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Particulate Discrete Element Modelling: A Geomechanics Perspective: Applied Geotechnics

Autor Catherine O'Sullivan
en Limba Engleză Paperback – 16 apr 2017
Particulate discrete element analysis is becoming increasingly popular for research in geomechanics as well as geology, chemical engineering, powder technology, petroleum engineering and in studying the physics of granular materials. With increased computing power, practising engineers are also becoming more interested in using this technology for analysis in industrial applications. This is the first single work on Discrete Element Modelling (DEM) providing the information to get started with this powerful numerical modelling approach.
Written by an independent author with experience both in developing DEM codes and using commercial codes, this book provides the basic details of the numerical method and the approaches used to interpret the results of DEM simulations. Providing a basic overview of the numerical method, Particulate Discrete Element Modelling discusses issues related to time integration and numerical stability, particle types, contact modelling and boundary conditions. It summarizes approaches to interpret DEM data so that users can maximize their insight into the material response using DEM. The aim of this book is to provide both users and prospective users of DEM with a concise reference book that includes tips to optimize their usage.
Particulate Discrete Element Modelling is suitable both for first time DEM analysts as well as more experienced users. It will be of use to professionals, researchers and higher level students, as it presents a theoretical overview of DEM as well as practical guidance on running DEM simulations and interpreting DEM simulation data.
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Specificații

ISBN-13: 9781138074897
ISBN-10: 1138074896
Pagini: 576
Ilustrații: 75 Line drawings, black and white; 2 Halftones, black and white
Dimensiuni: 156 x 234 x 30 mm
Greutate: 0.45 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria Applied Geotechnics


Public țintă

Postgraduate and Professional

Cuprins

1. Introduction  2.Use of DEM in Geomechanics  3. Calculation of Contact Forces  4.Particle Motion  5. Particle Types  6. Boundary Conditions  7. Initial Geometry and Specimen Generation  8. Time Integration and Discrete Element Modelling  9. DEM Interpretation: A Continuum Perspective  10. Postprocessing: Graphical Interpretation of DEM Simulations  11. Basic Statistical Analysis of Particulate Systems  12. Guidance on Running DEM Simulations  13. DEM: Future and Ongoing Developments

Notă biografică

Catherine O’Sullivan is a Senior Lecturer in the Department of Civil and Environmental Engineering at Imperial College, UK.

Recenzii

"This book is unique in the market, not only because it is the only introductory text of DEM written with so much practical advice for users, but also because of its unique attention to the audience in the area of geomechanics. ... An excellent reference textbook for a graduate course on DEM; it is also an excellent self-study reference for an individual graduate student or engineer who plans to carry out DEM."
-- Helen Cheng, Géotechnique
"This volume on the theory and application of the particulate discrete element modeling approach is the first of its kind in the geomechanics community, and it represents a valuable and highly useable reference for a range of readers interested in numerical mechanical modeling."
––Amanda N. Hughes, Pure and Applied Geophysics
"This volume on the theory and application of the particulate discrete element modeling approach is the first of its kind in the geomechanics community, and it represents a valuable and highly useable reference for a range of readers interested in numerical mechanical modeling."
––PAGEOPH, 2014
 

Descriere

Particulate discrete element analysis is becoming increasingly popular for research in geomechanics as well as geology, chemical engineering, powder technology, petroleum engineering and in studying the physics of granular materials. With increased computing power, practising engineers are also becoming more interested in using this technology for analysis in industrial applications. This is the first single work on DEM providing the information to get started with this powerful numerical modelling approach.
It presents a theoretical overview of DEM as well as practical guidance on running DEM simulations and interpreting DEM simulation data with a geomechanics slant.