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  • 1
    Online-Ressource
    Online-Ressource
    Amsterdam ; : Butterworth-Heinemann,
    UID:
    almahu_9948026601902882
    Umfang: 1 online resource (319 p.)
    ISBN: 1-281-07751-8 , 9786611077518 , 0-08-051708-0
    Inhalt: Shared Earth Modeling introduces the reader to the processes and concepts needed to develop shared earth models. Shared earth modeling is a cutting-edge methodology that offers a synthesis of modeling paradigms to the geoscientist and petroleum engineer to increase reservoir output and profitability and decrease guesswork. Topics range from geology, petrophysics, and geophysics to reservoir engineering, reservoir simulation, and reservoir management.Shared Earth Modeling is a technique for combining the efforts of reservoir engineers, geophysicists, and petroleum geologists to create a
    Anmerkung: Description based upon print version of record. , Cover; Shared Earth Modeling; Copyright Page; Table of Contents; Preface; Chapter 1. Introduction to Shared Earth Modeling; 1.1 Porous Media; 1.2 Reservoir Heterogeneity and Reservoir Scales; 1.3 Shared Earth Modeling Defined; 1.4 The Shared Earth Modeling Process; 1.5 The Value of Shared Earth Modeling; CS-1 Valley Fill Case Study: Introduction; Exercises; Chapter 2. Geology; 2.1 Geologic History of the Earth; 2.2 Rock Formation; 2.3 Formations and Facies; 2.4 Structures and Traps; 2.5 Petroleum Occurrence; 2.6 Stratigraphy; CS-2 Valley Fill Case Study: Geologic Model; Exercises , Chapter 3. Petrophysics3.1 Elastic Constants; 3.2 Elasticity Theory; 3.3 Acoustic Velocities; 3.4 Gassmann's Equation; 3.5 Moduli from Acoustic Velocities; CS-3 Valley Fill Case Study: Bulk Moduli; Exercises; Chapter 4. Well Logging; 4.1 Principles of Logging; 4.2 Direct Measurement Logs; 4.3 Lithology Logs; 4.4 Porosity Logs; 4.5 Resistivity Logs; 4.6 Other Types of Logs; 4.7 Reservoir Characterization Issues; CS-4 Valley Fill Case Study: Well Logs; Exercises; Chapter 5. Geophysics; 5.1 Physics of Waves; 5.2 Propagation of Seismic Waves; 5.3 Acoustic Impedance and Reflection Coefficients , 5.4 Seismic Data Acquisition, Processing and Interpretation5.5 Seismic Resolution; CS-5 Valley Fill Case Study: Vp/ Vs Model; Exercises; Chapter 6. Fluid Properties; 6.1 Description of Fluid Properties; 6.2 Classification of Petroleum Fluids; 6.3 Sources of Fluid Data; 6.4 Representation of Fluid Properties; CS-6 Valley Fill Case Study: Fluid Properties; Exercises; Chapter 7. Measures of Rock-Fluid Interactions; 7.1 Darcy's Law; 7.2 Permeability; 7.3 Directional Dependence of Permeability; 7.4 Capillary Pressure; 7.5 Relative Permeability; CS-7 Valley Fill Case Study: Permeability; Exercises , Chapter 8. Applications of Rock-Fluid Interactions8.1 Frontal Advance Theory; 8.2 Welge's Method; 8.3 Transition Zones; 8.4 Transition Zone Volumetrics and Numerical Simulation; CS-8 Valley Fill Case Study: Rock-Fluid Interaction Data; Exercises; Chapter 9. Fluid Flow Equations; 9.1 Material Balance; 9.2 Continuity Equation; 9.3 Convection-Dispersion Equation; 9.4 Navier-Stokes Equation; 9.5 Integrated Flow Model Equations; CS-9 Valley Fill Case Study: Conceptual Areal Model; Exercises; Chapter 10. Fundamentals of Reservoir Characterization; 10.1 Flow Units; 10.2 Traditional Mapping , 10.3 Computer Generated Maps10.4 Visualization Technology; CS-10 Valley Fill Case Study: Reservoir Structure; Exercises; Chapter 11. Modern Reservoir Characterization Techniques; 11.1 Geostatistics; 11.2 Geostatistical Modeling; 11.3 Time-Lapse (4-D) Seismology; 11.4 Case Study: N.E. Nash Unit, Oklahoma; CS-11 Valley Fill Case Study: Time-Lapse Response; Exercises; Chapter 12. Well Testing; 12.1 Pressure Transient Testing; 12.2 Oil Well Pressure Transient Testing; 12.3 Gas Well Pressure Transient Testing; 12.4 Well Test Capabilities; CS-12 Valley Fill Case Study: Well Pressures; Exercises , Chapter 13. Production Analysis , English
    Weitere Ausg.: ISBN 0-7506-7522-5
    Sprache: Englisch
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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