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Williams
сообщение 23.07.2020 - 17:52
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Yong Bai, Zhao-Dong Xu - Structural Dynamics, Second Edition

Wiley, 2019
epub, 451 pages, english
ISBN 978-1-119-60560-7




Across many disciplines of engineering, dynamic problems of structures are a primary concern. Civil engineers, mechanical engineers, aircraft engineers, ocean engineers, and engineering students encounter these problems every day, and it is up to them systematically to grasp the basic concepts, calculation principles and calculation methods of structural dynamics. This book focuses on the basic theories and concepts, as well as the application and background of theories and concepts in engineering. Since the basic principles and methods of dynamics are applied to other various engineering fields, this book can also be used as a reference for practicing engineers in the field across many multiple disciplines and for undergraduate and graduate students in other majors as well. The main contents include basic theory of dynamics, establishment of equation of motion, single degree of freedom systems, multi-degree of freedom systems, distributed-parameter systems, stochastic structural vibrations, research projects of structural dynamics, and structural dynamics of marine pipeline and riser.

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Williams
сообщение 3.08.2020 - 08:44
Сообщение #122


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Timon Rabczuk, Jeong-Hoon Song, Xiaoying Zhuang, Cosmin Anitescu - Extended Finite Element and Meshfree Methods, First Edition

Academic Press, 2020
pdf, 629 pages, english
ISBN 978-0-12-814106-9




Extended Finite Element and Meshfree Methods provides an overview of, and investigates, recent developments in extended finite elements with a focus on applications to material failure in statics and dynamics. This class of methods is ideally suited for applications, such as crack propagation, two-phase flow, fluid-structure-interaction, optimization and inverse analysis because they do not require any remeshing. These methods include the original extended finite element method, smoothed extended finite element method (XFEM), phantom node method, extended meshfree methods, numerical manifold method and extended isogeometric analysis.
This book also addresses their implementation and provides small MATLAB codes on each sub-topic. Also discussed are the challenges and efficient algorithms for tracking the crack path which plays an important role for complex engineering applications.

- Explains all the important theory behind XFEM and meshfree methods.
- Provides advice on how to implement XFEM for a range of practical purposes, along with helpful MATLAB codes.
- Draws on the latest research to explore new topics, such as the applications of XFEM to shell formulations, and extended meshfree and extended isogeometric methods.
- Introduces alternative modeling methods to help readers decide what is most appropriate for their work.

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istigatore
сообщение 5.08.2020 - 22:27
Сообщение #123


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Learn C++ Quickly: A Complete Beginner’s Guide to Learning C++, Even If You’re New to Programming
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iron1maiden
сообщение 7.08.2020 - 01:27
Сообщение #124


Новичок
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New HD Vector Maps Using AI

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Сообщение отредактировал iron1maiden - 7.08.2020 - 01:30
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istigatore
сообщение 12.08.2020 - 20:30
Сообщение #125


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The Finite Element Method: Fundamentals and Applications in Civil, Hydraulic, Mechanical and Aeronautical Engineering
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Williams
сообщение 15.08.2020 - 18:55
Сообщение #126


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Peter Childs - Mechanical Design Engineering Handbook, Second Edition

Elsevier, 2019
pdf, 982 pages, english
ISBN 978-0-08-102367-9




Mechanical Design Engineering Handbook, Second Edition, is a straight-talking and forward-thinking reference covering the design, specification, selection, use and integration of the machine elements that are fundamental to a wide range of engineering applications. This updated edition includes new material on tolerancing, alternative approaches to design, and robotics, as well as references to the latest ISO and US engineering regulations. Sections cover bearings, shafts, gears, seals, belts and chains, clutches and brakes, springs, fasteners, pneumatics and hydraulics, amongst other core mechanical elements. This practical handbook is an ideal shelf reference for those working in mechanical design across a variety of industries.

In addition, it is also a valuable learning resource for advanced students undertaking engineering design modules and projects as part of broader mechanical, aerospace, automotive and manufacturing programs.

Key Features
- Presents a clear, concise text that explains key component technology, with step-by-step procedures, fully worked design scenarios, component images and cross-sectional line drawings.
- Provides essential data, equations and interactive ancillaries, including calculation spreadsheets, to inform decision-making, design evaluation and incorporation of components into overall designs.
- Includes procedures and methods that are covered to national and international standards where appropriate.
- New to this edition: flow-charts to help select technology; Failure Mode Effects Analysis (FMEA), product, service and system design models, Functional Analysis Diagrams (FADs), Design for Excellence (DFX), Design for MADE, and the process of remanufacture.

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istigatore
сообщение 19.08.2020 - 19:18
Сообщение #127


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Petro-physics and Rock Physics of Carbonate Reservoirs: Likely Elucidations and Way Forward
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Williams
сообщение 20.08.2020 - 10:21
Сообщение #128


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Singiresu Rao - The Finite Element Method in Engineering, Sixth Edition

Elsevier, 2018
pdf, 754 pages, english
ISBN 978-0-12-811768-2




Extended Finite Element and Meshfree Methods provides an overview of, and investigates, recent developments in extended finite elements with a focus on applications to material failure in statics and dynamics. This class of methods is ideally suited for applications, such as crack propagation, two-phase flow, fluid-structure-interaction, optimization and inverse analysis because they do not require any remeshing. These methods include the original extended finite element method, smoothed extended finite element method (XFEM), phantom node method, extended meshfree methods, numerical manifold method and extended isogeometric analysis.

This book also addresses their implementation and provides small MATLAB codes on each sub-topic. Also discussed are the challenges and efficient algorithms for tracking the crack path which plays an important role for complex engineering applications.

- Explains all the important theory behind XFEM and meshfree methods.
- Provides advice on how to implement XFEM for a range of practical purposes, along with helpful MATLAB codes.
- Draws on the latest research to explore new topics, such as the applications of XFEM to shell formulations, and extended meshfree and extended isogeometric methods.
- Introduces alternative modeling methods to help readers decide what is most appropriate for their work.

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Williams
сообщение 22.08.2020 - 11:54
Сообщение #129


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Mustafa Mahamid - Cross-Laminated Timber Design. Structural Properties, Standards, and Safety

McGraw Hill, 2020
pdf, 306 pages, english
ISBN 978-1-26-011800-1




This comprehensive guide explains the design standards, safety protocols, and codes and regulations engineers need to know to use cross-laminated timber as a structural building material. Featuring contributions from experts in the field, Cross-Laminated Timber Design: Structural Properties, Standards, and Safety introduces the material properties of CLT and goes on to cover the recommended lateral and vertical design techniques. You will get clear explanations of all relevant NDS, ASCE 7, and IBC provisions along with real-world examples and case studies. Sustainability and environmental issues are discussed in full detail.

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Williams
сообщение 27.08.2020 - 22:20
Сообщение #130


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Bahman Zohuri - Functionality, Advancements and Industrial Applications of Heat Pipes

Elsevier, 2020
pdf, 383 pages, english
ISBN: 978-0-12-819819-3




Functionality, Advancements and Industrial Applications of Heat Pipes introduces heat pipe technologies and highlights a variety of applications for passive thermal control. The book begins with a thorough analysis of heat pipe infrastructure, including principles of operation, temperature limits, reliability and lessons learned from worked examples and case studies. It also presents a concise design guideline for the assembly of heat pipes. The second part moves on to consider a variety of modern day applications for the heat pipe principles discussed, covering nuclear and solar thermal energy engineering facilities as well as applications in space, in the sea and in the air. A final section works through manufacturing elements of different types of heat pipe to ensure they are well maintained and remain fully operational. This section includes the cleaning of parts, the assembly of the heat pipe, an analysis of gas blockages and how to deal with them, as well as performance versification.

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Williams
сообщение 31.08.2020 - 09:16
Сообщение #131


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Robert Fox, Alan McDonald, John Mitchell - Fox and McDonald's Introduction to Fluid Mechanics, Tenth Edition

Wiley, 2020
pdf, 609 pages, english
ISBN: 978-1-119-61649-8




Through ten editions, Fox and McDonald's Introduction to Fluid Mechanics has helped students understand the physical concepts, basic principles, and analysis methods of fluid mechanics. This market-leading textbook provides a balanced, systematic approach to mastering critical concepts with the proven Fox-McDonald solution methodology. In-depth yet accessible chapters present governing equations, clearly state assumptions, and relate mathematical results to corresponding physical behavior. Emphasis is placed on the use of control volumes to support a practical, theoretically-inclusive problem-solving approach to the subject. Each comprehensive chapter includes numerous, easy-to-follow examples that illustrate good solution technique and explain challenging points. A broad range of carefully selected topics describe how to apply the governing equations to various problems, and explain physical concepts to enable students to model real-world fluid flow situations. Topics include flow measurement, dimensional analysis and similitude, flow in pipes, ducts, and open channels, fluid machinery, and more. To enhance student learning, the book incorporates numerous pedagogical features including chapter summaries and learning objectives, end-of-chapter problems, useful equations, and design and open-ended problems that encourage students to apply fluid mechanics principles to the design of devices and systems.

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Williams
сообщение 1.09.2020 - 11:37
Сообщение #132


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Les Skinner - Hydraulic Rig Technology and Operations (Gulf Drilling Guides)

Elsevier, 2019
pdf, 538 pages, english
ISBN: 978-0-12-817352-7




Hydraulic Rig Technology and Operations delivers the full spectrum of topics critical to running a hydraulic rig. Also referred to as a snubbing unit, this single product covers all the specific specialties and knowledge needed to keep production going, from their history, to components and equipment. Also included are the practical calculations, uses, drilling examples, and technology used today. Supported by definitions, seal materials and shapes, and Q&A sections within chapters, this book gives drilling engineers the answers they need to effectively run and manage hydraulic rigs from anywhere in the world.

- Presents the full range of hydraulic machinery in drilling engineering, including basic theory, calculations, definitions and name conventions.
- Helps readers gain practical knowledge on day-to-day operations, troubleshooting, and decision-making through real-life examples.
- Includes Q&A quizzes that help users test their knowledge.

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Williams
сообщение 7.09.2020 - 11:27
Сообщение #133


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Jung-Chul Eun - Handbook of Engineering Practice of Materials and Corrosion

Springer, 2019
pdf, 912 pages, english
ISBN: 978-3-030-36429-8




The main purpose of this guidebook is to suggest effective engineering data which are based on the requirements in several industrial codes, standards, regulations, specifications, and regulations, such as ASME, ASTM, API, ANSI, AWS, NACE, MSS, NFPA, TEMA, PIP, NBIC, OSHA, other American standards, CSA, and foreign standards including typical requirements and recommendations in company/project specifications. One of the major purposes is to introduce practical references for a checklist as well as more detailed engineering work in one location and to provide the following:
– Typically used project’s standards, guidelines, and application scope which are not covered in industrial codes and standards;
– Engineering practice and experience for the limitations of codes and standards;
– Engineering suggestions and test results from journals and papers with new technologies;
– Case studies and various reference resources;
– Correct recognition and effective spec deviation through various comparisons.

All information in industrial codes and standards are based on the current version unless otherwise specified and except some foreign standards. All mechanical data which are shown in this book are for reference only. Therefore, for detail engineering of mechanical design, it is advised to find the applicable codes and standards in accordance with the project requirement and/or process conditions. Most codes and standards have the section for the reference standards which are related with themselves. In some cases, the reference standards may indicate still old versions. The unit conversions in this book are from conversion calculation or directly each code and standard. Therefore, some converted values between the similar codes and standards may not show the same numbers in this book because the committees of codes and standards have been pursuing unit conversion by their own rounding-up system.

Many tables and figures are directly quoted from the codes and standards; however, some commentary notes which are based on the author’s experience and lessons learned are added as footnotes under the tables and figures in order to optimize engineering work, promote the successful use of the full contents, minimize error and mistake, and suggest for the next version. All specified para. (paragraphs), Fig. (figures), and tables are based on this book unless otherwise noted the directly quoted code or standard. Users and readers may be able to apply ”should or may” to ”must/shall or should” for the requirements in this book when the user wants to utilize the contents for the project specifications.

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Williams
сообщение 10.09.2020 - 15:15
Сообщение #134


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Alain Dassargues - Hydrogeology: Groundwater Science and Engineering

CRC, 2019
pdf, 493 pages, english
ISBN-13: 978-1-4987-4400-3




One might wonder whether we need yet another hydrogeology textbook. Before we express our opinion on this, let us evaluate what this new book has to offer. Written for an undergraduate and graduate audience, it brings together both the science and the engineering of hydrogeology. The author draws on his more than 30 years of experience as a scientist and engineer, but especially as a lecturer in courses on hydrogeology and groundwater modeling. As a professor in hydrogeology and environmental geology at the University of Liиge in Belgium and part-time professor at KU Leuven (1995–2012), his extensive teaching experience has clearly shaped this highly accessible text. The book covers a wide range of topics, from the basics of groundwater occurrence and flow (Chapters 1–4 and 9) to conductivity measurements (Chapter 5), land subsidence (Chapter 6), chemistry and contaminant transport (Chapters 7–10), heat transfer (Chapter 11), and modeling (Chapters 12 and 13).

The preamble to Chapter 1 sets out the philosophy of the author for the science and engineering of groundwater, which has to serve modern approaches such as, for example, the water-energy-food nexus for managing our water resources. Definitions are provided for hydrogeology and groundwater. For the latter, a contemporary definition of ”water underground in pore spaces and fractures” is used. This deviates from the classical definition of ”subsurface water beneath the water table,” which was already recognized as a limitation by Freeze and Cherry (1979), since the ”study of groundwater must rest on an understanding of the subsurface water regime in a broader sense.” Chapter 2 presents a comprehensive overview of the hydrological cycle, including sections on evapotranspiration, recharge, and baseflow estimation methods. Chapter 3 elaborates the basic terminology of the science of groundwater and its occurrence in different geological environments. Next, Chapter 4 details the main laws and concepts of saturated groundwater flow. The book follows a mathematical and quantitative presentation approach, which is evident in this chapter from the very clear step-by-step derivation of the groundwater flow equations for steady and transient state in two and three dimensions for confined and unconfined conditions. Remarkable is the absence of the typical discussion in hydrogeology textbooks of Tothian groundwater flow systems. Instead, a strong warning is issued that the analytical approaches to calculate flownets ”are of limited interest and can even be misleading” because the water table is often prescribed and isotropic-homogeneous conditions are assumed (see also Bresciani et al. 2016). Chapter 5, ”Hydraulic Conductivity Measurements,” is one of the chapters that stands out in this textbook. With 47 pages, this chapter provides an excellent overview of the typical laboratory, slug, and pumping tests. However, it also contains a section on less well-known methods, including the use of air permeameter measurements on outcrops or coring material. Chapter 6 is a succinct and interesting summary of the coupling of geomechanics and groundwater flow, describing the physical relationships between land subsidence and pumping. It also illustrates this appropriately through five case studies of sinking cities. Chapter 7 is a solid ”Introduction to Groundwater Quality and Hydrochemistry,” as its title suggests. In addition, it also discusses groundwater quality standards and sampling and monitoring strategies. Chapter 8 is the second highlight of this book. With 88 pages and 228 references, it is an outstanding primer on contaminant transport. It presents and discusses the physical and chemical processes affecting solutes in groundwater, while solute transport equations are rigorously developed. Other sections expand on non-aqueous phase liquid (NAPL) transport, remediation, tracer tests, transport and residence times, the use of isotopes and environmental tracers, and, finally, vulnerability and protection of groundwater. Chapter 9 concisely discusses flow and transport processes in partially saturated media. The corresponding equations are explained in detail. Similarly, Chapter 10 on ”Salinization and Density Dependent Groundwater Flow and Transport” also includes the formulation of the respective equations. Chapter 11 on ”Heat Transfer in Aquifers and Shallow Geothermy” is a welcome extension of the standard hydrogeological topics generally presented in groundwater textbooks. The use of heat data, as available from new sensors, is strongly increasing in hydrogeology, such as in groundwater–surface water interaction studies and tracer tests. Heat-based methods should be a standard topic in current hydrogeology teaching and therefore in any hydrogeology textbook. Interestingly, the discussion on the use of heat for flux estimation is extended with a description of the characteristics of different shallow thermal energy storage systems. The importance is stressed by the author in stating: ”More generally, the transition toward renewable energy and power supplies necessitates increasingly more projects involving the underground storage of gas (methane, hydrogen, compressed air, and CO2), water and heat. Hydrogeologists are key actors in these projects.” With its total of 114 pages and almost 300 references, the last two chapters (12 and 13) are the final highlight of this book. Those chapters clearly elevate this textbook. On the one side, they are beneficial for an introductory hydrogeology course, and on the other side they are also highly relevant for an advanced groundwater modeling course. Likewise, they will serve the professional with a reference guide on the different methods for groundwater flow and transport modeling. Chapter 12 discusses the purpose of modeling, conceptual model building, initial and boundary conditions, model design and data, calibration, validation, sensitivity analysis, and inverse modeling. Moreover, advanced topics of geostatistical modeling and probability, including multiple-point geostatistics and Bayesian learning, are outlined. In the last chapter, the author discusses the mathematical basis of different numerical techniques for modeling groundwater flow and transport. In addition to the standard finite-difference (MODFLOW) technique, he also explains the finite-element and finite-volume methods and the whole gamut of numerical methods for solute transport.

In a field in which researchers are becoming increasingly specialized, it is a rare feat to have a single-author text covering such a wide range of topics. The style of writing is therefore consistent throughout the book, which is especially apparent in the focus on quantification and the mathematical rigor. This makes the book relevant, not only to its intended audience of undergraduate and graduate students, but also to postgraduates and researchers from other disciplines as a broad introduction to the field of hydrogeology. Finally, its highly up-to-date literature provides us with a reference for years to come.

While the book is comprehensive, it is not complete. The author has made clear choices: groundwater biology, groundwater-dependent ecosystems, groundwater–surface water interaction, hydrogeophysics, and management hardly feature in this book. As an educational tool, its structured style and clear black-and-white figures make it very attractive. On the other hand, it lacks review questions and calculation examples. The book is available in hardback and e-book, and a version in French will be published soon.

To conclude, we return to the initial question: every new textbook on hydrogeology is a further marker of the development of the science and practice of hydrogeology. Although no single textbook can ever be complete, the diversity of texts makes the field of hydrogeology rich. These textbooks capture the expertise of decades of research and teaching. Therefore, they not only become a giant’s shoulder to stand on for a new generation of hydrogeologists, but above all they are a celebration of the steady progress in hydrogeological science.

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Williams
сообщение 13.09.2020 - 01:23
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Catherine Bertrand, Sophie Denimal, Marc Steinmann, Philippe Renard - Eurokarst 2018, Besanзon: Advances in the Hydrogeology of Karst and Carbonate Reservoirs

Springer, 2020
pdf, 243 pages, english
ISBN: 978-3-030-14014-4




This book presents selected papers from the EuroKarst 2018 conference, which highlighted the latest advances in the field of Karst Hydrogeology and Carbonate Reservoirs. The event attracted more than 180 participants. From among their contributions, the papers were selected and subsequently reviewed by the scientific committee to ensure the highest possible quality.

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Williams
сообщение 17.09.2020 - 06:00
Сообщение #136


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W. Larsen Angel - HVAC Design Sourcebook

McGraw Hill, 2020
pdf, 480 pages, english
ISBN: 978-1-26-045725-4




The definitive guide to HVAC design - thoroughly revised for the latest technologies. This fully updated guide covers the entire HVAC system design process from concept to commissioned systems. Written by a recognized HVAC expert, the book illustrates each step through photographs, drawings, and comprehensive discussions. This new edition has been completely refreshed to align with current industry standards and includes several brand-new chapters. HVAC Design Sourcebook, Second Edition contains a chapter-long case study that provides a step-by-step look at the design of a real-world HVAC project.

Coverage includes:
- The design process.
- Piping, valves, and specialties.
- Central plant and air systems.
- Piping and ductwork distribution systems.
- Terminal equipment.
- Variable refrigerant flow systems.

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Williams
сообщение 21.09.2020 - 20:53
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Donald Newnan, Ted Eschenbach, Jerome Lavelle, Neal Lewis - Engineering Economic Analysis, 14th Edition

Oxford University Press, 2020
pdf, 1350 pages, english
ISBN: 978-0-19-093191-9




Engineering Economic Analysis offers comprehensive coverage of financial and economic decision making for engineers, with an emphasis on problem solving, life-cycle costs, and the time value of money. The authors' clear, accessible writing, emphasis on practical applications, and relevant contemporary examples have made this text a perennial bestseller. With its logical organization and extensive ancillary package, Engineering Economic Analysis is widely regarded as a highly effective tool for teaching and learning. This 14th edition includes crucial updates to cover new US tax laws and software that will algorithmically generate and automatically grade homework problems.

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Williams
сообщение 3.10.2020 - 11:16
Сообщение #138


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Shuyu Sun, Tao Zhang - Reservoir Simulations: Machine Learning and Modeling

Elsevier, 2020
pdf, 341 pages, english
ISBN: 978-0-12-820957-8




Reservoir Simulation: Machine Learning and Modeling helps the engineer step into the current and most popular advances in reservoir simulation, learning from current experiments and speeding up potential collaboration opportunities in research and technology. This reference explains common terminology, concepts, and equations through multiple figures and rigorous derivations, better preparing the engineer for the next step forward in a modeling project and avoid repeating existing progress. Well-designed exercises, case studies and numerical examples give the engineer a faster start on advancing their own cases. Both computational methods and engineering cases are explained, bridging the opportunities between computational science and petroleum engineering. This book delivers a critical reference for today’s petroleum and reservoir engineer to optimize more complex developments.

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Williams
сообщение 12.10.2020 - 11:52
Сообщение #139


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R. Winston Revie - Oil and Gas Pipelines: Integrity and Safety Handbook

Wiley, 2015
pdf, 855 pages, english
ISBN: 978-1-118-21671-2




It's a comprehensive and detailed reference guide on the integrity and safety of oil and gas pipelines, both onshore and offshore.

- Covers a wide variety of topics, including design, pipe manufacture, pipeline welding, human factors, residual stresses, mechanical damage, fracture and corrosion, protection, inspection and monitoring, pipeline cleaning, direct assessment, repair, risk management, and abandonment.
- Links modern and vintage practices to help integrity engineers better understand their system and apply up-to-date technology to older infrastructure.
- Includes case histories with examples of solutions to complex problems related to pipeline integrity.
- Includes chapters on stress-based and strain-based design, the latter being a novel type of design that has only recently been investigated by designer firms and regulators.
- Provides information to help those who are responsible to establish procedures for ensuring pipeline integrity and safety.

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Williams
сообщение 15.10.2020 - 13:52
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Ivan Vanicek, Daniel Jirasko, Martin Vanicek - Modern Earth Structures for Transport Engineering, Engineering and Sustainability Aspects

CRC, 2020
pdf, 185 pages, english
ISBN: 978-0-429-26366-8




Earth structures together with foundation structures and underground structures fall under the more general subject matter of geotechnical structures. Under the term geotechnical structures earth structures are the oldest matter of concern, but rather paradoxically in comparison to foundation structures (foundation engineering) and to underground structures (tunnelling), the first monograph covering all aspects of earth structures was written only one decade ago (Vanнček and Vanнček, 2008). Briefly stated, we can use the following categorical explication for the division of geotechnical structures:
- Construction with ground for earth structures, where ground (soil) is the natural and most used construction material;
- Construction on the ground for foundation structures;
- Construction in the ground for underground structures.

This book will deal only with earth structures for transport engineering, although it is recognized that earth structures for water or environmental engineering also generate other interesting concerns. Embankments and cuts of motorways and railways comprise the main subject of the presented material. However, the main recommendations are valid also for airfields and parking areas.

Development in each profession is progressing in the form of individual steps, wherein a hierarchical part relates to new knowledge or to pressure from society to improve something, and a lateral part is more connected with the implementation of this knowledge into general practice. For earth structures, development was very slow up to the beginning of the 20th century, when design was mostly based on previous experience. The first significant advance is usually connected with the principle of effective stresses and the theory of consolidation (Terzaghi, 1925, 1943). Other advances were made in the 1950s to 1970s with new testing devices Bishop and Henkel (1957, 1962), the principle of stress path (Lambe and Whitman, 1969), and the implementation of numerical methods for the design of structures (Zienkiewicz, 1967).

Present-day demands on earth structures in transport engineering are strongly influenced by two aspects.

The technical engineering aspect involves structure safety, along with optimal design and implementation. From this perspective, all new knowledge should be applied. Nevertheless, the basic approach to safety and optimal design is strongly affected by geotechnical risk, to which this design and structure implementation is connected. However, to guarantee a certain level of safety for a certain structure, some standards should be accepted. For example, in Europe these standards are included in Eurocode 7 (EC 7) Geotechnical Design (EN 1997).

The second aspect is strongly connected with acceptance of the principle of sustainable development, which was specified at the highest level during the international ”Environmental Summit” in Rio de Janeiro in 1992. Gro Harlem Brundtland, the Norwegian prime minister, used for example the following definition of sustainable development: ”Development which responds to the needs of the present without compromising the capacity of future generations to respond to their needs.” However, the sustainability approach strongly relates to two other principles, which are nowadays specified for earth structures in transport engineering – the principles of availability and affordability.

Both aspects form the essence of this book, and therefore the term ”modern” can be used for this stage of development. The authors recognize with great appreciation support from the Czech Technical University in Prague where the research project CESTI (the Centre for Effective and Sustainable Transport Infrastructure) is being carried out.

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