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Introduction to the Physics of Landslides: Lecture notes on the dynamics of mass wasting

Autor Fabio Vittorio de Blasio
en Limba Engleză Hardback – 15 mai 2011
Landslides represent one of the most destructive natural catastrophes. They can reach extremely long distances and velocities, and are capable of wiping out human communities and settlements. Yet landslides have a creative facet as they contribute to the modification of the landscape. They are the consequence of the gravity pull jointly with the tectonic disturbance of our living planet.
Landslides are most often studied within a geotechnical and geomorphological perspective. Engineering calculations are traditionally applied to the stability of terrains. In this book, landslides are viewed as a physical phenomenon. A physical understanding of landslides is a basis for modeling and mitigation and for understanding their flow behavior and dynamics. We still know relatively little about many aspects of landslide physics. It is only recently that the field of landslide dynamics is approaching a more mature stage. This is testified by the release of modelling tools for the simulation of landslides and debris flows. In this book the emphasis is placed on the problems at the frontier of landslide research. Each chapter is self-consistent, with questions and arguments introduced from the beginning.
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Specificații

ISBN-13: 9789400711211
ISBN-10: 9400711212
Pagini: 400
Ilustrații: XV, 408 p.
Dimensiuni: 155 x 235 x 23 mm
Greutate: 0.77 kg
Ediția:2011
Editura: SPRINGER NETHERLANDS
Colecția Springer
Locul publicării:Dordrecht, Netherlands

Public țintă

Professional/practitioner

Cuprins

Part 1. Introduction to Landslides.- Part 2. Fluid Mechanics.- Part 3. Rheological Flows.- Part 4. Physics of Granular Media.- Part 5. Granular Avalanches.- Part 6. Submarine Landslides.- Part 7. Suspension Flows.- Part 8. Special Topics.- Appendixes: 1. Geological Appendix. 2. Physical Appendix. 3. Mathematical Appendix. 4. Numerical Appendix.

Textul de pe ultima copertă

Landslides represent one of the most destructive natural catastrophes. They can reach extremely long distance and velocity, and are capable of wiping out human communities and settlements. Yet landslides have a creative facet as they contribute to the modification of the landscape. They are the consequence of the gravity pull jointly with the tectonic disturbance of our living planet.
Landslides are most often studied within a geotechnical and geomorphological perspective. Engineering calculations are traditionally applied to the stability of terrains. In this book, landslides are viewed as a physical phenomenon. A physical understanding of landslides is a basis for modeling and mitigation and for understanding their flow behavior and dynamics. We still know relatively little about many aspects of landslide physics. It is only recently that the field of landslide dynamics is approaching a more mature stage. This is testified by the release of modelling tools for the simulationof landslides and debris flows. In this book the emphasis is placed on the problems at the frontier of landslide research. Each chapter is self-consistent, with questions and arguments introduced from the beginning.
The material should be useful to geologists, model developers, professionals and researchers in the fields of engineering, physics and mathematics, and advanced students of geosciences.

Caracteristici

One of the first books providing a thorough treatment of the physical basis of landslides The book contains large sections on the physics of granular media, experimental studies of landslides, numerical models and the relevant fluid mechanics The book presents detailed reports on 12 case studies The advanced and didactically-oriented text will be useful to researchers and professionals in addition to students Includes supplementary material: sn.pub/extras