Modeling in Geomechanics Edited by Musharraf Zaman The University of Oklahoma, USA Giancarlo Gioda Politecnico di Milano, Italy John Booker University of Sydney, Australia Geomechanics is an interdisciplinary field involving the study of natural and man-made systems with emphasis on the mechanics of various interacting phenomena. It comprises numerous aspects of engineering and scientific disciplines, which share common bases in mathematics, mechanics and physics. In recent years, with the extraordinary growth of computing power and resources, progress in the generation of new theories and techniques for the analysis of geomechanics problems has far surpassed their actual use by practitioners. This has led to a gap between our ability to deal with complex, inter-disciplinary problems in geomechanics and the actual impact of these advances on engineering practice. This book contains contributions from an international group of accomplished researchers and practitioners from various branches of soil and rock engineering, and presents the latest theoretical developments and practical applications of modeling in geomechanics. Chapters are grouped into four main sections:
* Computational procedures
* Constitutive modeling and testing
* Modeling and simulation
* Applications
Efforts have been made to include recent developments and provide suggestions and examples as to how these can be applied in modeling actual engineering problems. Researchers, practitioners and students in geomechanics, mechanics of solids, soil and rock engineering will find this book an invaluable reference.
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Autodesk® Revit® MEP Building Information Modeling (BIM) software for mechanical, electrical, and plumbing (MEP) engineers supports more accurate and efficient building systems design projects from concept through construction.
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A very brief history of earthquake engineering with emphasis on developments in and from the British Isles
Author:Amr S Elnashai
Publication:Chaos, Solitons & Fractals Volume 13, Issue 5, April 2002, Pages 967–972 Abstract
One of the founders of modern earthquake engineering, George Housner, often states that it is too early to write a historical review of the development of this interesting and inter-disciplinary topic. This is indeed true, but without minor contributions along the line, the prospects of writing such a review diminish with time. The endeavour is certainly premature. Notwithstanding, the paper serves some useful purpose. It serves to remind engineers from Europe generally, and the British Isles specifically, that they are descendants of pioneers in earthquake engineering, a fact not widely known nor sufficiently publicised. The names of Robert Mallet and John Milne, alongside the early Japanese pioneers Sekiya, Suyehiro and Omori, feature very strongly around the late 1800s early 1900s. The Italian engineers Palmieri, Panetti and Danusso also made essential contributions at a critical time. For reasons that still prevail today, once an idea is implanted in the United States of America, it takes root so vigorously that its flourishing is attributed solely to the fertility of the medium. This is not necessarily disputable, but due recognition of the originator would perhaps encourage further cross-fertilisation. The fact still remains that Nathan Newmark, Bill Hall, Bruce Bolt and George Housner all made their mark from a US platform. But, since earthquakes know neither national nor technical-discipline boundaries, seismic risk mitigation efforts should also abandon these boundaries and deploy all means and efforts to protect communities threatened by earthquake risk.
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AutoCAD ecscad includes all the functionality of AutoCAD, the world's leading CAD software. The software also includes a complete set of features that allows electrical engineers to quickly and accurately control schemes for systems design to a whole range of projects - from simple motor control to the entire production line.
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This work is primarily a research document on the application of probability theory to the parameter estimation problem. The people who will be interested in this material are physicists, economists, and engineers who have to deal with data on a daily basis; consequently, we have included a great deal of introductory and tutorial material.
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