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Author Iskander, Magued

Title Modelling with transparent soils : visualizing soil structure interaction and multi phase flow, non-intrusively / by Magued Iskander
Published Berlin ; London : Springer, 2010

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Description 1 online resource
Series Springer Series in Geomechanics and Geoengineering, 1866-8755
Springer series in geomechanics and geoengineering. 1866-8755
Contents Part 1 Introduction to Transparent Soils -- Part 2 Optical Techniques in Geotechnical Engineering -- Part 3 Introduction to Light and Optics -- Part 4 Optical Measurement of Strain and Stress -- Part 5 Geotechnical Properties of Transparent Silica Powders -- Part 6 Geotechnical Properties of Silica Gels -- Part 7 Geotechnical Properties of Aquabeads -- Part 8 Digital Image Correlation -- Part 9 Application of DIC for Measuring Deformations in Transparent Soils -- Part 10 Validation of Measured 2D Deformations -- Part 11 3D Deformation Measurement -- Part 12 2D Flow in Transparent Synthetic Soils -- Epilogue -- Appendix. Camera Calibration using Neural Networks -- References -- Index
Summary The fundamental premise of this monograph is that transparent synthetic materials with geotechnical properties similar to those of natural soils can be used to study 3D deformation and flow problems in natural soils. Transparent soils can be made by matching the refractive index of synthetic soil materials and the pore fluid. This monographs presents the geotechnical behaviour of several families of transparent soils that can be combined to meet model-test requirements, in terms of strength, deformation, or permeability. "Modelling with Transparent Soils" demonstrates how an optical system consisting of a laser light, a CCD camera, a frame grabber, and a PC can be used to measure spatial deformations in transparent soil models non-intrusively. Transparent soil models are sliced optically using a laser light sheet. A distinctive speckle pattern is generated by the interaction of the laser light and transparent soil. A 2D deformation field is obtained from two speckle images by using an image processing technique named adaptive cross-correlation, which is an advanced form of the digital image cross-correlation (DIC) algorithm that utilizes both window sizing and window shifting methods. The monograph demonstrates that comparison of 2D deformation fields between transparent soil and natural soil showed that the results were comparable in almost every aspect. Three dimensional fields can be produced by combining multiple 2D fields in Matlab. Multiphase flow and surfactant flushing tests were also simulated using a layered transparent soil systems and several contaminants. The developed technology allows for visualizing the contamination concentration and evaluating the performance of remediation technologies in bench scale model tests
Bibliography Includes bibliographical references
Notes English
Print version record
In Springer eBooks
Subject Soil mechanics -- Computer simulation
TECHNOLOGY & ENGINEERING -- Civil -- General.
Ingénierie.
Soil mechanics -- Computer simulation
Bodenmechanik
Mehrphasenströmung
Fluid-Struktur-Wechselwirkung
Visualisierung
Optische Messtechnik
Computersimulation
Form Electronic book
LC no. 2010927008
ISBN 9783642025013
3642025013
9786612926839
661292683X