Numerical Methods and Implementation in Geotechnical Engineering – Part 1

Numerical Methods and Implementation in Geotechnical Engineering – Part 1
Title Numerical Methods and Implementation in Geotechnical Engineering – Part 1 PDF eBook
Author Y.M. Cheng
Publisher Bentham Science Publishers
Pages 594
Release 2020-04-01
Genre Technology & Engineering
ISBN 9811437378

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Numerical Methods and Implementation in Geotechnical Engineering explains several numerical methods that are used in geotechnical engineering. The first part of this reference set includes methods such as the finite element method, distinct element method, discontinuous deformation analysis, numerical manifold method, smoothed particle hydrodynamics method, material point method, plasticity method, limit equilibrium and limit analysis, plasticity, slope stability and foundation engineering, optimization analysis and reliability analysis. The authors have also presented different computer programs associated with the materials in this book which will be useful to students learning how to apply the models explained in the text into practical situations when designing structures in locations with specific soil and rock settings. This reference book set is a suitable textbook primer for civil engineering students as it provides a basic introduction to different numerical methods (classical and modern) in comprehensive readable volumes.

Numerical Methods and Implementation in Geotechnical Engineering – Part 2

Numerical Methods and Implementation in Geotechnical Engineering – Part 2
Title Numerical Methods and Implementation in Geotechnical Engineering – Part 2 PDF eBook
Author Y.M. Cheng
Publisher Bentham Science Publishers
Pages 672
Release 2020-04-20
Genre Technology & Engineering
ISBN 9811437408

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Numerical Methods and Implementation in Geotechnical Engineering explains several numerical methods that are used in geotechnical engineering. The second part of this reference set includes more information on the distinct element method, geotechnical optimization analysis and reliability analysis. Information about relevant additional numerical methods is also provided in each chapter with problems where applicable. The authors have also presented different computer programs associated with the materials in this book set which will be useful to students learning how to apply the models explained in the text into practical situations when designing structures in locations with specific soil and rock settings. This reference book set is a suitable textbook primer for civil engineering students as it provides a basic introduction to different numerical methods (classical and modern) in comprehensive readable volumes.

Finite Element Analysis in Geotechnical Engineering

Finite Element Analysis in Geotechnical Engineering
Title Finite Element Analysis in Geotechnical Engineering PDF eBook
Author David M Potts
Publisher Thomas Telford
Pages 456
Release 2001
Genre Mathematics
ISBN 9780727727831

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An insight into the use of the finite method in geotechnical engineering. The first volume covers the theory and the second volume covers the applications of the subject. The work examines popular constitutive models, numerical techniques and case studies.

Application of Numerical Methods to Geotechnical Problems

Application of Numerical Methods to Geotechnical Problems
Title Application of Numerical Methods to Geotechnical Problems PDF eBook
Author Annamaria Cividini
Publisher Springer
Pages 760
Release 2014-05-04
Genre Science
ISBN 370912512X

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The NUMGE98 Conference brought together senior and young researchers, scientists and practicing engineers from European and overseas countries, to share their knowledge and experience on the various aspects of the analysis of Geotechnical Problems through Numerical Methods. The papers address a broad spectrum of geotechnical problems, including tunnels and underground openings, shallow and deep foundations, slope stability, seepage and consolidation, partially saturated soils, geothermal effects, constitutive modelling, etc.

Numerical Methods and Implementation in Geotechnical Engineering - Part 1

Numerical Methods and Implementation in Geotechnical Engineering - Part 1
Title Numerical Methods and Implementation in Geotechnical Engineering - Part 1 PDF eBook
Author J H Wang
Publisher
Pages 594
Release 2020-04-02
Genre
ISBN 9789811437380

Download Numerical Methods and Implementation in Geotechnical Engineering - Part 1 Book in PDF, Epub and Kindle

Numerical Methods and Implementation in Geotechnical Engineering explains several numerical methods that are used in geotechnical engineering. The first part of this reference set includes methods such as the finite element method, distinct element method, discontinuous deformation analysis, numerical manifold method, smoothed particle hydrodynamics method, material point method, plasticity method, limit equilibrium and limit analysis, plasticity, slope stability and foundation engineering, optimization analysis and reliability analysis. The authors have also presented different computer programs associated with the materials in this book which will be useful to students learning how to apply the models explained in the text into practical situations when designing structures in locations with specific soil and rock settings.This reference book set is a suitable textbook primer for civil engineering students as it provides a basic introduction to different numerical methods (classical and modern) in comprehensive readable volumes.

Numerical Methods in Geotechnical Engineering

Numerical Methods in Geotechnical Engineering
Title Numerical Methods in Geotechnical Engineering PDF eBook
Author Thomas Benz
Publisher CRC Press
Pages 976
Release 2010-05-25
Genre Technology & Engineering
ISBN 0203842367

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Numerical Methods in Geotechnical Engineering contains 153 scientific papers presented at the 7th European Conference on Numerical Methods in Geotechnical Engineering, NUMGE 2010, held at Norwegian University of Science and Technology (NTNU) in Trondheim, Norway, 2 4 June 2010.The contributions cover topics from emerging research to engineering pra

Numerical Methods in Geotechnical Engineering IX

Numerical Methods in Geotechnical Engineering IX
Title Numerical Methods in Geotechnical Engineering IX PDF eBook
Author António S. Cardoso
Publisher CRC Press
Pages 2430
Release 2018-06-19
Genre Technology & Engineering
ISBN 1351003607

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Numerical Methods in Geotechnical Engineering IX contains 204 technical and scientific papers presented at the 9th European Conference on Numerical Methods in Geotechnical Engineering (NUMGE2018, Porto, Portugal, 25—27 June 2018). The papers cover a wide range of topics in the field of computational geotechnics, providing an overview of recent developments on scientific achievements, innovations and engineering applications related to or employing numerical methods. They deal with subjects from emerging research to engineering practice, and are grouped under the following themes: Constitutive modelling and numerical implementation Finite element, discrete element and other numerical methods. Coupling of diverse methods Reliability and probability analysis Large deformation – large strain analysis Artificial intelligence and neural networks Ground flow, thermal and coupled analysis Earthquake engineering, soil dynamics and soil-structure interactions Rock mechanics Application of numerical methods in the context of the Eurocodes Shallow and deep foundations Slopes and cuts Supported excavations and retaining walls Embankments and dams Tunnels and caverns (and pipelines) Ground improvement and reinforcement Offshore geotechnical engineering Propagation of vibrations Following the objectives of previous eight thematic conferences, (1986 Stuttgart, Germany; 1990 Santander, Spain; 1994 Manchester, United Kingdom; 1998 Udine, Italy; 2002 Paris, France; 2006 Graz, Austria; 2010 Trondheim, Norway; 2014 Delft, The Netherlands), Numerical Methods in Geotechnical Engineering IX updates the state-of-the-art regarding the application of numerical methods in geotechnics, both in a scientific perspective and in what concerns its application for solving practical boundary value problems. The book will be much of interest to engineers, academics and professionals involved or interested in Geotechnical Engineering.