Wellbore Stability and Integrity: Models and Case Studies for Oil and Gas, Geothermal, and CO2 Sequestration
Autor Meng Meng, Jiajia Gao, Weicheng Zhang, Jon Jincai Zhangen Limba Engleză Paperback – iul 2025
- Presents the fundamental theories on which to model wellbore stability and integrity
- Supports energy transition with applications discussions on geothermal and CO2 storage and injection wells
- Includes practice models with case studies supplied in every chapter and additional online coding
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Specificații
ISBN-13: 9780323995863
ISBN-10: 0323995861
Pagini: 400
Ilustrații: 300 illustrations (100 in full color)
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 0323995861
Pagini: 400
Ilustrații: 300 illustrations (100 in full color)
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
Public țintă
Petroleum engineers, geothermal engineers, researchers, technologists, and field engineers who work at global oil & gas companies, energy service companies, renewable energy companies, carbon solution companies, and energy consulting companies, graduate level petroleum engineering/geotechnical engineeringGraduate level for Petroleum Engineering, Renewable Energy Engineering, Earth and Environmental Engineering, and Geotechnical Engineering
Cuprins
Part 1: Analytical modelling on wellbore stability
1. Introduction of wellbore stability
2. Fundamental poroelastic theory
3. Poroelastic modelling of wellbore stability
4. Thermoporoleasitc modelling of wellbore stability
5. Thermochemoporoleasitc modelling of wellbore stability
6. Dual porosity single and dual permeability model
7. Dynamic model
8. Two-phase flow of wellbore stability
9. Application of poroelasticity in geothermal wellbore stability
Part 2: Numerical modelling on wellbore stability
10. Finite element modelling of wellbore stability
11. DEM modelling of wellbore stability
12. Comparison between analytical and numerical solution
Part 3: Wellbore integrity
13. Introduction of wellbore integrity
14. Oil well cement hardening and failure
15. Thermoelastic modelling
16. Porothermoelastic modelling
17. Finite element modelling of wellbore integrity
18. Case failure analysis and mitigation
19. Application of wellbore integrity model for CO2 storage
1. Introduction of wellbore stability
2. Fundamental poroelastic theory
3. Poroelastic modelling of wellbore stability
4. Thermoporoleasitc modelling of wellbore stability
5. Thermochemoporoleasitc modelling of wellbore stability
6. Dual porosity single and dual permeability model
7. Dynamic model
8. Two-phase flow of wellbore stability
9. Application of poroelasticity in geothermal wellbore stability
Part 2: Numerical modelling on wellbore stability
10. Finite element modelling of wellbore stability
11. DEM modelling of wellbore stability
12. Comparison between analytical and numerical solution
Part 3: Wellbore integrity
13. Introduction of wellbore integrity
14. Oil well cement hardening and failure
15. Thermoelastic modelling
16. Porothermoelastic modelling
17. Finite element modelling of wellbore integrity
18. Case failure analysis and mitigation
19. Application of wellbore integrity model for CO2 storage