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Providing the first worldwide survey of active earthquake faults, this book focuses on those described as 'seismic time bombs' – with the potential to destroy large cities in the developing world such as Port au Prince, Kabul, Tehran and Caracas. Leading international earthquake expert, Robert Yeats, explores both the regional and plate-tectonic context of active faults, providing the background for seismic hazard evaluation in planning large-scale projects such as nuclear power plants or hydroelectric dams. He also highlights work done in more advanced seismogenic countries like Japan, the United States, New Zealand and China, providing an important basis for upgrading building standards and other laws in developing nations. The book also explores the impact of major quakes on social development through history. It will form an accessible reference for analysts and consulting firms, and a convenient overview for academics and students of geoscience, geotechnical engineering and civil engineering, and land-use planning.Read more
- Application boxes within the text engage students by demonstrating how theories relate to real applications
- Provides a neutral journalistic account of controversies, such as whether the historical record is adequate to estimate maximum earthquake size for critical facilities like the nuclear plant in Japan
- Presents arresting human perspectives, illustrating that a repeat of the 1505 earthquake in Kabul could kill as many people as 30 years of wars in Afghanistan, or that the Bible can provide information on the Dead Sea Transform Fault in the destruction of Sodom, Gomorrah and Jericho
Reviews & endorsements
"An astonishing achievement … extraordinarily comprehensive and well illustrated with seismological and geodetic data. It will remain a reliable introduction to the context of advances in the field, and how to use them."
James Jackson, Department of Earth Sciences, University of CambridgeSee more reviews
"This ambitious compilation of all that is known of the surface faults of our planet will be a reference work for many years to come."
Roger Bilham, Department of Geological Sciences, University of Colorado at Boulder
"Clearly-written and highly illustrated … this is essential reading for anyone tasked with protecting at-risk populations or infrastructure prone to earthquakes."
Gerald Roberts, Department of Earth and Planetary Sciences, Birkbeck, University of London
"Robert Yeats provides comprehensive geographical coverage which remains accessible by providing context through-out. … an essential reference not only for academics and students, but also practitioners in engineering geology, civil engineering and planning."
Ken McCaffrey, Department of Earth Sciences, Durham University
"… this impressive book presents a massive amount of information in a clear, concise, and readable style. Its ongoing value will be enhanced by the approximately 1600 references to the primary literature. It is a landmark work that should have a long life as a major reference for anyone involved in earthquake studies."
William R. Green, The Leading Edge
"Yeats brings forth this first-ever worldwide fundamental assessment of the essential, observable characteristics that can be used to indicate the relative threats of single regional seismogenic zones....take this book with you on your next trip to the next project!"
Allen W. Hatheway, Environmental and Engineering Geoscience
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- Date Published: May 2012
- format: Hardback
- isbn: 9780521190855
- length: 634 pages
- dimensions: 252 x 195 x 35 mm
- weight: 1.5kg
- contains: 214 b/w illus.
- availability: In stock
Table of Contents
1. Methods and background
2. Introduction to North America: the Pacific–North America plate boundary
3. San Andreas System and basin and range
4. Caribbean Plate and Middle America subduction zone
5. South America
6. Africa, Arabia, and Western Europe
7. Eastern Mediterranean, the Caucasus, and the Middle East
8. India, the Himalaya, Mainland China, and Central Asia
9. Japan and the Western Pacific
10. Southeast Asia, Australia, New Zealand, and Pacific Islands
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