Описание: The topics addressed include criteria for regularity, seismic design of irregular structures, seismic assessment of irregular and complex structures, retrofit of irregular and complex structures, and soil-structure interaction for irregular and complex structures.
Описание: The recent earthquake disasters in Japan and a series of other disasters in the world have highlighted again the need for more reliable geotechnical prediction and better methods for geotechnical design and in particular dealing with geohazards. This book provides a timely review and summaries of the recent advances in theories, analyses and methods for geotechnical predictions and the most up-to-date practices in geotechnical engineering and particularly in dealing with geohazards. A special section on the geotechnical aspects of the recent Tohoku earthquake disaster in Japan is also presented in this book.
Key Features: This book is written by a group of internationally renowned researchers and practioners to honour and mark the 40 years' contribution of one of the greatest educators, researchers and engineers in the world, Professor Hideki Ohta, to geotechnical engineering. Professor Ohta is presently professor at Chou University after his retirement from Tokyo Institute of Technology, Japan. The book provides some first-hand information on the 2011 Tohuko earthquake disasters in Japan, the most recent update on the theories and methods for geotechnical analyses and predictions, and the latest methods and practices in geotechnical engineering, in particular, dealing with geotechnical hazard.
It is a rare occasion for some 30 plus international authorities to write on their best topic that they have been working on for years. The book is a must-have collection for any libraries and professionals in geotechnical engineering.
The book covers multi-disciplinary topics in observational, computational and applied geophysics in aspects of solid earth system. The authors provide an up-to-date overview for methods and techniques in seismology, with a focus on fault structure, strong ground motion and earthquake forecast based on full-3D earth structure models. Abundant of case studies make it a practical reference for researchers in seismology and applied geophysics.
Описание: Numerical simulation models provide the means to improve earthquake hazard forecasting and analysis systems based on predictive modelling and comphrehensive understanding of the phenomena. This volume is aimed at mathematicians and geophysicists.
Автор: Vladim?r Schenk Название: Earthquake Hazard and Risk ISBN: 0792340086 ISBN-13(EAN): 9780792340089 Издательство: Springer Рейтинг: Цена: 20733.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: Summarizes selected papers presented at the 27th General Assembly of the International Association of Seismology and Physics of the Earth`s Interior (Wellington, January 1994). Suitable for seismologists, geophysicists and Earth scientists, this title covers various aspects of research in earthquake hazard and seismic risk.
Автор: J. Donea; P.M. Jones Название: Experimental and Numerical Methods in Earthquake Engineering ISBN: 0792314344 ISBN-13(EAN): 9780792314349 Издательство: Springer Рейтинг: Цена: 31915.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: Based on the Lectures given during the Eurocourse on Experimental and Numerical Methods in Earthquake Engineering held at the Joint Research Centre, Ispra, Italy, October 7-11, 1991
Автор: Ragnar Stef?nsson Название: Advances in Earthquake Prediction ISBN: 3662501104 ISBN-13(EAN): 9783662501108 Издательство: Springer Рейтинг: Цена: 18237.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: Using the special natural conditions in Iceland as a "test area", this book describes the major efforts in earthquake prediction research worldwide. The results obtained in Iceland are of significance for earthquake prediction research around the world.
Описание: Though most predictions and engineering calculations are traditionally based on total stress approaches, realistic prediction of the behavior of soil masses can only be achieved when the model considers the interaction of the soil skeleton and the pore fluid.
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