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Acid stimulation / / Syed A. Ali, Leonard Kalfayan, and Carl T. Montgomery, editors
Acid stimulation / / Syed A. Ali, Leonard Kalfayan, and Carl T. Montgomery, editors
Pubbl/distr/stampa Richardson, Texas : , : Society of Petroleum Engineers, , 2016
Descrizione fisica 1 online resource (419 pages) : illustrations, graphs
Disciplina 622.338
Soggetto topico Oil wells - Acidization
Soggetto genere / forma Electronic books.
ISBN 1-61399-498-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910467344803321
Richardson, Texas : , : Society of Petroleum Engineers, , 2016
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Advanced production decline analysis and application / / edited by Sun Hedong
Advanced production decline analysis and application / / edited by Sun Hedong
Autore Hedong Sun
Pubbl/distr/stampa Waltham, Massachusetts ; ; Oxford, England : , : Petroleum Industry Press : , : Gulf Professional Publishing, , 2015
Descrizione fisica 1 online resource (352 p.)
Disciplina 622.338
Soggetto topico Oil wells - Forecasting - Mathematical models
Gas wells - Forecasting - Mathematical models
ISBN 0-12-802627-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title page; Copyright Page; Contents; About the author; Preface; Introduction; 1 - Fundamentals of Advanced Production Decline Analysis; 1.1 - History of Advanced Production Decline Analysis (APDA); 1.2 - Similarities and Differences between Production Decline Analysis and Well Test Analysis; 1.3 - Basic Concepts; 1.3.1 - Wellbore Storage Effect; 1.3.2 - Skin Effect; 1.3.3 - Apparent Wellbore Radius; 1.3.4 - Infinite Formation Line-Source Solution; 1.3.5 - Steady State, Pseudo-Steady State, and Boundary-Dominated Flows; 1.3.6 - Investigation Radius; 1.3.7 - Dimensionless Variables
1.3.8 - Shape Factor and Pseudo-Steady State Arrival Time1.3.9 - Superposition Principle; 1.3.10 - Pseudo-Pressure, Pseudo-Time; 1.3.11 - Material Balance Time; 1.3.12 - Flow Regime Identification; 1.3.13 - Type Curve Matching Principle; 1.3.14 - Recoverable Reserves; 1.3.15 - Dynamic Reserve; 2 - Arps Decline Curves Analysis; 2.1 - Arps Equations; 2.1.1 - Exponential Decline; 2.1.2 - Hyperbolic Decline; 2.1.3 - Harmonic Decline; 2.1.4 - Comparison of Three Decline Types; 2.1.5 - Modified Hyperbolic Decline; 2.1.6 - Fluid in Place and Drainage Area
2.2 - Theoretical Fundamentals of Arps Production Decline2.2.1 - Flow Rate Equation of Waterdrive Reservoir; 2.2.2 - Exponential Decline Equation of Waterdrive Reservoir; 2.2.3 - Hyperbolic Decline Equation of Waterdrive Reservoir; 2.2.4 - Harmonic Decline Equation of Water Drive Reservoir; 2.2.5 - Decline Equation of Bounded Elastic Drive-Constant Pressure Production; 2.2.6 - Decline Equation of Multilayer Oil Well-Constant Pressure Production; 2.2.7 - Decline Equation of Gas Well in Volumetric Gas Reservoir-Constant Pressure Production; 2.3 - Arps Type Curves; 2.3.1 - Gentry-Arps Type Curve
2.3.2 - Arps Dimensionless Decline Flow Rate Type Curve2.3.3 - Arps Dimensionless Decline Cumulative Production Curve; 2.3.4 - Arps Dimensionless Decline Flow Rate Integral Type Curve; 2.3.5 - Arps Dimensionless Decline Flow Rate Integral Derivative Type Curve; 2.3.6 - Arps Type Curve; 2.4 - Power Function Analysis; 2.4.1 - IlK Method; 2.4.2 - Mattar Method; 2.5 - Case Analysis of Arps Method; 2.5.1 - Identification of Decline Law; 2.5.2 - Arps Exponential Decline Analysis; 2.5.3 - Arps Harmonic Decline Analysis; 2.5.4 - Result Correlation and Analysis; 3 - Fetkovich Decline Curves Analysis
3.1 - Solution for a Well in a Closed Circular Reservoir: Constant Pressure Production3.2 - Fetkovich Decline Curve Plotting; 3.2.1 - Fetkovich Dimensionless Variables; 3.2.2 - Fetkovich Dimensionless Decline Rate and Decline Cumulative Production Type Curves; 3.2.3 - Fetkovich-Arps Dimensionless Decline Rate and Decline Cumulative Production Type Curves; 3.2.4 - Fetkovich-Arps Dimensionless Decline Rate Integral Type Curves; 3.2.5 - Fetkovich-Arps Dimensionless Decline Rate Integral Derivative Type Curves; 3.3 - Decline Curve Analysis Using Fetkovich-Style Type Curves
3.3.1 - Conventional Decline Curve Analysis
Record Nr. UNINA-9910788028503321
Hedong Sun  
Waltham, Massachusetts ; ; Oxford, England : , : Petroleum Industry Press : , : Gulf Professional Publishing, , 2015
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Advanced production decline analysis and application / / edited by Sun Hedong
Advanced production decline analysis and application / / edited by Sun Hedong
Autore Hedong Sun
Pubbl/distr/stampa Waltham, Massachusetts ; ; Oxford, England : , : Petroleum Industry Press : , : Gulf Professional Publishing, , 2015
Descrizione fisica 1 online resource (352 p.)
Disciplina 622.338
Soggetto topico Oil wells - Forecasting - Mathematical models
Gas wells - Forecasting - Mathematical models
ISBN 0-12-802627-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Title page; Copyright Page; Contents; About the author; Preface; Introduction; 1 - Fundamentals of Advanced Production Decline Analysis; 1.1 - History of Advanced Production Decline Analysis (APDA); 1.2 - Similarities and Differences between Production Decline Analysis and Well Test Analysis; 1.3 - Basic Concepts; 1.3.1 - Wellbore Storage Effect; 1.3.2 - Skin Effect; 1.3.3 - Apparent Wellbore Radius; 1.3.4 - Infinite Formation Line-Source Solution; 1.3.5 - Steady State, Pseudo-Steady State, and Boundary-Dominated Flows; 1.3.6 - Investigation Radius; 1.3.7 - Dimensionless Variables
1.3.8 - Shape Factor and Pseudo-Steady State Arrival Time1.3.9 - Superposition Principle; 1.3.10 - Pseudo-Pressure, Pseudo-Time; 1.3.11 - Material Balance Time; 1.3.12 - Flow Regime Identification; 1.3.13 - Type Curve Matching Principle; 1.3.14 - Recoverable Reserves; 1.3.15 - Dynamic Reserve; 2 - Arps Decline Curves Analysis; 2.1 - Arps Equations; 2.1.1 - Exponential Decline; 2.1.2 - Hyperbolic Decline; 2.1.3 - Harmonic Decline; 2.1.4 - Comparison of Three Decline Types; 2.1.5 - Modified Hyperbolic Decline; 2.1.6 - Fluid in Place and Drainage Area
2.2 - Theoretical Fundamentals of Arps Production Decline2.2.1 - Flow Rate Equation of Waterdrive Reservoir; 2.2.2 - Exponential Decline Equation of Waterdrive Reservoir; 2.2.3 - Hyperbolic Decline Equation of Waterdrive Reservoir; 2.2.4 - Harmonic Decline Equation of Water Drive Reservoir; 2.2.5 - Decline Equation of Bounded Elastic Drive-Constant Pressure Production; 2.2.6 - Decline Equation of Multilayer Oil Well-Constant Pressure Production; 2.2.7 - Decline Equation of Gas Well in Volumetric Gas Reservoir-Constant Pressure Production; 2.3 - Arps Type Curves; 2.3.1 - Gentry-Arps Type Curve
2.3.2 - Arps Dimensionless Decline Flow Rate Type Curve2.3.3 - Arps Dimensionless Decline Cumulative Production Curve; 2.3.4 - Arps Dimensionless Decline Flow Rate Integral Type Curve; 2.3.5 - Arps Dimensionless Decline Flow Rate Integral Derivative Type Curve; 2.3.6 - Arps Type Curve; 2.4 - Power Function Analysis; 2.4.1 - IlK Method; 2.4.2 - Mattar Method; 2.5 - Case Analysis of Arps Method; 2.5.1 - Identification of Decline Law; 2.5.2 - Arps Exponential Decline Analysis; 2.5.3 - Arps Harmonic Decline Analysis; 2.5.4 - Result Correlation and Analysis; 3 - Fetkovich Decline Curves Analysis
3.1 - Solution for a Well in a Closed Circular Reservoir: Constant Pressure Production3.2 - Fetkovich Decline Curve Plotting; 3.2.1 - Fetkovich Dimensionless Variables; 3.2.2 - Fetkovich Dimensionless Decline Rate and Decline Cumulative Production Type Curves; 3.2.3 - Fetkovich-Arps Dimensionless Decline Rate and Decline Cumulative Production Type Curves; 3.2.4 - Fetkovich-Arps Dimensionless Decline Rate Integral Type Curves; 3.2.5 - Fetkovich-Arps Dimensionless Decline Rate Integral Derivative Type Curves; 3.3 - Decline Curve Analysis Using Fetkovich-Style Type Curves
3.3.1 - Conventional Decline Curve Analysis
Record Nr. UNINA-9910824025303321
Hedong Sun  
Waltham, Massachusetts ; ; Oxford, England : , : Petroleum Industry Press : , : Gulf Professional Publishing, , 2015
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Advanced reservoir management and engineering / / Tarek Ahmed, D. Nathan Meehan
Advanced reservoir management and engineering / / Tarek Ahmed, D. Nathan Meehan
Autore Ahmed Tarek
Edizione [2nd ed.]
Pubbl/distr/stampa Amsterdam, : Gulf Professional Pub., 2012
Descrizione fisica 1 online resource (713 p.)
Disciplina 622.338
622.3382
Altri autori (Persone) MeehanD. Nathan
Soggetto topico Oil reservoir engineering
Reservoirs - Management
Reservoirs - Design and construction
Fluid mechanics
ISBN 1-283-28818-4
9786613288189
0-12-385549-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9911004821203321
Ahmed Tarek  
Amsterdam, : Gulf Professional Pub., 2012
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Advances in corrosion control and materials in oil and gas production : papers from EUROCORR '97 and EUROCORR '98 / / edited by P.S. Jackman and L.M. Smith
Advances in corrosion control and materials in oil and gas production : papers from EUROCORR '97 and EUROCORR '98 / / edited by P.S. Jackman and L.M. Smith
Pubbl/distr/stampa London, : Published for the European Federation of Corrosion by IOM Communications, 1999
Descrizione fisica 1 online resource (487 p.)
Disciplina 622.338
Altri autori (Persone) JackmanP. S
SmithL. M (Liane M.)
Collana European Federation of Corrosion publications
Book
Soggetto topico Oil fields - Equipment and supplies - Corrosion
Gas manufacture and works - Corrosion
Corrosion and anti-corrosives
ISBN 1-907625-13-5
1-60119-138-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto ""Contents""; ""Series Introduction""; ""Preface""; ""Foreword""; ""Part 1- Keynote Papers""; ""The Materials and Corrosion View of Wet Gas Transportation""; ""Modelling the Probability of Flow Induced Localised Corrosion from Critical Hydrodynamic Data and Fracture Mechanics Data of Scales from CO2 Corrosion of Steel""; ""Part 2 - Carbon and Low Alloy Steels""; ""Controlling Risk Through Prediction of Degradation Mechanism and Failure Modes in Pipelines""; ""Effect of Chromium on Mesa Corrosion of Carbon Steel""
""Formation of Protective Corrosion Films During CO2 Corrosion of Carbon Steel""""On the Effect of Microstructure in CO2 Corrosion of Carbon Steel Welds""; ""Influence of Chromium Addition up to 1% on Weight Loss Corrosion of Line Pipe Steels in Wet CO2 Environments""; ""Effect of Environmental Factors and Microstructure on CO2 Corrosion of Carbon and Cr-bearing Steels""; ""Effects of Chromium Contents of Low-alloyed Steel and of Dissolved Oxygen in Aqueous Solution on Carbon Dioxide Corrosion""; ""The Influence of Small Amounts of H2S on CO2 Corrosion of Iron and Carbon Steel""
""Hydrogen-Related Stress Corrosion Cracking in Line Pipe Steel""""The Role of Microstructure in Sulfide Stress Cracking Resistance of Thermomechanically Processed High Strength Low Alloy Steels""; ""The Effect of Microstructure on the KISCC of Low Carbon Low Alloy Steels""; ""Coiled Tubing and Pipe for CO2 and H2S Service""; ""Coiled Tubing Innovations for Corrosive Service""; ""Weld Corrosion - Chemical, Electrochemical and Hydrodynamic Issues, Inconsistencies and Models""; ""Experimental Simulation of Multiphase Flow for Assessing System Corrosivity""
""Investigation of Premature Failure of a Well Fluid Pipeline in an Indian Offshore Installation""""Corrosion Resistance of Thermomechanical Control Process (TMCP) Steels for Cargo Oil Tanks of Very Large Crude Oil Carriers (VLCC)""; ""Effect of Applied Potential on Cracking of Low-alloyed Pipeline Steel in Low pH Soil Environment""; ""Finding Optimum Positions for Field Signature Method (FSM) Corrosion Monitoring of Oil and Gas Pipelines""; ""Part 3 - Martensitic Stainless Steels""; ""Corrosion Resistance of Weldable Modified 13Cr Stainless Steel for CO2 Applications""
""Corrosion Performance of Weldable 12% Chromium Stainless Steel Seamless Line Pipes""""Corrosion Properties and Application Limit of Sour Resistant 13% Chromium Steel Tubing with Improved CO2 Corrosion Resistance""; ""Weldable 13% Chromium Steel: The Development of the Components for a Wet Gas Piping System""; ""Fabricating Pipeline Bundles Using Modified Weldable 13% Chromium Stainless Steel Flowlines""; ""Corrosion Resistance of 13% Chromium Stainless Steel Welded Joints in Flow Line Applications""; ""Slow Strain Rate Testing of Low Carbon Martensitic Stainless Steels""
""On-line Sulfide Stress Cracking Monitoring of 13% Cr Pipe Welds at Realistic Weld Restraint Conditions in the Instrumented Restraint Cracking (IRC) Test""
Record Nr. UNINA-9911006513903321
London, : Published for the European Federation of Corrosion by IOM Communications, 1999
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Artificial Lift Methods : Design, Practices, and Applications / / by Tan Nguyen
Artificial Lift Methods : Design, Practices, and Applications / / by Tan Nguyen
Autore Nguyen Tan
Edizione [1st ed. 2020.]
Pubbl/distr/stampa Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Descrizione fisica 1 online resource (XIII, 347 p. 204 illus., 188 illus. in color.)
Disciplina 622.338
Collana Petroleum Engineering
Soggetto topico Fossil fuels
Machinery
Fossil Fuels (incl. Carbon Capture)
Machinery and Machine Elements
ISBN 3-030-40720-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Introduction -- Sucker Rod Pump.-Electrical Submersible Pump -- Gas Lift -- Progressive Cavity Pump -- Plunger Lift -- Artificial Lift in Horizontal Wells.
Record Nr. UNINA-9910410019903321
Nguyen Tan  
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Bulletin des Centres de Recherches Exploration-Production Elf Aquitaine
Bulletin des Centres de Recherches Exploration-Production Elf Aquitaine
Pubbl/distr/stampa Pau, : Societe nationale Elf-Aquitaine, production
Disciplina 665.5
622.338
550
ISSN 0396-2687
Formato Materiale a stampa
Livello bibliografico Periodico
Lingua di pubblicazione fre
Record Nr. UNINA-990008930240403321
Pau, : Societe nationale Elf-Aquitaine, production
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Bulletin du Centre de Recherches de Pau
Bulletin du Centre de Recherches de Pau
Pubbl/distr/stampa Pau, : Societe nationale des petroles d'Aquitaine
Disciplina 665.5
622.338
ISSN 0008-9672
Formato Materiale a stampa
Livello bibliografico Periodico
Lingua di pubblicazione fre
Record Nr. UNINA-990008930470403321
Pau, : Societe nationale des petroles d'Aquitaine
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Composition and properties of drilling and completion fluids [[electronic resource] /] / Ryen Caenn, H.C.H. Darley, George R. Gray
Composition and properties of drilling and completion fluids [[electronic resource] /] / Ryen Caenn, H.C.H. Darley, George R. Gray
Autore Caenn Ryen
Edizione [6th ed.]
Pubbl/distr/stampa Waltham, Mass., : Elsevier Inc., 2011
Descrizione fisica 1 online resource (721 p.)
Disciplina 622
622.338
Altri autori (Persone) DarleyH. C. H
GrayGeorge R
Soggetto topico Drilling muds
Soggetto genere / forma Electronic books.
ISBN 1-283-19603-4
9786613196033
0-12-383859-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Composition and Properties of Drilling and Completion Fluids; Copyright; Dedication; Table of Contents; Preface; Chapter 1. Introduction to Drilling Fluids; Functions of Drilling Fluids; Composition of Drilling Fluids; Properties of Drilling Fluids; Drilling Fluid Selection; Mud Handling Equipment; Optimization; References; Chapter 2. The Development of Drilling Fluids Technology; Water-Based Drilling Fluids Technology; Oil-Based Drilling Fluids Technology; Gas-Based Drilling Fluids Technology; References
Chapter 3. Equipment and Procedures for Evaluating Drilling Fluid PerformanceSample Preparation; Properties Measured; Multifunctional Circulating Systems; Aging at High Temperature; Particle Size Determination; Identification of Mineral Constituents; Determination of Gas, Oil, and Solids Content; Electrical Properties; Materials for Regaining Lost Circulation; Maintenance of Hole Stability; Lubricity; Factors Affecting Differential-Pressure Sticking of Drill Pipe; Corrosion Tests; Flocculants; Foams and Foaming Agents; Aniline Point; Chemical Analysis; Evaluation of Drilling Fluid Materials
ReferencesChapter 4. Clay Mineralogy and the Colloid Chemistry of Drilling Fluids; Characteristics of Colloidal Systems; Clay Mineralogy; Origin and Occurrence of Clay Minerals; Ion Exchange; Clay Swelling Mechanisms; The Electrostatic Double Layer; Particle Association; The Mechanism of Gelation; Polymers; References; Chapter 5. The Rheology of Drilling Fluids; Laminar Flow Regime; Turbulent Flow Regime; Influence of Temperature and Pressure on the Rheology of Drilling Fluids; Application of Flow Equations to Conditions in the Drilling Well
Rheological Properties Required for Optimum PerformanceThe Importance of Hole Stability; Notation; References; Chapter 6. The Filtration Properties of Drilling Fluids; Static Filtration; The Filter Cake; Dynamic Filtration; Filtration in the Borehole; Notation; References; Chapter 7. The Surface Chemistry of Drilling Fluids; Surface Tension; Wettability; Surface Free Energy; Adhesion; Surfactants; Emulsions; Oil-Wetting Agents; Foams; Defoamers; The Effect of Electrochemical Environment on Rock Failure; Notation; References; Chapter 8. Hole Stability; The Mechanics of Borehole Stability
Hole Instability Caused by Interaction between the Drilling Fluid and Shale FormationsNotation; References; Chapter 9. Drilling Problems Related to Drilling Fluids; Drill String Torque and Drag; Differential Sticking of the Drill String; Slow Drilling Rate; Loss of Circulation; High Temperatures; Corrosion of Drill Pipe; Notation; References; Chapter 10. Completion, Reservoir Drilling, Workover, and Packer Fluids; Expense versus Value; The Skin Effect; Prevention of Formation Damage; Selection of Completion and Workover Fluids; Tests for Potential Formation Damage by Completion Fluids
Packer Fluids and Casing Packs
Record Nr. UNINA-9910461557403321
Caenn Ryen  
Waltham, Mass., : Elsevier Inc., 2011
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Composition and properties of drilling and completion fluids [[electronic resource] /] / Ryen Caenn, H.C.H. Darley, George R. Gray
Composition and properties of drilling and completion fluids [[electronic resource] /] / Ryen Caenn, H.C.H. Darley, George R. Gray
Autore Caenn Ryen
Edizione [6th ed.]
Pubbl/distr/stampa Waltham, Mass., : Elsevier Inc., 2011
Descrizione fisica 1 online resource (721 p.)
Disciplina 622
622.338
Altri autori (Persone) DarleyH. C. H
GrayGeorge R
Soggetto topico Drilling muds
ISBN 1-283-19603-4
9786613196033
0-12-383859-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Composition and Properties of Drilling and Completion Fluids; Copyright; Dedication; Table of Contents; Preface; Chapter 1. Introduction to Drilling Fluids; Functions of Drilling Fluids; Composition of Drilling Fluids; Properties of Drilling Fluids; Drilling Fluid Selection; Mud Handling Equipment; Optimization; References; Chapter 2. The Development of Drilling Fluids Technology; Water-Based Drilling Fluids Technology; Oil-Based Drilling Fluids Technology; Gas-Based Drilling Fluids Technology; References
Chapter 3. Equipment and Procedures for Evaluating Drilling Fluid PerformanceSample Preparation; Properties Measured; Multifunctional Circulating Systems; Aging at High Temperature; Particle Size Determination; Identification of Mineral Constituents; Determination of Gas, Oil, and Solids Content; Electrical Properties; Materials for Regaining Lost Circulation; Maintenance of Hole Stability; Lubricity; Factors Affecting Differential-Pressure Sticking of Drill Pipe; Corrosion Tests; Flocculants; Foams and Foaming Agents; Aniline Point; Chemical Analysis; Evaluation of Drilling Fluid Materials
ReferencesChapter 4. Clay Mineralogy and the Colloid Chemistry of Drilling Fluids; Characteristics of Colloidal Systems; Clay Mineralogy; Origin and Occurrence of Clay Minerals; Ion Exchange; Clay Swelling Mechanisms; The Electrostatic Double Layer; Particle Association; The Mechanism of Gelation; Polymers; References; Chapter 5. The Rheology of Drilling Fluids; Laminar Flow Regime; Turbulent Flow Regime; Influence of Temperature and Pressure on the Rheology of Drilling Fluids; Application of Flow Equations to Conditions in the Drilling Well
Rheological Properties Required for Optimum PerformanceThe Importance of Hole Stability; Notation; References; Chapter 6. The Filtration Properties of Drilling Fluids; Static Filtration; The Filter Cake; Dynamic Filtration; Filtration in the Borehole; Notation; References; Chapter 7. The Surface Chemistry of Drilling Fluids; Surface Tension; Wettability; Surface Free Energy; Adhesion; Surfactants; Emulsions; Oil-Wetting Agents; Foams; Defoamers; The Effect of Electrochemical Environment on Rock Failure; Notation; References; Chapter 8. Hole Stability; The Mechanics of Borehole Stability
Hole Instability Caused by Interaction between the Drilling Fluid and Shale FormationsNotation; References; Chapter 9. Drilling Problems Related to Drilling Fluids; Drill String Torque and Drag; Differential Sticking of the Drill String; Slow Drilling Rate; Loss of Circulation; High Temperatures; Corrosion of Drill Pipe; Notation; References; Chapter 10. Completion, Reservoir Drilling, Workover, and Packer Fluids; Expense versus Value; The Skin Effect; Prevention of Formation Damage; Selection of Completion and Workover Fluids; Tests for Potential Formation Damage by Completion Fluids
Packer Fluids and Casing Packs
Record Nr. UNINA-9910789695103321
Caenn Ryen  
Waltham, Mass., : Elsevier Inc., 2011
Materiale a stampa
Lo trovi qui: Univ. Federico II
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