Quantitative Methods in Reservoir Engineering
eBook - ePub

Quantitative Methods in Reservoir Engineering

  1. 706 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

Quantitative Methods in Reservoir Engineering

About this book

Quantitative Methods in Reservoir Engineering, Second Edition, brings together the critical aspects of the industry to create more accurate models and better financial forecasts for oil and gas assets. Updated to cover more practical applications related to intelligent infill drilling, optimized well pattern arrangement, water flooding with modern wells, and multiphase flow, this new edition helps reservoir engineers better lay the mathematical foundations for analytical or semi-analytical methods in today's more difficult reservoir engineering applications. Authored by a worldwide expert on computational flow modeling, this reference integrates current mathematical methods to aid in understanding more complex well systems and ultimately guides the engineer to choose the most profitable well path. The book delivers a valuable tool that will keep reservoir engineers up-to-speed in this fast-paced sector of the oil and gas market. - Stay competitive with new content on unconventional reservoir simulation - Get updated with new material on formation testing and flow simulation for complex well systems and paths - Apply methods derived from real-world case studies and calculation examples

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Yes, you can access Quantitative Methods in Reservoir Engineering by Wilson C Chin,Wilson C. Chin, PhD in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Applied Mathematics. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Cover image
  2. Title page
  3. Table of Contents
  4. Copyright
  5. About the Author
  6. Acknowledgments
  7. Preface
  8. Chapter 1: Motivating Ideas and Governing Equations
  9. Chapter 2: Fracture Flow Analysis
  10. Chapter 3: Flows Past Shaly Bodies
  11. Chapter 4: Streamline Tracing and Complex Variables
  12. Chapter 5: Flows in Complicated Geometries
  13. Chapter 6: Radial Flow Analysis
  14. Chapter 7: Finite Difference Methods for Planar Flows
  15. Chapter 8: Curvilinear Coordinates and Numerical Grid Generation
  16. Chapter 9: Steady-State Reservoir Applications
  17. Chapter 10: Transient Compressible Flows: Numerical Well Test Simulation
  18. Chapter 11: Effective Properties in Single and Multiphase Flows
  19. Chapter 12: Modeling Stochastic Heterogeneities
  20. Chapter 13: Real and Artificial Viscosity
  21. Chapter 14: Borehole Flow Invasion, Lost Circulation and Time Lapse Logging
  22. Chapter 15: Horizontal, Deviated and Modern Multilateral Well Analysis
  23. Chapter 16: Fluid Mechanics of Invasion
  24. Chapter 17: Static and Dynamic Filtration
  25. Chapter 18: Formation Tester Applications
  26. Chapter 19: Analytical Methods for Time Lapse Well Logging Analysis
  27. Chapter 20: Complex Invasion Problems: Numerical Modeling
  28. Chapter 21: Forward and Inverse Multiphase Flow Modeling
  29. Cumulative References
  30. Index