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The Self-Potential Method

The Self-Potential Method

The Self-Potential Method

Theory and Applications in Environmental Geosciences
André Revil, Colorado School of Mines
Abderrahim Jardani, Université de Rouen
March 2018
Available
Paperback
9781108445788

    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.

    • Provides a cutting-edge view of the self-potential method and its application to Earth science problems
    • Online datasets enable readers to practise the theory, and accompanying software can be used to analyse newly-collected data

    Product details

    March 2018
    Paperback
    9781108445788
    399 pages
    246 × 170 × 23 mm
    0.82kg
    190 b/w illus. 30 colour illus. 12 tables 16 exercises
    Available

    Table of Contents

    • Foreword
    • Preface
    • 1. Fundamentals of the self-potential method
    • 2. Development of a fundamental theory
    • 3. Laboratory investigations
    • 4. Forward and inverse modeling
    • 5. Applications to geohazards
    • 6. Application to water resources
    • 7. Application to hydrothermal systems
    • 8. Seismoelectric coupling
    • Appendix A: a simple model of the Stern layer
    • Appendix B: the u-p formulation of poroelasticity
    • References
    • Index.
    Resources for
    Type
    SPINV MATLAB code and datasets - rar version
    Size: 5.12 MB
    Type: application/rar
    Solutions to end-of-chapter exercises
    Size: 431.73 KB
    Type: application/pdf
    User Manual for SPINV MATLAB
    Size: 155.65 KB
    Type: application/pdf
    Tutorial for Self Potential data processing
    Size: 1.95 MB
    Type: application/pdf
    SPINV MATLAB code and datasets - zip version
    Size: 5.13 MB
    Type: application/zip
      Authors
    • André Revil , Colorado School of Mines

      André Revil is Associate Professor at the Colorado School of Mines and Directeur de Recherche at the National Centre for Scientific Research (CNRS) in France. His research focuses on the development of new methods in petrophysics, and the development of electrical geophysical methods applied to geothermal systems, water resources and oil and gas reservoirs. Dr Revil is presently Chief Editor of the Journal of Geophysical Research – Solid Earth, Associate Editor of the Vadose Zone Journal and editorial member of the International Journal of Mathematical Modelling and Numerical Optimization and has published 156 peer-reviewed papers. He received the Bronze Medal from the CNRS for outstanding research in 2003 and an award of excellence from the American Rock Mechanics Association (ARMA) in 2004.

    • Abderrahim Jardani , Université de Rouen

      Abderrahim Jardani is Associate Professor at the University of Rouen, where he also obtained his Ph.D. in geophysics in 2007. His research interests centre on environmental geophysics, mathematical modelling of hydrologic systems and inverse problems. Dr Jardani has authored twenty-seven peer-reviewed publications in the field of hydrogeophysics, especially in the theory of self-potential signals and its application to environmental problems. He is a member of the American Geophysical Union.