
Lumped Parameter Modeling and Model Parameter Estimation
Analysis of Elastic, Elastoplastic and Viscoelastic Unreinforced and Reinforced Foundation Beds
Arindam Dey(Author)
LAP Lambert Academic Publishing
Published on 23. February 2011
Book
Paperback/Softback
504 pages
978-3-8443-1210-2 (ISBN)
Description
Soil-structure interaction is one of the most interesting topics in Geotechnical Engineering. Several factors render the mechanical response of soils to be markedly nonlinear, irreversible and time-dependent. In order to obtain reliable information for such practical problems, it is ardently necessary to take the aid of modeling and idealizing some specific aspects of soil behavior. This book reveals the efficacy of Lumped Parameter Modeling technique for a reliable prediction of the flexural response of footings resting on unreinforced and reinforced elastic, elastoplastic and viscoelastic foundation beds. Governed by the model complexity, the main shortcoming of such technique rests with the model parameter estimation. Based on observational data, this book illustrates the effectiveness of Inverse Analysis Technique aided with Optimization Algorithm in overcoming such deficiency. The various contents of this book shall largely help the students to understand the encompassed subject matter. Practicing professionals, especially those involved with the modeling of soil-structure interaction, ground improvement and soil reinforcement shall be immensely benefitted.
More details
Language
English
Place of publication
Germany
Product notice
Paperback (trade)
Unsewn / adhesive bound
Dimensions
Height: 220 mm
Width: 150 mm
Thickness: 31 mm
Weight
768 gr
ISBN-13
978-3-8443-1210-2 (9783844312102)
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Schweitzer Classification
Person
Arindam Dey, PhD: Studied Civil Engineering at Jadavpur University, India and specialized in Geotechnical Engineering from Indian Institute of Technology Kanpur. Currently, I am working as a Post Doctoral Researcher at University of Molise, Italy in the domain of health monitoring of geotechnical structures under ambient and seismic vibrations.