The Physics of Rock Failure and Earthquakes

Nonfiction, Science & Nature, Science, Earth Sciences, Geophysics
Cover of the book The Physics of Rock Failure and Earthquakes by Mitiyasu Ohnaka, Cambridge University Press
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Mitiyasu Ohnaka ISBN: 9781107357839
Publisher: Cambridge University Press Publication: April 11, 2013
Imprint: Cambridge University Press Language: English
Author: Mitiyasu Ohnaka
ISBN: 9781107357839
Publisher: Cambridge University Press
Publication: April 11, 2013
Imprint: Cambridge University Press
Language: English

Despite significant advances in the understanding of earthquake generation processes and derivation of underlying physical laws, controversy remains regarding the constitutive law for earthquake ruptures and how it should be formulated. Laboratory experiments are necessary to obtain high-resolution measurements that allow the physical nature of shear rupture processes to be deduced, and to resolve the controversy. This important book provides a deeper understanding of earthquake processes from nucleation to their dynamic propagation. Its key focus is a deductive approach based on laboratory-derived physical laws and formulae, such as a unifying constitutive law, a constitutive scaling law, and a physical model of shear rupture nucleation. Topics covered include: the fundamentals of rock failure physics, earthquake generation processes, physical scale dependence, and large-earthquake generation cycles. Designed for researchers and professionals in earthquake seismology, rock failure physics, geology and earthquake engineering, it is also a valuable reference for graduate students.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Despite significant advances in the understanding of earthquake generation processes and derivation of underlying physical laws, controversy remains regarding the constitutive law for earthquake ruptures and how it should be formulated. Laboratory experiments are necessary to obtain high-resolution measurements that allow the physical nature of shear rupture processes to be deduced, and to resolve the controversy. This important book provides a deeper understanding of earthquake processes from nucleation to their dynamic propagation. Its key focus is a deductive approach based on laboratory-derived physical laws and formulae, such as a unifying constitutive law, a constitutive scaling law, and a physical model of shear rupture nucleation. Topics covered include: the fundamentals of rock failure physics, earthquake generation processes, physical scale dependence, and large-earthquake generation cycles. Designed for researchers and professionals in earthquake seismology, rock failure physics, geology and earthquake engineering, it is also a valuable reference for graduate students.

More books from Cambridge University Press

Cover of the book Language Contact in Europe by Mitiyasu Ohnaka
Cover of the book Clinical Fluid Therapy in the Perioperative Setting by Mitiyasu Ohnaka
Cover of the book Handbook of Computational Social Choice by Mitiyasu Ohnaka
Cover of the book Gadamer and the Legacy of German Idealism by Mitiyasu Ohnaka
Cover of the book Neurohospitalist Medicine by Mitiyasu Ohnaka
Cover of the book Supported Decision-Making by Mitiyasu Ohnaka
Cover of the book The Cambridge History of Science Fiction by Mitiyasu Ohnaka
Cover of the book Raising Children by Mitiyasu Ohnaka
Cover of the book The Cambridge History of Philosophy in the Nineteenth Century (1790–1870) by Mitiyasu Ohnaka
Cover of the book The Price of Freedom Denied by Mitiyasu Ohnaka
Cover of the book Innovation and the State by Mitiyasu Ohnaka
Cover of the book American Fair Trade by Mitiyasu Ohnaka
Cover of the book Trust, Computing, and Society by Mitiyasu Ohnaka
Cover of the book Zeta Functions of Graphs by Mitiyasu Ohnaka
Cover of the book An Introduction to the Atomic and Radiation Physics of Plasmas by Mitiyasu Ohnaka
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy