Overview
Is the first comprehensive monograph on multifaceted understanding of earthquake faulting coupled with fluid flow
Presents both experimental and theoretical views of earthquake faulting
Can be read by researchers who are not very familiar with this field but have some background in solid earth science
Includes supplementary material: sn.pub/extras
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Table of contents (6 chapters)
Keywords
About this book
This book furnishes state-of-the-art knowledge about how earthquake faulting is coupled with fluid flow. The authors describe the theoretical background of modeling of faulting coupled with fluid flow in detail. Field and laboratory evidence to suggest the fluid involvement in earthquake faulting is also carefully explained. All of the provided information constitutes together a basic framework of the fault modeling for a comprehensive understanding of the involvement of fluids in earthquake ruptures. Earthquake generation is now widely believed to be significantly affected by high-pressure fluid existing at depths. Consequently, modeling study of earthquake faulting coupled with fluid flow is becoming increasingly active as a field of research. This work is aimed at a wide range of readers, and is especially relevant for graduate students and solid-earth researchers who wish to become more familiar with the field.
Authors and Affiliations
Bibliographic Information
Book Title: Involvement of Fluids in Earthquake Ruptures
Book Subtitle: Field/Experimental Data and Modeling
Authors: Teruo Yamashita, Akito Tsutsumi
DOI: https://doi.org/10.1007/978-4-431-56562-8
Publisher: Springer Tokyo
eBook Packages: Earth and Environmental Science, Earth and Environmental Science (R0)
Copyright Information: Springer Japan KK 2018
Hardcover ISBN: 978-4-431-56560-4Published: 07 August 2017
Softcover ISBN: 978-4-431-56821-6Published: 15 August 2018
eBook ISBN: 978-4-431-56562-8Published: 24 July 2017
Edition Number: 1
Number of Pages: XIII, 187
Number of Illustrations: 29 b/w illustrations, 16 illustrations in colour
Topics: Geophysics/Geodesy, Hydrogeology, Geology, Natural Hazards, Simulation and Modeling