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Downhole Water Sink Using Artificial Lifting Systems for Water Coning Control

中文摘要第3-4页
Abstract第4页
Chapter 1. Introduction第10-13页
    1.1 Background and Motivation第10-11页
    1.2 Objectives第11-12页
    1.3 Dissertation Outline and Logic第12-13页
Chapter 2. Literature Review第13-30页
    2.1 Problem statement第13页
    2.2 Industry methods for the control of water coning第13-14页
    2.3 Description of the methods adopted第14-16页
    2.4 Downhole Water Sink第16-20页
        2.4.1 Basic description第16-17页
        2.4.2 History第17-18页
        2.4.3 Rationale for selecting the DWS第18-20页
    2.5 Electric Submersible Pump第20-24页
        2.5.1 Basic description第20-21页
        2.5.2 History第21-22页
        2.5.3 Rational for the selection of ESP第22-24页
    2.6 Sucker Rod pump第24-27页
        2.6.1 Basic Description第24-26页
        2.6.2 History第26-27页
        2.6.3 Rational for the selection of SRP第27页
    2.7 Coiled Tubing第27-30页
        2.7.1 Basic Description第27-28页
        2.7.2 History第28-30页
Chapter 3. Method and Technology第30-60页
    3.1 Inflow Performance Relation Curve第30-32页
    3.2 Tubing Performance Relationship第32-36页
    3.3 Composite IPR Curve第36页
    3.4 Nodal Analysis第36-37页
    3.5 ESP design第37-47页
        3.5.1 Pump Intake Pressure第37-38页
        3.5.2 Solution gas/water ration at suction conditions第38页
        3.5.3 Actual Gas Volume第38-39页
        3.5.4 Liquid Volumetric Rate第39-40页
        3.5.5 TDH calculations第40-41页
        3.5.6 Pump Selection第41页
        3.5.7 Mechanical Strength第41-42页
        3.5.8 Protector Selection第42-43页
        3.5.9 Motor Selection第43-44页
        3.5.10 Power Cable Selection第44-46页
        3.5.11 Switchboard and Transformer Selection第46-47页
    3.6 Sucker Rod Pump design第47-56页
        3.6.1 Sucker Rod Unit Selection第47页
        3.6.2 API rating and stroke length第47页
        3.6.3 Tubing Size, Plunger Size, Rod Size and Pumping Speed第47-48页
        3.6.4 Fractional length第48页
        3.6.5 Acceleration factor第48-50页
        3.6.6 Effective Plunger Stroke Length, Dead Weight of the Rod String andFluid Load第50-52页
        3.6.7 Probable Production Rate第52页
        3.6.8 Peak Polished Rod Load第52-54页
        3.6.9 Rod Maximum Stress第54页
        3.6.10 Counterbalance effect第54-55页
        3.6.11 Hydraulic, Friction and Brake Horsepower of the Prime Motor第55-56页
    3.7 Installation Procedure of the System第56-60页
        3.7.1 Downhole Water Sink Completion第56-57页
        3.7.2 ESP installations in Tubing第57-58页
        3.7.3 SRP installation第58-60页
Chapter 4. Results and Discussion第60-105页
    4.1 Inflow Performance Relation Curve第60-65页
    4.2 Tubing Performance Relationship第65-67页
    4.3 Composite IPR Curve plotting第67-70页
    4.4 Nodal Analysis第70-74页
    4.5 ESP design第74-87页
        4.5.1 Casing size selection第74页
        4.5.2 Pump intake pressure第74-75页
        4.5.3 Solution gas/water ratio at suction conditions第75页
        4.5.4 Actual gas volume第75-77页
        4.5.5 Liquid volumetric rate第77页
        4.5.6 TDH Calculations第77-79页
        4.5.7 Pump Selection第79-81页
        4.5.8 Mechanical strength check第81页
        4.5.9 Protector Selection第81-82页
        4.5.10 Motor Selection第82页
        4.5.11 Power cable Selection第82-85页
        4.5.12 Switchboard and transformer selection第85页
        4.5.13 PipeSim ESP Evaluation第85-87页
    4.6 Sucker Rod Pump Design第87-104页
        4.6.1 Sucker rod unit selection第88页
        4.6.2 API Rating and stroke length第88-89页
        4.6.3 Tubing Size, Plunger Size, Rod Size and Pumping Speed第89-90页
        4.6.4 Fractional length第90-92页
        4.6.5 Acceleration factor第92页
        4.6.6 Effective Plunger Stroke Length, Dead Weight Of The Rod String AndFluid Load第92-93页
        4.6.7 Probable Production Rate第93页
        4.6.8 Peak polished rod第93-94页
        4.6.9 Rod maximum stresses第94-95页
        4.6.10 Counterbalance Effect第95-96页
        4.6.11 Hydraulic, friction and brake horsepower of the prime motor第96-97页
        4.6.12 PipeSim Sucker Rod Pump Design第97-100页
        4.6.13 Sucker Rod Pump PipeSim Report第100-104页
    4.7 Discussion第104-105页
Chapter 5. Recommendations第105-108页
Chapter 6. Conclusion第108-109页
References第109-112页
Appendix第112-113页
Acknowledgements第113页

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