Petroleum Related Rock Mechanics, 2nd Edition | by Erling Fjar, R. M. Holt, P. Horsrud, A. M. Raaen and R. Risnes | ISBN: 9780444502605. Petroleum Engineering Books. Rock Mechanics Analysis of Borehole Stability During Drilling. Reservoir Geomechanics.

November 28, 2009 by kutenk
Filed under: Engineering Books 

Petroleum Related Rock Mechanics, 2nd Edition

by Erling Fjar, R. M. Holt, P. Horsrud, A. M. Raaen and R. Risnes
ISBN:9780444502605

With a focus on basics, drilling, production and reservoir engineering, this book provides a basis of rock mechanical knowledge which can greatly assist in the understanding of field behavior, design of test programs and the design of field operations.

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Petroleum Related Rock Mechanics, 2nd Edition







Rasmus Risnes in Memoriam
Preface to the Second Edition
Foreword to the 1992 Edition
Preface to the 1992 Edition
Chapter 1 – Elasticity
1.1. Stress
1.2. Strain
1.3. Elastic Moduli
1.4. Strain Energy
1.5. Thermoelasticity
1.6. Poroelasticity
1.7. Anisotropy
1.8. Nonlinear Elasticity
1.9. Time-Dependent Effects
References
Further Reading

Chapter 2 – Failure Mechanics
2.1. Basic Concepts
2.2. Tensile Failure
2.3. Shear Failure
2.4. Compaction Failure
2.5. Failure Criteria in Three Dimensions
2.6. Fluid Effects
2.7. Presentation and Interpretation of Data from Failure Tests
2.8. Beyond the Yield Point
2.9. Failure of Anisotropic and Fractured Rocks
2.10. Stress History Effects
References

Chapter 3 – Geological Aspects of Petroleum Related Rock Mechanics
3.1. Underground Stresses
3.2. Pore Pressure
3.3. Sedimentological Aspects
3.4. Mechanical Properties of Sedimentary Rocks
References
Further reading


Chapter 4 – Stresses Around Boreholes. Borehole Failure Criteria
4.1. Stresses and Strains in Cylindrical Coordinates
4.2. Stresses in a Hollow Cylinder
4.3. Elastic Stresses Around Wells—the General Solution
4.4. Poroelastic Time Dependent Effects
4.5. Borehole Failure Criteria
4.6. Beyond Failure Initiation
4.7. Spherical Coordinates
References
Further Reading

Chapter 5 – Elastic Wave Propagation in Rocks
5.1. The Wave Equation
5.2. P- and S-Waves
5.3. Elastic Waves in Porous Materials
5.4. Attenuation
5.5. Anisotropy
5.6. Rock Mechanics and Rock Acoustics
5.7. Reflections and Refractions
5.8. Borehole Acoustics
5.9. Seismics
References
Further Reading

Chapter 6 – Rock Models
Overview
6.1. Layered Media
6.2. Models Involving Porosity Only
6.3. Grain Pack Models
6.4. Models for Cracks and Other Inclusions
6.5. Fractured Rocks
References

Chapter 7 – Mechanical Properties and Stress Data from Laboratory Analysis
Overview
7.1. Core Samples for Rock Mechanical Laboratory Analysis
7.2. Laboratory Equipment
7.3. Laboratory Tests for Rock Mechanical Property Determination
7.4. Laboratory Tests for Stress Determination
7.5. Index Tests
References


Chapter 8 – Mechanical Properties and In Situ Stresses From Field Data
Overview
8.1. Estimation of Elastic Parameters
8.2. Estimation of Strength Parameters
8.3. Estimation of in Situ Stresses
References
Further Reading

Chapter 9 – Stability During Drilling
Overview
9.1. Unstable Boreholes: Symptoms, Reasons and Consequences
9.2. Rock Mechanics Analysis of Borehole Stability During Drilling
9.3. Time-Delayed Borehole Failure
9.4. Interaction Between Shale and Drilling Fluid
9.5. Borehole Stability Analysis for Well Design: Incorporating Effects of Nonlinear Elasticity, Plasticity and Rock Anisotropy
9.6. Use of Pressure Gradients
9.7. Beyond Simple Stability Analysis
References
Further Reading

Chapter 10 – Solids Production
10.1. Operational Aspects of Solids Production
10.2. Sand
10.3. Chalk
References
Further Reading

Chapter 11 – Mechanics of Hydraulic Fracturing
Overview
11.1. Conditions for Tensile Failure
11.2. Fracture Initiation and Formation Breakdown
11.3. Fracture Orientation, Growth and Confinement
11.4. Fracture Size and Shape
11.5. Fracture Closure
11.6. Thermal Effects on Hydraulic Fracturing
References
Further Reading

Chapter 12 – Reservoir Geomechanics
12.1. Compaction and Subsidence
12.2. Modelling of Reservoir Compaction
12.3. From Compaction to Subsidence
12.4. Geomechanical Effects on Reservoir Performance
12.5. Well Problems and Reservoir Geomechanics
References
Further reading

Appendix A – Rock Properties
Appendix B – SI Metric Conversion Factors
Appendix C – Mathematical Background

C.1. Introduction
C.2. Matrices
C.3. Vectors and Coordinate Transforms
C.4. Tensors and Coordinate Transforms
C.5. Eigenvalues, Eigenvectors and Diagonalization
C.6. Rotation of the Coordinate System: The Euler Angles
C.7. Examples
C.8. Matrix Invariants
C.9. Some Trigonometric Formulas
C.10. The Voigt Notation Spelled Out
C.11. The Einstein Summing Convention and Other Notation Conventions
References

Appendix D – Some Relevant Formulas
D.1. Elasticity
D.2. Elastic Wave Propagation in Rocks
D.3. Rock Models
D.4. Solids Production
D.5. Subsidence
D.6. Vector Operators in Cylindrical Coordinates
References

Appendix E – List of Symbols

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