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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
Tabla de Contenidos:
  • 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.