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This book focuses on the the application of hydrogeophysical methods to the understanding of hydrological processes and environmental problems dealing with the flow of water and the transport of solutes and contaminants. Taking a process-driven approach, the book offers a series of process-driven chapters, each authored by leading experts. Areas covered include: infiltration and solute transport processes, biogeochemical functioning of soil-water systems, coastal groundwater interactions, cold region hydrology, engineered barriers and landfill processes.


Resistivity and Induced Polarization

Resistivity and Induced Polarization

Author: Andrew Binley

Publisher: Cambridge University Press

Published: 2020-12-17

Total Pages: 409

ISBN-13: 1108492746

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A comprehensive text on resistivity and induced polarization covering theory and practice for the near-surface Earth supported by modelling software.


The Self-Potential Method

The Self-Potential Method

Author: André Revil

Publisher: Cambridge University Press

Published: 2013-07-11

Total Pages: 385

ISBN-13: 1107019273

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A key reference on the self-potential method for researchers, professionals and students in geophysics, environmental science, hydrology and geotechnical engineering.


Geophysical Potential Fields

Geophysical Potential Fields

Author: Lev Eppelbaum

Publisher: Elsevier

Published: 2019-07-19

Total Pages: 476

ISBN-13: 0128196467

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Geophysical Potential Fields: Geological and Environmental Applications, Volume Two, investigates the similarities and differences of potential geophysical fields, including gravity, magnetics, temperature, resistivity and self-potential, along with the influence of noise on these fields. As part of the Computational Geophysics series, this volume provides computational examples and methods for effectively solving geophysical problems in a full cycle manner. Including both quantitative and qualitative analysis, the book offers different filtering and transformation procedures, integrated analysis, and special interpretation methodologies, also presenting a developed 3D algorithm for combined modeling of gravity and magnetic fields in complex environments. The book also includes applications of the unified potential field system, such as studying deep structure, searching hydrocarbon and ore deposits, localizing buried water horizons and rockslide areas, tectono-structural mapping of water basins, and classifying archaeological targets. It is an ideal and unique resource for geophysicists, exploration geologists, archaeologists and environmental scientists.


Potential Theory in Gravity and Magnetic Applications

Potential Theory in Gravity and Magnetic Applications

Author: Richard J. Blakely

Publisher: Cambridge University Press

Published: 1996-09-13

Total Pages: 468

ISBN-13: 9780521575478

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This text bridges the gap between the classic texts on potential theory and modern books on applied geophysics. It opens with an introduction to potential theory, emphasising those aspects particularly important to earth scientists, such as Laplace's equation, Newtonian potential, magnetic and electrostatic fields, and conduction of heat. The theory is then applied to the interpretation of gravity and magnetic anomalies, drawing on examples from modern geophysical literature. Topics explored include regional and global fields, forward modeling, inverse methods, depth-to-source estimation, ideal bodies, analytical continuation, and spectral analysis. The book includes numerous exercises and a variety of computer subroutines written in FORTRAN. Graduate students and researchers in geophysics will find this book essential.


Near-Surface Applied Geophysics

Near-Surface Applied Geophysics

Author: Mark E. Everett

Publisher: Cambridge University Press

Published: 2013-04-25

Total Pages: 419

ISBN-13: 1107354978

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Just a few meters below the Earth's surface lie features of great importance, from geological faults which can produce devastating earthquakes, to lost archaeological treasures. This refreshing, up-to-date book explores the foundations of interpretation theory and the latest developments in near-surface techniques, used to complement traditional geophysical methods for deep-exploration targets. Clear but rigorous, the book explains theory and practice in simple physical terms, supported by intermediate-level mathematics. Techniques covered include magnetics, resistivity, seismic reflection and refraction, surface waves, induced polarization, self-potential, electromagnetic induction, ground-penetrating radar, magnetic resonance, interferometry, seismoelectric and more. Sections on data analysis and inverse theory are provided and chapters are illustrated by case studies, giving students and professionals the tools to plan, conduct and analyze a near-surface geophysical survey. This is an important textbook for advanced-undergraduate and graduate students in geophysics and a valuable reference for practising geophysicists, geologists, hydrologists, archaeologists, and civil and geotechnical engineers.


Building a Second Brain

Building a Second Brain

Author: Tiago Forte

Publisher: Simon and Schuster

Published: 2022-06-14

Total Pages: 272

ISBN-13: 1982167386

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"Building a second brain is getting things done for the digital age. It's a ... productivity method for consuming, synthesizing, and remembering the vast amount of information we take in, allowing us to become more effective and creative and harness the unprecedented amount of technology we have at our disposal"--