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2D 3D Boundary Element Programming in Petroleum Engineering and Geomechanics

2D 3D Boundary Element Programming in Petroleum Engineering and Geomechanics
  • Author : Nobuo Morita
  • Publsiher : Elsevier
  • Release : 17 November 2020
  • ISBN : 0128238399
  • Pages : 478 pages
  • Rating : 4/5 from 21 ratings
GET THIS BOOK2D 3D Boundary Element Programming in Petroleum Engineering and Geomechanics

Summary:
2D/3D Boundary Element Programming in Petroleum Engineering and Geomechanics, Volume 72, is designed to make it easy for researchers, engineers and students to begin writing boundary element programs. This reference covers the fundamentals, theoretical developments, programming and applications. Both fluid flow through porous media and structural problems are used for coding exercises. Included computer programs may be used as starting codes; after modifications, they can be applied to real world problems. The book covers topics around mesh generation, 3D boundary element coding, and interface coding for controlling mesh generation, and plotting results. Includes interactive 2D and 3D coding exercises that readers can modify based on need Features research on the most recent developments in indirect and dual boundary element methods Contains case studies showing examples and applications of the theories presented in the book


2D/3D Boundary Element Programming in Petroleum Engineering and Geomechanics

2D/3D Boundary Element Programming in Petroleum Engineering and Geomechanics
  • Author : Nobuo Morita
  • Publisher : Elsevier
  • Release : 17 November 2020
GET THIS BOOK2D/3D Boundary Element Programming in Petroleum Engineering and Geomechanics

2D/3D Boundary Element Programming in Petroleum Engineering and Geomechanics, Volume 72, is designed to make it easy for researchers, engineers and students to begin writing boundary element programs. This reference covers the fundamentals, theoretical developments, programming and applications. Both fluid flow through porous media and structural problems are used for coding exercises. Included computer programs may be used as starting codes; after modifications, they can be applied to real world problems. The book covers topics around mesh generation, 3D boundary

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Finite Element Programming in Non-linear Geomechanics and Transient Flow

Finite Element Programming in Non-linear Geomechanics and Transient Flow
  • Author : Nobuo Morita
  • Publisher : Gulf Professional Publishing
  • Release : 21 August 2021
GET THIS BOOKFinite Element Programming in Non-linear Geomechanics and Transient Flow

Finite Element Programming in Non-linear Geomechanics and Transient Flow delivers a textbook reference for both students and practitioners alike, with provided codes to understand and modify. Starting with the fundamentals, the reference covers the basics of finite element methods, including coupling geomechanics and transient fluid flow. The next phase moves from theory into practical application from programs Flow3D and Geo3D, utilizing source codes to solve real field challenges. Stability of perforations during oil and gas production, sand production

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Well Completion Design

Well Completion Design
  • Author : Jonathan Bellarby
  • Publisher : Elsevier
  • Release : 13 April 2009
GET THIS BOOKWell Completion Design

Completions are the conduit between hydrocarbon reservoirs and surface facilities. They are a fundamental part of any hydrocarbon field development project. The have to be designed for safely maximising the hydrocarbon recovery from the well and may have to last for many years under ever changing conditions. Issues include: connection with the reservoir rock, avoiding sand production, selecting the correct interval, pumps and other forms of artificial lift, safety and integrity, equipment selection and installation and future well interventions. * Course

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The Combined Finite-Discrete Element Method

The Combined Finite-Discrete Element Method
  • Author : Antonio A. Munjiza
  • Publisher : John Wiley & Sons
  • Release : 21 April 2004
GET THIS BOOKThe Combined Finite-Discrete Element Method

The combined finite discrete element method is a relatively new computational tool aimed at problems involving static and / or dynamic behaviour of systems involving a large number of solid deformable bodies. Such problems include fragmentation using explosives (e.g rock blasting), impacts, demolition (collapsing buildings), blast loads, digging and loading processes, and powder technology. The combined finite-discrete element method - a natural extension of both discrete and finite element methods - allows researchers to model problems involving the deformability of

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Fundamentals of Fractured Reservoir Engineering

Fundamentals of Fractured Reservoir Engineering
  • Author : T.D. van Golf-Racht
  • Publisher : Elsevier
  • Release : 01 April 1982
GET THIS BOOKFundamentals of Fractured Reservoir Engineering

In the modem language of reservoir engineering by reservoir description is understood the totality of basic local information concerning the reservoir rock and fluids which by various procedures are extrapolated over the entire reservoir. Fracture detection, evaluation and processing is another essential step in the process of fractured reservoir description. In chapter 2, all parameters related to fracture density and fracture intensity, together with various procedures of data processing are discussed in detail. After a number of field examples, developed in

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Particulate Discrete Element Modelling

Particulate Discrete Element Modelling
  • Author : Catherine O'Sullivan
  • Publisher : CRC Press
  • Release : 21 April 2014
GET THIS BOOKParticulate Discrete Element Modelling

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

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Computational and Experimental Simulations in Engineering

Computational and Experimental Simulations in Engineering
  • Author : Hiroshi Okada,Satya N. Atluri
  • Publisher : Springer Nature
  • Release : 16 November 2019
GET THIS BOOKComputational and Experimental Simulations in Engineering

This book gathers the latest advances, innovations, and applications in the field of computational engineering, as presented by leading international researchers and engineers at the 24th International Conference on Computational & Experimental Engineering and Sciences (ICCES), held in Tokyo, Japan on March 25-28, 2019. ICCES covers all aspects of applied sciences and engineering: theoretical, analytical, computational, and experimental studies and solutions of problems in the physical, chemical, biological, mechanical, electrical, and mathematical sciences. As such, the book discusses highly diverse topics, including

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Thermo-Hydro-Mechanical-Chemical Processes in Fractured Porous Media: Modelling and Benchmarking

Thermo-Hydro-Mechanical-Chemical Processes in Fractured Porous Media: Modelling and Benchmarking
  • Author : Olaf Kolditz,Uwe-Jens Görke,Hua Shao,Wenqing Wang,Sebastian Bauer
  • Publisher : Springer
  • Release : 29 April 2016
GET THIS BOOKThermo-Hydro-Mechanical-Chemical Processes in Fractured Porous Media: Modelling and Benchmarking

This book presents a new suite of benchmarks for and examples of porous media mechanics collected over the last two years. It continues the assembly of benchmarks and examples for porous media mechanics published in 2014. The book covers various applications in the geosciences, geotechnics, geothermal energy, and geological waste deposition. The analysis of thermo-hydro-mechanical-chemical (THMC) processes is essential to many applications in environmental engineering, such as geological waste deposition, geothermal energy utilisation, carbon capture and storage, water resources management, hydrology,

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Rock Slope Engineering

Rock Slope Engineering
  • Author : Duncan C. Wyllie
  • Publisher : CRC Press
  • Release : 18 September 2017
GET THIS BOOKRock Slope Engineering

Rock Slope Engineering covers the investigation, design, excavation and remediation of man-made rock cuts and natural slopes, primarily for civil engineering applications. It presents design information on structural geology, shear strength of rock and ground water, including weathered rock. Slope design methods are discussed for planar, wedge, circular and toppling failures, including seismic design and numerical analysis. Information is also provided on blasting, slope stabilization, movement monitoring and civil engineering applications. This fifth edition has been extensively up-dated, with new

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Nonlinear Finite Element Analysis of Solids and Structures

Nonlinear Finite Element Analysis of Solids and Structures
  • Author : René de Borst,Mike A. Crisfield,Joris J. C. Remmers,Clemens V. Verhoosel
  • Publisher : John Wiley & Sons
  • Release : 25 July 2012
GET THIS BOOKNonlinear Finite Element Analysis of Solids and Structures

Built upon the two original books by Mike Crisfield and theirown lecture notes, renowned scientist René de Borst and histeam offer a thoroughly updated yet condensed edition that retainsand builds upon the excellent reputation and appeal amongststudents and engineers alike for which Crisfield's first edition isacclaimed. Together with numerous additions and updates, the new authorshave retained the core content of the original publication, whilebringing an improved focus on new developments and ideas. Thisedition offers the latest insights in non-linear finite

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Stress Field of the Earth's Crust

Stress Field of the Earth's Crust
  • Author : Arno Zang,Ove Stephansson
  • Publisher : Springer Science & Business Media
  • Release : 06 December 2009
GET THIS BOOKStress Field of the Earth's Crust

Stress Field of the Earth’s Crust is based on lecture notes prepared for a course offered to graduate students in the Earth sciences and engineering at University of Potsdam. In my opinion, it will undoubtedly also become a standard reference book on the desk of most scientists working with rocks, such as geophysicists, structural geologists, rock mechanics experts, as well as geotechnical and petroleum en- neers. That is because this book is concerned with what is probably the most

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Fundamentals of Enhanced Oil Recovery Methods for Unconventional Oil Reservoirs

Fundamentals of Enhanced Oil Recovery Methods for Unconventional Oil Reservoirs
  • Author : Dheiaa Alfarge,Mingzhen Wei,Baojun Bai
  • Publisher : Elsevier
  • Release : 18 September 2020
GET THIS BOOKFundamentals of Enhanced Oil Recovery Methods for Unconventional Oil Reservoirs

Fundamentals of Enhanced Oil Recovery Methods for Unconventional Oil Reservoirs, Volume 67 provides important guidance on which EOR methods work in shale and tight oil reservoirs. This book helps readers learn the main fluid and rock properties of shale and tight reservoirs—which are the main target for EOR techniques—and understand the physical and chemical mechanisms for the injected EOR fluids to enhance oil recovery in shale and tight oil reservoirs. The book explains the effects of complex hydraulic fractures

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Recent Developments of Soil Mechanics and Geotechnics in Theory and Practice

Recent Developments of Soil Mechanics and Geotechnics in Theory and Practice
  • Author : Theodoros Triantafyllidis
  • Publisher : Springer Nature
  • Release : 20 August 2019
GET THIS BOOKRecent Developments of Soil Mechanics and Geotechnics in Theory and Practice

This book provides essential insights into recent developments in fundamental geotechnical engineering research. Special emphasis is given to a new family of constitutive soil description methods, which take into account the recent loading history and the dilatancy effects. Particular attention is also paid to the numerical implementation of multi-phase material under dynamic loads, and to geotechnical installation processes. In turn, the book addresses implementation problems concerning large deformations in soils during piling operations or densification processes, and discusses the limitations

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