Reservoir Modeling & Simulation
- Chapter 1:
Welcome Discussion,
Instructor Bio ,
Course Objectives ,
Outline of Chapter Topics,
Outline of Workshop Problems,
Introduction,
Overview of Classical Analysis,
- Chapter 2:
Reservoir Simulation ,
Forecasting Models,
Overview of the Reservoir Simulation Workflow and ECLIPSE Software ,
What is ECLIPSE? ,
Characterizing the Reservoir
- Chapter 3:
Formulations of Equations ,
Linearization and Solution Process ,
Eclipse Time Step Control
- Chapter 4:
Extended Demonstration of Problems Involved in Subdividing Reservoir Into Large Grid Blocks
- Chapter 5:
Workshop Problems
- Chapter 6:
Data Preparation ,
Dynamic Model ,
Porosity,
Compressibility,
Permeability and Relative Permeability,
Surface Tension,
Hysteresis,
Fluid Properties - PVT,
Historical Publications
- Chapter 7:
Traditioanal History Matching
- Chapter 8:
Workshop Problems
- Chapter 9:
Fine Grid Simulation Models,
Introduction,
Single Well Studies ,
Cross-Sectional Models,
Areal Models,
Numerical Dispersion ,
Grid Orientation,
Layering,
Cell Properties - Shales and Sands ,
Vertical Equilibrium,
Pseudo functions
- Chapter 10:
Scale-up Procedures
- Chapter 11:
Workshop Problem ,
History Matching Primary Production
- Chapter 12
Coarse Grid Models ,
Simulation Grids,
Local Grid Refinements,
Modeling Faults,
Block Properties in Coarse Grids ,
Wells in a Full Field Model
- Chapter 13:
Aquifers ,
Patterns
- Chapter 14:
Fractured Reservoir Simulation
- Chapter 15:
Stream Line Simulation with FrontSim
- Chapter 16:
Workshop Problem,
Predictions
- Chapter 17:
Overview of the Simulation Process ,
Conducting a Study,
Simulator Types
- Chapter 18:
Applications of Reservoir Simulation to Reservoir Study Involving History Matching and Water Flooding
- Chapter 19:
Theory of Compositional Simulation
Overview
- Chapter 20:
Closing Thoughts ,
Ten Golden Rules for Simulation Engineers