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Modern Completion Technology for Oil and Gas Wells /

The latest oil and gas well completion technologies and best practices. Increase oil and gas production and maximize revenue generation using the start-to-finish completion procedures contained in this hands-on guide. Written by a pair of energy production experts, Modern Completion Technology for O...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autores principales: Zhu, Ding (Autor), Furui, Kenji (Autor)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: New York, N.Y. : McGraw-Hill Education, [2019].
Edición:1st edition.
Temas:
Acceso en línea:Texto completo

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020 |a 9781259642036 (e-ISBN) 
020 |a 1259642038 (e-ISBN) 
020 |a 9781259642029 (print-ISBN) 
020 |a 125964202X (print-ISBN) 
035 |a (OCoLC)1015830587 (print ed.) 
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100 1 |a Zhu, Ding,   |e author. 
245 1 0 |a Modern Completion Technology for Oil and Gas Wells /   |c Ding Zhu, Kenji Furui. 
250 |a 1st edition. 
264 1 |a New York, N.Y. :   |b McGraw-Hill Education,   |c [2019]. 
264 4 |c ?2019. 
300 |a 1 online resource (304 pages) :   |b 100 illustrations. 
336 |a text  |2 rdacontent 
337 |a computer  |2 rdamedia 
338 |a online resource  |2 rdacarrier 
504 |a Includes bibliographical references and index. 
505 0 |a Cover -- Title Page -- Copyright Page -- Contents -- Foreword -- Acknowledgments -- 1 Introduction -- 1.1 Brief Introduction to Petroleum Engineering -- 1.2 Roles of Well Completion and Its Progression -- 1.3 Objectives of the Book -- 1.4 Organization of the Book -- 1.5 List of Reference Books as Supplement Materials -- References -- 2 Fundamentals of Well Completion -- 2.1 Functions of the Well Completion -- 2.2 Completion Components -- 2.3 Completion Design Philosophy -- 2.4 New Challenges in Unconventional Reservoirs -- Nomenclature -- References -- 3 Completion Impact in Near-Wellbore Region to Inflow Performance -- 3.1 Formation Damage Skin -- 3.2 Mechanical Skin Factor: Well Structure-Related Skin -- 3.3 Mechanical Skin Factor: Completion-Related Skin -- 3.4 Combined Skin Effect -- 3.5 Effect of Skin Factor on Production -- Nomenclature -- References -- 4 Completions for Fracturing -- 4.1 Basics of Hydraulic Fracturing Stimulation -- 4.2 Fracture Materials -- 4.3 Bottomhole Treating Pressure and Surface Injection Pressure for Fracturing -- 4.4 Tasks of Completion for Successful Fracture Stimulation -- 4.5 Completion for Fracturing Vertical and Deviated Wells -- 4.6 Completion for Fracturing Horizontal Wells -- 4.7 Completion Selection for Unconventional Reservoirs -- Nomenclature -- References -- 5 Completions for Acid Stimulation -- 5.1 Fundamentals of Acid Stimulation -- 5.2 Tasks and Designs of Completion for Successful Acid Stimulation -- 5.3 Completion Techniques for Acidizing Horizontal Wells -- 5.4 Injection Design and Pressure Behavior during Acidizing -- Nomenclature -- References -- 6 Intelligent Well Completion: Downhole Monitoring -- 6.1 Closed-Loop Optimization by Intelligent Completion -- 6.2 Fundamentals of Fiber Optic Sensing Technology -- 6.3 Fiber Optic Sensor for Distributed Temperature -- 6.4 Interpretation of Downhole Flow Profile with Distributed Temperature -- 6.5 Applications of DTS Technology -- 6.6 Distributed Acoustic Sensing Technology for Production Operation -- 6.7 Quantitative Diagnosis with DAS Measurements -- 6.8 Integrated Application of DTS and DAS -- Nomenclature -- References -- 7 Intelligent Well Completion: Downhole Flow Control -- 7.1 Introduction -- 7.2 Intelligent Well Equipment -- 7.3 Basic Architectures of Intelligent Well Completions -- 7.4 Using Pressure Drop through Inflow Control Valves for Flow Control -- 7.5 Field Applications for Downhole Flow Control by Intelligent Well Completions -- Nomenclature -- References -- 8 Completion Designs for Production and Injection Optimization -- 8.1 Multistage Matrix Acid-Stimulation in a High-Porosity Chalk Reservoir with Openhole Intelligent Completion -- 8.2 Improved Production Using Multilateral Well with ICD -- 8.3 Mitigating Water Production Risks from a Multilateral Well Using IWS -- 8.4 Acid Fracturing in a Deep, Hot Carbonate Reservoir -- 8.5 Horizontal Openhole Gravel Pack Completion in an Unconsolidated Formation with High Fines Content -- 8.6 Production Optimization in Multistage Hydraulic Fracturing Completion in a Shale Reservoir -- References -- Index -- A -- B -- C -- D -- E -- F -- G -- H -- I -- J -- K -- L -- M -- N -- O -- P -- R -- S -- T -- U -- V -- W -- Y -- Z. 
520 3 |a The latest oil and gas well completion technologies and best practices. Increase oil and gas production and maximize revenue generation using the start-to-finish completion procedures contained in this hands-on guide. Written by a pair of energy production experts, Modern Completion Technology for Oil and Gas Wells introduces each technique, shows how it works, and teaches how to deploy it effectively. You will get full explanations of the goals of completion along with detailed examples and case studies that clearly demonstrate how to successfully meet those goals. Modern production methods such as hydraulic fracturing, acid stimulation, and intelligent well completions are thoroughly covered. 
530 |a Also available in print edition. 
533 |a Electronic reproduction.   |b New York, N.Y. :   |c McGraw Hill,   |d 2019.   |n Mode of access: World Wide Web.   |n System requirements: Web browser.   |n Access may be restricted to users at subscribing institutions. 
538 |a Mode of access: Internet via World Wide Web. 
546 |a In English. 
588 |a Description based on e-Publication PDF. 
650 0 |a Oil well completion. 
650 0 |a Gas well drilling. 
655 0 |a Electronic books. 
700 1 |a Furui, Kenji,   |e author. 
776 1 8 |i Print version:   |t Modern Completion Technology for Oil and Gas Wells   |d New York, N.Y. : McGraw Hill,   |c [2019],   |z 9781259642029 
856 4 0 |u https://accessengineeringlibrary.uam.elogim.com/content/book/9781259642029  |z Texto completo