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Design of Bilateral Water Sink Wells Using Dual Electrical Submersible Pumps to Control Water Cresting in Horizontal Wells

ABSTRACT第3-4页
ACKNOWLEDGEMENT第5-11页
CHAPTER NO. 1: INTRODUCTION第11-13页
CHAPTER 2: LITERATURE REVIEW第13-31页
    2.1. Literature review第13-17页
    2.2. Horizontal Well Completion with Stinger第17-18页
    2.3. Water Cresting Control with Variation of Perforation Density第18页
    2.4. Water Cresting Control with High Angle Wells第18-19页
    2.5. What is DWS (down-hole water sink)第19-26页
        2.5.1. Historical perspective第21-22页
        2.5.2. Reasons to use downhole processing第22-23页
        2.5.3. FIELD TRIALS OF DWS第23-24页
        2.5.4. DESIGNED FIELD APPLICATIONS OF DWS第24-26页
    2.6. HORIZONTAL WELLS第26-31页
        2.6.1. Advantages and Properties of Horizontal Wells第27-28页
        2.6.2. Water Cresting Control in Horizontal Wells第28-29页
        2.6.3. Innovative Methods (TWS & BWS)第29-31页
CHAPTER 3: ARTIFICIAL LIFT第31-48页
    3.1. Artificial Lift第31-34页
        3.1.1. Artificial lift selection第31-34页
    3.2. Electrical submersible pumps第34-48页
        3.2.1. ESP system第35-37页
        3.2.2. Centrifugal pump第37-41页
        3.2.3. Seal Chamber section第41-42页
        3.2.4. The Motor第42页
        3.2.5. The power cable第42-43页
        3.2.6. ESP run life第43-46页
        3.2.7. Case studies第46-48页
CHAPTER 4: METHODOLOGY AND TECHNIQUE第48-61页
    4.1. Bilateral water sink technology第48页
    4.2. Well performance第48-49页
        4.2.1. Drive mechanisms第49页
        4.2.2. Natural water drive第49页
        4.2.3. Solution gas drive第49页
        4.2.4. Gas-cap drive第49页
        4.2.5. Compaction drive第49页
    4.3. Two-Phase Correlation for Horizontal Well Inflow第49-52页
    4.4. The Babu and Odeh Model第52页
    4.5. Inflow performance第52-53页
    4.6. Tubing performance curve第53-54页
    4.7. Nodal analysis第54页
    4.8. Productivity index第54-55页
    4.9. ESP design第55-61页
        4.9.1. Well inflow calculations第55-57页
        4.9.2. Selection of the pump第57-58页
        4.9.3. Selection of the protector第58页
        4.9.4. Motor selection第58-59页
        4.9.5. Pipesim第59-61页
CHAPTER 5: RESULT AND DISCUSSION第61-80页
    5.1. Inflow performance curve of Oil第61-80页
        5.1.1. Pipesim evaluation第63页
        5.1.2. Inflow performance curve for water第63-65页
        5.1.3. Tubing performance curve for water第65-66页
        5.1.4. Pipesim evaluation for water第66页
        5.1.5. Composite IPR curve第66-67页
        5.1.6. ESP design for Oil第67页
        5.1.7. Well inflow performance第67-69页
        5.1.8. TDH calculations第69页
        5.1.9. Selection of the pump第69-71页
        5.1.10. Selection of the protector第71页
        5.1.11. Motor selection第71页
        5.1.12. ESP design through Pipesim第71-73页
        5.1.13. ESP design for water第73页
        5.1.14. Well inflow performance第73-75页
        5.1.15. TDH calculations第75页
        5.1.16. Selection of the pump第75-77页
        5.1.17. Selection of the protector第77页
        5.1.18. Motor selection第77页
        5.1.19. ESP design through Pipesim第77-80页
CHAPTER 6: CONCLUSION第80-81页
REFERENCES第81-83页

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