Centrifuge Modelling for Civil Engineers

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A01=Gopal Madabhushi
advanced geotechnical modelling applications
Author_Gopal Madabhushi
Automatic Sand Pourer
Bender Elements
Bending Moment Distribution
Category1=Non-Fiction
Category=NL-TN
Category=UYM
Centrifugal Acceleration
Centrifuge Modelling
Centrifuge Test
COP=United Kingdom
Coriolis Acceleration
Diaphragm Wall
Displacement Vectors
Drum Centrifuge
Dynamic Centrifuge Modelling
Earthquake Actuator
Earthquake Loading
earthquake soil liquefaction
eq_bestseller
eq_computing
eq_isMigrated=2
eq_nobargain
eq_non-fiction
Excess Pore Pressures
Format=BC
foundation stability
Geotechnical Centrifuges
geotechnical engineering
geotechnics
HMM=235
IMPN=CRC Press
ISBN13=9780415668248
Language_English
Model Container
Negative Skin Friction
PA=Available
PD=20140730
physical modelling
Physical testing
pile analysis
PIV Analysis
POP=London
Price=€50 to €100
PS=Active
PUB=Taylor & Francis Ltd
retaining structures
Scaling Laws
Shallow Foundations
signal processing techniques
Soft Clay Layer
Soil Deformations
soil mechanics
Subject=Civil Engineering- Surveying & Building
Turner Beam Centrifuge
Uniform Circular Motion
Von Mises Stress Contours
WG=454
WMM=156

Product details

  • ISBN 9780415668248
  • Weight: 600g
  • Dimensions: 156 x 234mm
  • Publication Date: 30 Jul 2014
  • Publisher: Taylor & Francis Ltd
  • Publication City/Country: London, GB
  • Product Form: Paperback
  • Language: English
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Solve Complex Ground and Foundation Problems

Presenting more than 25 years of teaching and working experience in a wide variety of centrifuge testing, the author of Centrifuge Modelling for Civil Engineers fills a need for information about this field. This text covers all aspects of centrifuge modelling. Expertly explaining the basic principles, the book makes this technique accessible to practicing engineers and researchers.

Appeals to Non-Specialists and Specialists Alike

Civil engineers that are new to the industry can refer to this material to solve complex geotechnical problems. The book outlines a generalized design process employed for civil engineering projects. It begins with the basics, and then moves on to increasingly complex methods and applications including shallow foundations, retaining walls, pile foundations, tunnelling beneath existing pile foundations, and assessing the stability of buildings and their foundations following earthquake-induced soil liquefaction. It addresses the use of modern imaging technique, data acquisition, and modelling techniques. It explains the necessary signal processing tools that are used to decipher centrifuge test data, and introduces the reader to the specialist aspects of dynamic centrifuge modelling used to study dynamic problems such as blast, wind, or wave loading with emphasis on earthquake engineering including soil liquefaction problems.

  • Introduces the equipment and instrumentation used in centrifuge testing
  • Presents in detail signal processing techniques such as smoothing and filtering
  • Provides example centrifuge data that can be used for sample analysis and interpretation


Centrifuge Modelling for Civil Engineers

effectively describes the equipment, instrumentation, and signal processing techniques required to make the best use of the centrifuge modelling and test data. This text benefits graduate students, researchers, and practicing civil engineers involved with geotechnical issues.
Dr Gopal Madabhushi is a professor of civil engineering at the University of Cambridge, UK and the director of the Schofield Centre. He has over 25 years of experience in the area of soil dynamics and earthquake engineering. His expertise extends from dynamic centrifuge modelling to the time domain finite element analyses of earthquake engineering problems, and has an active interest in the areas of soil liquefaction, soil-structure interaction, and liquefaction-resistant measures and their performances. Among other works he authored the geotechnical chapters in the book Seismic Design of buildings to Eurocode 8 (also published by Taylor & Francis).

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