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Prediction and Simulation Methods for Geohazard Mitigation: including CD-ROM

Editat de Fusao Oka, Akira Murakami, Sayuri Kimoto
en Limba Engleză Hardback – 7 mai 2009
The last decades have shown a remarkable increase in the number of heavy rains, typhoons and earthquakes. These natural phenomena are the main causes for geohazards. As a result the mitigation of geohazards has become a major research topic in geotechnical engineering, and in recent years simulation-based predictions and monitoring tools have been developed to enquire the mechanisms underlying geohazards. This book is a comprehensive overview of these developments, and will be of interest to engineers, researchers, students in Civil and Environmental Engineering.
 
 
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Specificații

ISBN-13: 9780415804820
ISBN-10: 0415804825
Pagini: 626
Dimensiuni: 174 x 246 mm
Greutate: 1.32 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Locul publicării:United States

Notă biografică

Fusao Oka, Akira Murakami, Sayuri Kimoto

Cuprins

Preface, Organisation, Mechanisms of geohazards, Numerical and analytical simulation methods for geohazards, Advanced constitutive modeling of geomaterials and laboratory and field testing, Thermo-hydro-mechanical instabilities, Monitoring and non-destructive investigation methods, Evaluation of existing prediction methods, performance-based design methods,risk analysis and the management of mitigation programs, Case records of geohazards and mitigation projects, Author index

Descriere

A comprehensive overview of advances in the mitigation of geohazards, this book begins with coverage of the related mechanisms, and then moves on to discuss numerical and analytical simulation methods, including FDM, FEM, extended FEM, DEM, and SPH. It also examines advanced constitutive modeling of geomaterials and numerical implementations, as well as constitutive parameter determination using laboratory and field test results. The book then covers thermo-hydro-mechanical instabilities, large deformations, strain localization, progressive failure, liquefaction, the rapid flow of complex geofluids, and monitoring and non-destructive investigation methods.