<p>From the reviews:</p>
<p></p>
<p>"This book … is an encyclopedic assemblage of basic and practical science on state-of-the-art engineering technology dealing with the behavior of earth materials subject to earthquakes and derivative effects. … Hundreds of graphs, charts, and mathematical relationships are skillfully integrated with the text and photographs. This volume is truly monumental. It should be in the libraries of all geotechnical engineers and engineering geologists. Summing Up: Highly recommended. Upper-division undergraduate through professional collections." (T. L. T. Grose, Choice, Vol. 46 (2), October, 2008)</p>

This book is a product of my long-term activities in both education and research. Its publication was made possible by a financial support supplied by the Ministry of Education, Culture, Sports, Science and Technology. As for education, I was told for the first time in 1985 to teach soil dynamics in Asian Institute of Technology in Bangkok, Thailand. I collected experimental and field findings from many publications and made a small series of handouts. Since computer technologies were not well advanced in mid 80s, the handouts were products of cut-and-paste in the physical sense. Many pages were even handwritten. Afterwards, I started to teach the same subject in 1995 at University of Tokyo. Since then I have added more information from field investigation and laboratory tests as well as analyses. It has become possible to put all in an electronic media that makes teaching easier. Readers can find that this book includes Japanese writing among English text. This is because I use this text for teaching in Tokyo. The main aim of this book is a collection of data which is useful in understanding the state-of-art technology and its application to new topics. Understanding the fundamental issues is important because practice makes use of many assumptions, hypotheses, and way of thinking. It has been my policy to show reasons why practice employs those ideas by showing experimental and field backgrounds. This idea does not change even today.
Les mer
This book is a product of my long-term activities in both education and research. As for education, I was told for the first time in 1985 to teach soil dynamics in Asian Institute of Technology in Bangkok, Thailand.
Les mer
1 KNOWLEDGE OF SOIL MECHANICS.- Basic Principles in Soil Mechanics.- 2 PROBLEMS CONCERNING SHAKING OF SOFT GROUND UNDERGOING EARTHQUAKE LOADING.- Seismological Knowledge.- Wave Propagation in Elastic Medium.- Earthquake Effects.- Dynamic Response Analysis.- Pseudostatic Limit Equilibrium Analysis.- Field Investigation.- Dynamic Response of Complex-Modulus Model.- Laboratory Tests on Dynamic Properties of Soils.- Stress-Strain Models.- Application of Seismic Inertia Force.- Seismic Force Exerted on Structures.- Seismic Behavior of Slopes and Embankments.- Landslides.- Seismic Faults.- 3 LIQUEFACTION.- Features of Liquefaction-Induced Damages.- Mechanism of Onset of Liquefaction.- Assessment of Liquefaction Potential.- Behavior of Soil Undergoing Cyclic Undrained Loading.- In-Situ Tests on Liquefaction Potential of Subsoils.- Postliquefaction Behavior of Sandy Ground.- Immediate Detection of Liquefaction Damage and Emergency Action.- Permanent Displacement and Deformation of Liquefied Subsoil.- Prediction of Permanent Displacement Due to Liquefaction.- Mitigation of Liquefaction-Induced Damage.- Seismic Microzonation.
Les mer

This book presents all issues of earthquake geotechnical engineering in a comprehensive way. It summarizes the present knowledge on earthquake hazards and their causative mechanisms, experimental studies on nonlinear complex soil behaviour, an analysis to predict ground behaviour during earthquakes, field studies to determine nature of real ground as input data for analysis, and damage mitigation technologies. Information obtained from earthquake damage investigation (such as ground motion, landslides, earth pressure, fault action, or liquefaction) as well as data from laboratory tests and field investigation is supplied, together with exercises/questions.

Les mer
Presents comprehensively all issues of earthquake geotechnical engineering Presents standard methods, theory and applications of geotechnical earthquake engineering useful for engineers, graduate students and professionals
Les mer
GPSR Compliance The European Union's (EU) General Product Safety Regulation (GPSR) is a set of rules that requires consumer products to be safe and our obligations to ensure this. If you have any concerns about our products you can contact us on ProductSafety@springernature.com. In case Publisher is established outside the EU, the EU authorized representative is: Springer Nature Customer Service Center GmbH Europaplatz 3 69115 Heidelberg, Germany ProductSafety@springernature.com
Les mer

Produktdetaljer

ISBN
9783540357827
Publisert
2008-02-25
Utgiver
Vendor
Springer-Verlag Berlin and Heidelberg GmbH & Co. K
Høyde
297 mm
Bredde
210 mm
Aldersnivå
Professional/practitioner, P, 06
Språk
Product language
Engelsk
Format
Product format
Innbundet

Forfatter