27 Best Books on Geomechanics

We have compiled a list of the Best Reference Books on Geomechanics, which are used by students of top universities, and colleges. This will help you choose the right book depending on if you are a beginner or an expert. Here is the complete list of Geomechanics Books with their authors, publishers, and an unbiased review of them as well as links to the Amazon website to directly purchase them. If permissible, you can also download the free PDF books on Geomechanics below.

1. Applied Geomechanics

 
1."Erosion in Geomechanics Applied to Dams and Levees" by Stephane Bonelli
“Erosion in Geomechanics Applied to Dams and Levees” Book Review: This book focuses on the phenomenon of internal erosion and piping, providing up-to-date international research and advancements. It explains various physical processes and their laboratory study, along with their practical application to levees and dams. Designed for students, researchers, and practitioners, it offers a unified framework to understand the failure of earth dams or levees by erosion, whether internal or surface. It covers topics such as the likelihood of internal erosion, contact erosion, backward erosion piping, and concentrated leak erosion. The book also explores the relationship between soil erosion properties and other parameters.

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2."Geomechanics Applied to the Petroleum Industry" by Jean-Frans Nauroy
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3."Geomechanics of Failures. Advanced Topics" by Eduardo E Alonso and Núria M Pinyol
“Geomechanics of Failures. Advanced Topics” Book Review: This book takes an unconventional approach to geomechanics and differs from other books in its structure. It focuses on failures in geomechanics through the use of case studies, presenting a failure case first and then providing an explanation. The selected cases are categorized into three main topics: landslides, embankments and dams, and dynamics of failure. The cases are diverse and showcase a number of relevant and sometimes controversial problems of wide interest. The book teaches readers how to construct necessary models to comprehend these failures, with clear descriptions of the mechanisms and phenomena underlying the problems. The book also presents important models and commonly-used balance and equilibrium equations to analyze and address the failures, as well as introducing specific calculation tools and programs. Each chapter concludes with a summary. This book will be useful for students and professionals in the fields of civil and geotechnical engineering.

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4."Geomechanics of Failures" by Alexander M Puzrin and Eduardo E Alonso
“Geomechanics of Failures” Book Review: The main goal of this introductory textbook is to demonstrate how fundamental concepts in Soil Mechanics can serve as a “forensic” tool in the investigation of geotechnical failures. It offers several opportunities to explore the use of various available procedures in forming simple models. Unlike any other book, it provides a complete overview of failure. This book highlights the value of simple approaches and techniques and presents a comprehensive analysis of the cases studied. It provides numerous analytical closed-form solutions along with their detailed derivation. The book also offers a step-by-step explanation of all the cases, including the hypothesis introduced and the analysis performed. It is an invaluable resource for anyone studying or working in the field of geotechnical engineering.

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5."Computational Geomechanics with Special Reference to Earthquake Engineering" by Olgierd C Zienkiewicz and A H C Chan
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6."Cavity Expansion Methods in Geomechanics" by Hai-Sui Yu
“Cavity Expansion Methods in Geomechanics” Book Review: This book is a comprehensive guide to cavity expansion methods in geomechanics, covering elastic, elastic-perfectly plastic, critical state, and time-dependent solutions. It presents a simple theory that has been widely applied in geotechnical engineering to analyze problems related to deep foundations, in-situ testing, underground excavation and tunneling, and wellbore instability. The book summarizes all the major developments achieved in the cavity expansion theory in the geotechnical community, making it an essential reference for civil, mining, and petroleum engineers. It is a useful resource for students and researchers in applied mechanics and mechanical engineering. Each unit includes a summary and references for further reading, and all equations and methods are labeled and explained in detail. This book will benefit students of geomechanics and geoengineering.

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7."Engineering for Earthquake Disaster Mitigation (Springer Series in Geomechanics and Geoengineering)" by Masanori Hamada
“Engineering for Earthquake Disaster Mitigation (Springer Series in Geomechanics and Geoengineering)” Book Review: The primary objective of this book is to offer essential knowledge and information regarding earthquake and tsunami mitigation. It is intended for geotechnical engineers, graduate students, and new researchers. The book begins by presenting various recent cases of earthquakes and their associated tsunamis, along with the issue of soil liquefaction, and how to manage such catastrophes. The final chapter outlines several disaster mitigation strategies to be implemented against future earthquakes and tsunamis in Japan.

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8."Particulate Discrete Element Modelling: A Geomechanics Perspective (Applied Geotechnics)" by Catherine O'Sullivan
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9."Advanced Mathematical and Computational Geomechanics" by Dimitrios Kolymbas
“Advanced Mathematical and Computational Geomechanics” Book Review: The latest version of the book elaborates on contemporary mathematical and computational techniques and models used to simulate a range of intriguing issues, such as settlements, the stability of excavations, tunnels, offshore platforms, landslides, earthquakes, and liquefaction. It encompasses a wide array of topics, including a compilation of papers presented at the three Euro Conferences GeoMath (“Mathematical Methods in Geomechanics”) hosted between 2000 and 2002 in Innsbruck, Austria, and Horto, Greece.

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10."Constitutive Modeling of Geomaterials: Advances and New Applications (Springer Series in Geomechanics and Geoengineering)" by Qiang Yang and Hong Zheng
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2. Computational Geomechanics

 
1."Computational Geomechanics (Theory and Applications of Transport in Porous Media)" by Arnold Verruijt
“Computational Geomechanics (Theory and Applications of Transport in Porous Media)” Book Review: The focus of this book is on computational Geomechanics, covering modern techniques used to solve complex engineering problems related to geotechnical materials such as soil and rock. It provides an introduction to the methods, basic principles of geotechnical phenomena, and numerical methods for analysis. Full computer programs, written in the Pascal language, are provided throughout the book to support the detailed discussions and explanations of various applications and methods. This book is a valuable resource for students studying Geomechanics.

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2."Modern Trends in Geomechanics (Springer Proceedings in Physics)" by Wei Wu and Hai-Sui Yu
“Modern Trends in Geomechanics (Springer Proceedings in Physics)” Book Review: The focus of this book is on the latest model developments in Geomechanics. It covers a wide range of topics including physical scales, micromechanics at the grain level, laboratory and field testing, constituent modeling, and numerical analysis. In addition, the book addresses thermodynamics, multiphase continua and transport phenomena, grain crushing, and damage. Recent advancements, future research directions, and current challenges are extensively discussed throughout the book. This book is an essential reference for students of Geomechanics and geotechnical engineering.

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3."Numerical Methods and Constitutive Modelling in Geomechanics (CISM International Centre for Mechanical Sciences)" by Chandrakant S Desai and Giancarlo Gioda
“Numerical Methods and Constitutive Modelling in Geomechanics (CISM International Centre for Mechanical Sciences)” Book Review: This book covers the application of numerical methods in constitutive modelling for geomechanics. The topics discussed include the use of finite element and boundary element methods, dynamic analysis of inelastic and saturated soils, and solutions for seepage, consolidation, and coupled problems. Additionally, it covers the analysis of soil-structure interaction problems, numerical procedures for interpreting field measurements, and analysis of tunnels and underground openings. The book also focuses on computer-oriented techniques and is designed to benefit students in geotechnical and geomechanical engineering.

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4."Rigidly Framed Earth Retaining Structures (Springer Series in Geomechanics and Geoengineering)" by Walid Aboumoussa and Magued Iskander
“Rigidly Framed Earth Retaining Structures (Springer Series in Geomechanics and Geoengineering)” Book Review: The fundamental principles of rigidly framed earth retaining structures are explained in this book. It discusses the relationship between temperature and earth pressure that act on these structures, and highlights the significance of thermal cycles on their structural integrity. The book also includes well-labeled figures and diagrams to aid in comprehending the topics covered. It is a valuable resource for students of geomechanics and geoengineering.

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5."Continuous and Discontinuous Modelling of Fracture in Concrete Using FEM (Springer Series in Geomechanics and Geoengineering)" by Jacek Tejchman and Jerzy Bobiński
“Continuous and Discontinuous Modelling of Fracture in Concrete Using FEM (Springer Series in Geomechanics and Geoengineering)” Book Review: This book provides an explanation of the quasi-static fracture process through the use of constituent models within the context of continuum mechanics. It covers topics such as continuous and discontinuous modelling, isotropic elasto-plasticity, isotropic damage, and anisotropic smeared crack models. The book also delves into the discontinuous finite element approach, the extended finite element method (XFEM), finite element analysis, and bending and shear extension. It covers the behavior of concrete beams under cyclic loading through the elasto-plastic damage approach, with numerical results and full-scale tests provided in detail. This book is aimed at students studying geomechanics and geoengineering.

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6."Strength Analysis in Geomechanics (Springer Series in Geomechanics and Geoengineering)" by Serguey A Elsoufiev
“Strength Analysis in Geomechanics (Springer Series in Geomechanics and Geoengineering)” Book Review: The book introduces a new approach to address various geomechanical issues, such as soil fractures, their significant impact, and non-linear computations. It offers detailed explanations of the methods employed. Additionally, strength analyses are conducted on five types of physical and geometrical nonlinearity. The book is an excellent resource for geomechanics and geoengineering students seeking to expand their knowledge.

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7."Bifurcations, Instabilities and Degradations in Geomaterials (Springer Series in Geomechanics and Geoengineering)" by Richard Wan and Mustafa Alsaleh
“Bifurcations, Instabilities and Degradations in Geomaterials (Springer Series in Geomechanics and Geoengineering)” Book Review: This book explores bifurcation, instabilities, and degradation in Geomaterials, covering topics such as localized deformation depending on stress, density, microstructure, and loading conditions. It also delves into cyclic loading, aging, weathering, and capillary effects. Comprising papers presented at the 2018 IWBDG, the book features discussions of various engineering applications, including energy resource extraction and soil machine interactions. It is a valuable resource for students of Geomechanics and geoengineering.

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8."Boundary Element Method in Geomechanics (Lecture Notes in Engineering)" by W S Venturini
“Boundary Element Method in Geomechanics (Lecture Notes in Engineering)” Book Review: This book presents the application of the boundary element method in geomechanics, covering topics such as stress analysis in geo-materials, linear theories, various types of soil and rock materials and loading. It also discusses IN-SITU stress conditions, time-dependent effects, and discontinuities in non-homogeneous media. The book provides numerical solutions to problems in continuum mechanics, using the techniques mentioned. It is a valuable resource for students studying geomechanics and geoengineering.

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3. Environmental Geomechanics

 
1."Minerals in Soil Environments" by Dixon J B and Weed S B
Book Review: The book provides an introduction to mineralogy and its applications in soil and earth science. It covers topics such as the fundamentals of mineralogy, surface chemistry, mineral equilibria, soil organic matter, and mineral occurrence. Additionally, the book features a dedicated chapter on the occurrence of minerals in soils. This resource will be useful for students and researchers in the field of earth and soil science.

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2."Geomechanics and Water Engineering in Environmental Management" by R N Chowdhury
“Geomechanics and Water Engineering in Environmental Management” Book Review: This book provides an introduction to the techniques and concepts essential for environmental management. Its chapters focus on integrated studies, environmental constraints and effects, and the behavior of earth masses. To offer practical knowledge and relatable content, the book includes various regional and case studies. It is beneficial for students and professionals in water engineering, geomechanics, geology, and mining. The book serves as a bridge between students and practicing engineers in these fields.

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3."Environmental Geomechanics" by Bernard Schrefler
“Environmental Geomechanics” Book Review: This book provides an introduction to the fundamentals of environmental geomechanics. The first part of the book covers natural hazards such as subsidence, soil instability, rockslides, mudslides, and degradation of buildings and monuments caused by pollution and climate change. The second part of the book focuses on pollution and covers topics such as contaminated sites, oil pollution, decontamination methods, waste management, and disposal. The book discusses various environmental issues and presents numerical and experimental techniques required to address them. This book is useful for students and professionals in fields such as water engineering, geomechanics, geology, and environmental science. It serves as a bridge between theory and practice in the field.

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4."Geomechanics in Soil, Rock, and Environmental Engineering" by John Small
“Geomechanics in Soil, Rock, and Environmental Engineering” Book Review: The book provides both theoretical and practical perspectives on various topics including shallow and deep foundations, retaining structures, excavation, and tunneling. It explains in detail the use of the finite element method and finite layer method to address various issues. The latest applications of these techniques in soil mechanics, rock mechanics, and environmental engineering are emphasized in the book. It also includes many references and topics that will be beneficial for further research. This book is ideal for students and professionals in the fields of geomechanics and geotechnical engineering.

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5."Reservoir Geomechanics" by Mark D Zoback
“Reservoir Geomechanics” Book Review: The book provides an overview of fundamental principles, concepts, and techniques related to stress, pore pressure, and relevant laws. These principles are applied to describe rock deformation and failure. Additionally, the book covers wellbore failures and stress measurement techniques for deep wells. The final section of the book focuses on the practical applications of these techniques across various fields. The book includes a wealth of theory and numerous examples, with illustrative figures, diagrams, flow charts, and graphs. It is intended for use by geoscientists and engineers working in the petroleum and geothermal industries, as well as research scientists interested in stress measurement and its applications.

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6."Geotechnical Earthquake Engineering" by Ikuo Towhata
“Geotechnical Earthquake Engineering” Book Review: This well-organized and concise book covers all the fundamental concepts and concerns pertaining to earthquake geotechnical engineering. Its chapters comprehensively address earthquake hazards, causes and mechanisms, complex nonlinear soil behavior, earthquake response and mitigation technologies. The text incorporates data and information obtained from earthquake damage investigations, including ground motion, landslides, earth pressure, fault action, and liquefaction. The book’s content is based on a combination of experimental studies, laboratory tests, field investigations, and diverse analyses. Each chapter offers several exercises and questions. This book is an outstanding resource for geotechnical engineers and engineering geologists.

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7."Environmental Geomechanics" by Bernhard A Schrefler
“Environmental Geomechanics” Book Review: The objective of this book is to provide an introduction to the extensive theory of Environmental Geomechanics. The chapters cover the behavior of deforming geomaterials, as well as fluid flow and the transport of substances. The book emphasizes the transport of contaminants and mass transport encountered in various fluids, such as water, water vapor, air, and oil. Furthermore, this text discusses several challenges that geomechanics professionals face, including waste disposal and durability problems.

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8."Deepwater Foundations and Pipeline Geomechanics" by William O McCarron
“Deepwater Foundations and Pipeline Geomechanics” Book Review: The book provides an up-to-date account of the development of oil field production and subsea flowlines. The initial chapters delve into topics such as deepwater foundations, pipeline geomechanics, deepwater foundation designs, driven pile design, and pipeline geohazards. The book includes the latest advances in geophysical data acquisition and is written from a practical standpoint. The remaining chapters cover offshore foundations, soil-pipe interaction, constitutive modeling for geomaterials, and finite element applications. The text also includes a chapter dedicated to the application of centrifuge models to deepwater geotechnical problems. It is an ideal resource for students of civil and environmental engineering, as well as practicing engineers in the offshore engineering industry.

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9."Innovative Numerical Modelling in Geomechanics" by Luis Ribeiro e Sousa
“Innovative Numerical Modelling in Geomechanics” Book Review: The book is a resource for students of civil, mining, and environmental engineering, as well as engineering geologists, academics, and researchers in the field of geotechnics. It is well-organized and covers a wide range of topics in geotechnical engineering, including environmental geotechnics, open and underground excavations, foundations, embankments, and rockfill dams, computational systems, oil geomechanics, Bayesian networks, and data mining techniques. The book provides detailed discussions on recent developments, risks, and hazards in geotechnical engineering, and is supported by numerous flow charts, diagrams, and graphs.

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We have put a lot of effort into researching the best books on Geomechanics and came out with a recommended list and their reviews. If any more book needs to be added to this list, please email us. We are working on free pdf downloads for books on Geomechanics and will publish the download link here. Fill out this Geomechanics books pdf download" request form for download notification.

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