Practical Petrophysics, Second Edition, Volume 62 provides a comprehensive overview of building a petrophysical model. All aspects from the principles of data acquisition through analysis to reporting are covered. This is not intended to be a review of specific tools and measurements, nor is it simply a recipe book. The book aims to teach the fundamental principles that underlie the commonly used tools and techniques but also to encourage pragmatism and avoid reading too much into what is always imperfect data.
Practical Petrophysics, Second Edition, Volume 62 provides a comprehensive overview of building a petrophysical model. All aspects from the principles of data acquisition through analysis to reporting are covered. This is not intended to be a review of specific tools and measurements, nor is it simply a recipe book. The book aims to teach the fundamental principles that underlie the commonly used tools and techniques but also to encourage pragmatism and avoid reading too much into what is always imperfect data.
Professor Kennedy obtained his BSc (Hons) at University of Canterbury, and his PhD in bacterial genetics at the University of Auckland and carried out postdoctoral research in leukemia genetics at the Laboratory of Molecular Biology, Cambridge (UK) before returning to University of Otago, Christchurch in 1991. Professor Martin Kennedy's main research interests are psychiatric genetics, pharmacogenomics, and the genetics of complex disease. His current research largely focuses on pharmacogenomics, which aims to understand how drugs and genes interact with the goal of improving drug treatments and reducing adverse drug reactions. For example, analysis of genetic variation in genes such as those that encode drug metabolizing liver enzymes like CYP2D6 and CYP2C19, is helping to determine genetic factors that impact on response to treatments for various diseases.
Inhaltsangabe
1. Introduction 2. Petrophysical Properties 3. Core and Other Real Rock Measurements 4. Logs Part I: General Characteristics and Passive Measurements 5. Logs Part II: Porosity, Resistivity and Other Tools 6. Introduction to Log Analysis: Shale Volume and Parameter Picking 7. Log Analysis I: Porosity 8. Log Analysis II: Water Saturation 9. Hydrocarbon Corrections 10. Fluid Distribution 11. Permeability Re-visited 12. Complex Lithology 13. Thin Bed Pays: Dealing with the Limitations of Log Resolution 14. Geophysical Applications 15. Underground Storage of Carbon Dioxide and other 'Net-Zero' applications 16. Fractured Reservoirs 17. High Angle Wells
1. Introduction 2. Petrophysical Properties 3. Core and Other Real Rock Measurements 4. Logs Part I: General Characteristics and Passive Measurements 5. Logs Part II: Porosity, Resistivity and Other Tools 6. Introduction to Log Analysis: Shale Volume and Parameter Picking 7. Log Analysis I: Porosity 8. Log Analysis II: Water Saturation 9. Hydrocarbon Corrections 10. Fluid Distribution 11. Permeability Re-visited 12. Complex Lithology 13. Thin Bed Pays: Dealing with the Limitations of Log Resolution 14. Geophysical Applications 15. Underground Storage of Carbon Dioxide and other 'Net-Zero' applications 16. Fractured Reservoirs 17. High Angle Wells
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