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提高采收率基础(全英授课)

Cambridge University Press via XuetangX

Overview

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"Fundamental of Enhanced Oil Recovery" is an elective course designed for undergraduate students majoring in Oil and Gas Field Development Engineering within the Petroleum Engineering program. The course has been offered for 10 cycles, with 232 petroleum engineering undergraduates having taken it, achieving positive teaching outcomes. As determined by the eternal importance of oil and gas field development, enhanced oil recovery theory and technical fundamentals serve as crucial pillars in building the knowledge structure of petroleum engineering professionals. Through this course, students master the basic knowledge and technical principles of enhanced oil recovery, while developing fundamental abilities to analyze technical problems in enhanced oil recovery using this knowledge. The main content of this course includes: physical and chemical properties of reservoirs; physicochemical fundamentals of oil displacement; principles of two-phase displacement dynamics; and chemical flooding technologies.



Syllabus

  • Chapter 1 Introduction
    • 1.1Definition of Enhanced Oil Recovery
    • 1.2Displacement and Sweep Efficiency
    • 1.3Classification of EOR Technologies and overview
    • 1.4Development status of EOR
  • Chapter 2 Physicochemical characteristics of reservoir
    • 2.1Pore Structures and Characteristics
    • 2.2Porosity
    • 2.3Permeability
    • 2.4Reservoir Heterogeneity (1)
    • 2.5Reservoir Heterogeneity (2)
    • 2.6Effect of Water for the Reservoir and its Fluids Characteristics (1)
    • 2.7Effect of Water for the Reservoir and its Fluids Characteristics (2)
    • 2.8Distribution of Remaining Oil and Residual Oil (1)
    • 2.9Distribution of Remaining Oil and Residual Oil (2)
  • Chapter 3 Fundamental of production engineering petrophysics and geochemistry
    • 3.1Basic Knowledge of Fluid Phases (1)
    • 3.2Basic Knowledge of Fluid Phases (2)
    • 3.3Phase State of Reservoir Fluid
    • 3.4Phase State Experimental Methods
    • 3.5Interfacial Phenomena in Reservoirs (1)
    • 3.6Interfacial Phenomena in Reservoirs (2)
    • 3.7Interfacial Phenomena in Reservoirs (3)
  • Chapter 4 Basic mechanism of the two phase fluid displacement in the reservoir
    • 4.1Micro-Scale Displacement of Two-Phase Fluid in the Reservoir (1)
    • 4.2Micro-Scale Displacement of Two-Phase Fluid in the Reservoir (2)
    • 4.3Micro-Scale Displacement of Two-Phase Fluid in the Reservoir (3)
    • 4.4One-Dimensional Water Displacement of Oil
    • 4.5Sweep Efficiency of the Oil Displacement Agent (1)
    • 4.6Sweep Efficiency of the Oil Displacement Agent (2)
    • 4.7Sweep Efficiency of the Oil Displacement Agent (3)
  • Chapter 5 Chemical flooding technologies
    • 5.1Polymer Flooding
    • 5.2ASP (Alkali-Surfactant-Polymer) Flooding
    • 5.3Foam Flooding
    • 5.4Key Problems Associated with Chemical EOR
  • Chapter 6 Gas flooding technologies
    • 6.1Introduction to Gas Flooding Technologies
    • 6.2Miscible Flooding (1)
    • 6.3Miscible Flooding (2)
    • 6.4Gas Flooding Methods (1)
    • 6.5Gas Flooding Methods (2)
  • Chapter 7 Thermal flooding technologies
    • 7.1Introduction to Thermal EOR
    • 7.2Steam Flooding
    • 7.3SAGD (Steam-Assisted Gravity Drainage)
    • 7.4Cyclic Steam Stimulation (CSS)
    • 7.5In-Situ Combustion
  • Chapter 8 New EOR technologies
    • 8.1Microbial Enhanced Oil Recovery (1)
    • 8.2Microbial Enhanced Oil Recovery (2)
    • 8.3Nano-Material Flooding (1)
    • 8.4Nano-Material Flooding (2)
  • 期末考试

    Taught by

    Yu Haiyang

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