Passive Seismic Monitoring of Induced Seismicity: Fundamental Principles and Application to Energy Technologies
The past few decades have witnessed remarkable growth in the application of passive seismic monitoring to address a range of problems in geoscience and engineering, from large-scale tectonic studies to environmental investigations. Passive seismic methods are increasingly being used for surveillance of massive, multi-stage hydraulic fracturing and development of enhanced geothermal systems. The theoretical framework and techniques used in this emerging area draw on various established fields, such as earthquake seismology, exploration geophysics and rock mechanics. Based on university and industry courses developed by the author, this book reviews all the relevant research and technology to provide an introduction to the principles and applications of passive seismic monitoring. It integrates up-to-date case studies and interactive online exercises, making it a comprehensive and accessible resource for advanced students and researchers in geophysics and engineering, as well as industry practitioners.
1133679889
Passive Seismic Monitoring of Induced Seismicity: Fundamental Principles and Application to Energy Technologies
The past few decades have witnessed remarkable growth in the application of passive seismic monitoring to address a range of problems in geoscience and engineering, from large-scale tectonic studies to environmental investigations. Passive seismic methods are increasingly being used for surveillance of massive, multi-stage hydraulic fracturing and development of enhanced geothermal systems. The theoretical framework and techniques used in this emerging area draw on various established fields, such as earthquake seismology, exploration geophysics and rock mechanics. Based on university and industry courses developed by the author, this book reviews all the relevant research and technology to provide an introduction to the principles and applications of passive seismic monitoring. It integrates up-to-date case studies and interactive online exercises, making it a comprehensive and accessible resource for advanced students and researchers in geophysics and engineering, as well as industry practitioners.
66.99 In Stock
Passive Seismic Monitoring of Induced Seismicity: Fundamental Principles and Application to Energy Technologies

Passive Seismic Monitoring of Induced Seismicity: Fundamental Principles and Application to Energy Technologies

by David W. Eaton
Passive Seismic Monitoring of Induced Seismicity: Fundamental Principles and Application to Energy Technologies

Passive Seismic Monitoring of Induced Seismicity: Fundamental Principles and Application to Energy Technologies

by David W. Eaton

eBook

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Overview

The past few decades have witnessed remarkable growth in the application of passive seismic monitoring to address a range of problems in geoscience and engineering, from large-scale tectonic studies to environmental investigations. Passive seismic methods are increasingly being used for surveillance of massive, multi-stage hydraulic fracturing and development of enhanced geothermal systems. The theoretical framework and techniques used in this emerging area draw on various established fields, such as earthquake seismology, exploration geophysics and rock mechanics. Based on university and industry courses developed by the author, this book reviews all the relevant research and technology to provide an introduction to the principles and applications of passive seismic monitoring. It integrates up-to-date case studies and interactive online exercises, making it a comprehensive and accessible resource for advanced students and researchers in geophysics and engineering, as well as industry practitioners.

Product Details

ISBN-13: 9781108596664
Publisher: Cambridge University Press
Publication date: 04/26/2018
Sold by: Barnes & Noble
Format: eBook
File size: 13 MB
Note: This product may take a few minutes to download.

About the Author

David W. Eaton is a Professor of Geophysics in the University of Calgary's Department of Geoscience where he served as Department Head from 2007 to 2012. He is presently co-director of the Microseismic Industry Consortium, a novel initiative dedicated to the advancement of research, education and technological innovations in microseismic methods and their practical applications for resource development. His current research is focused on microseismic monitoring and induced seismicity, intraplate earthquake swarms, and the lithosphere-asthenosphere boundary beneath continents.

Table of Contents

Preface; List of symbols; Part I. Fundamentals of Passive Seismic Monitoring: 1. Constitutive relations and elastic deformation; 2. Failure criteria and anelastic deformation; 3. Seismic waves and sources; 4. Stress measurement and hydraulic fracturing; Part II. Applications of Passive Seismic Monitoring: 5. Passive-seismic data acquisition; 6. Downhole microseismic processing; 7. Surface and shallow-array microseismic processing; 8. Microseismic interpretation; 9. Induced seismicity; Appendix A. Glossary; Appendix B. Signal-processing essentials; Appendix C. Data formats; References; Index.
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