Michal Nemcok, Steven Schamel, Rod Gayer
Thrustbelts
Structural Architecture, Thermal Regimes and Petroleum Systems
Michal Nemcok, Steven Schamel, Rod Gayer
Thrustbelts
Structural Architecture, Thermal Regimes and Petroleum Systems
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Comprehensive summary of research and new techniques for academic researchers, petroleum workers and graduate students.
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Comprehensive summary of research and new techniques for academic researchers, petroleum workers and graduate students.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Cambridge University Press
- Seitenzahl: 556
- Erscheinungstermin: 28. Januar 2009
- Englisch
- Abmessung: 280mm x 210mm x 30mm
- Gewicht: 1342g
- ISBN-13: 9780521110433
- ISBN-10: 0521110432
- Artikelnr.: 26010676
- Herstellerkennzeichnung
- Books on Demand GmbH
- In de Tarpen 42
- 22848 Norderstedt
- info@bod.de
- 040 53433511
- Verlag: Cambridge University Press
- Seitenzahl: 556
- Erscheinungstermin: 28. Januar 2009
- Englisch
- Abmessung: 280mm x 210mm x 30mm
- Gewicht: 1342g
- ISBN-13: 9780521110433
- ISBN-10: 0521110432
- Artikelnr.: 26010676
- Herstellerkennzeichnung
- Books on Demand GmbH
- In de Tarpen 42
- 22848 Norderstedt
- info@bod.de
- 040 53433511
Michal Nemcok is a Research Professor who has worked on major thrustbelt regions throughout the world.
Introduction
Acknowledgements
Part I. Fundamentals of Thrustbelts: 1. Introduction to the topic of thrustbelts
2. Mechanics of thrust wedges
3. Mechanics of thrust sheets
4. Thin-skin thrustbelt structures
5. Thick-skin thrustbelt structures
6. Determination of timing of thrusting and deformation rates
Part II. Evolving Structural Architecture and Fluid Flow: 7. Role of mechanical stratigraphy on evolving architectural elements and structural style
8. Role of pre-contractional tectonics and anisotropy on evolving structural style
9. Role of syn-orogenic erosion and deposition on evolving structural style
10. Fluid flow in thrustbelts during and after deformation
Part III. Thermal Regime: 11. Role of pre-orogenic heat flow on subsequent thermal regimes
12. Role of structural and stratigraphic architecture on thermal regimes
13. Role of syn-orogenic burial and/or uplift and erosion on thermal regimes
14. Role of deformation on thermal regimes
15. Role of fluid movement on thermal regimes
Part IV. Petroleum Systems: 16. Hydrocarbons in thrustbelts: global view
17. Source rocks in thrustbelt settings
18. Maturation and migration in thrustbelts
19. Seals and traps in thrustbelts
20. Reservoir destruction or enhancement due to thrusting
21. Remaining petroleum potential of thrustbelts.
Acknowledgements
Part I. Fundamentals of Thrustbelts: 1. Introduction to the topic of thrustbelts
2. Mechanics of thrust wedges
3. Mechanics of thrust sheets
4. Thin-skin thrustbelt structures
5. Thick-skin thrustbelt structures
6. Determination of timing of thrusting and deformation rates
Part II. Evolving Structural Architecture and Fluid Flow: 7. Role of mechanical stratigraphy on evolving architectural elements and structural style
8. Role of pre-contractional tectonics and anisotropy on evolving structural style
9. Role of syn-orogenic erosion and deposition on evolving structural style
10. Fluid flow in thrustbelts during and after deformation
Part III. Thermal Regime: 11. Role of pre-orogenic heat flow on subsequent thermal regimes
12. Role of structural and stratigraphic architecture on thermal regimes
13. Role of syn-orogenic burial and/or uplift and erosion on thermal regimes
14. Role of deformation on thermal regimes
15. Role of fluid movement on thermal regimes
Part IV. Petroleum Systems: 16. Hydrocarbons in thrustbelts: global view
17. Source rocks in thrustbelt settings
18. Maturation and migration in thrustbelts
19. Seals and traps in thrustbelts
20. Reservoir destruction or enhancement due to thrusting
21. Remaining petroleum potential of thrustbelts.
Introduction
Acknowledgements
Part I. Fundamentals of Thrustbelts: 1. Introduction to the topic of thrustbelts
2. Mechanics of thrust wedges
3. Mechanics of thrust sheets
4. Thin-skin thrustbelt structures
5. Thick-skin thrustbelt structures
6. Determination of timing of thrusting and deformation rates
Part II. Evolving Structural Architecture and Fluid Flow: 7. Role of mechanical stratigraphy on evolving architectural elements and structural style
8. Role of pre-contractional tectonics and anisotropy on evolving structural style
9. Role of syn-orogenic erosion and deposition on evolving structural style
10. Fluid flow in thrustbelts during and after deformation
Part III. Thermal Regime: 11. Role of pre-orogenic heat flow on subsequent thermal regimes
12. Role of structural and stratigraphic architecture on thermal regimes
13. Role of syn-orogenic burial and/or uplift and erosion on thermal regimes
14. Role of deformation on thermal regimes
15. Role of fluid movement on thermal regimes
Part IV. Petroleum Systems: 16. Hydrocarbons in thrustbelts: global view
17. Source rocks in thrustbelt settings
18. Maturation and migration in thrustbelts
19. Seals and traps in thrustbelts
20. Reservoir destruction or enhancement due to thrusting
21. Remaining petroleum potential of thrustbelts.
Acknowledgements
Part I. Fundamentals of Thrustbelts: 1. Introduction to the topic of thrustbelts
2. Mechanics of thrust wedges
3. Mechanics of thrust sheets
4. Thin-skin thrustbelt structures
5. Thick-skin thrustbelt structures
6. Determination of timing of thrusting and deformation rates
Part II. Evolving Structural Architecture and Fluid Flow: 7. Role of mechanical stratigraphy on evolving architectural elements and structural style
8. Role of pre-contractional tectonics and anisotropy on evolving structural style
9. Role of syn-orogenic erosion and deposition on evolving structural style
10. Fluid flow in thrustbelts during and after deformation
Part III. Thermal Regime: 11. Role of pre-orogenic heat flow on subsequent thermal regimes
12. Role of structural and stratigraphic architecture on thermal regimes
13. Role of syn-orogenic burial and/or uplift and erosion on thermal regimes
14. Role of deformation on thermal regimes
15. Role of fluid movement on thermal regimes
Part IV. Petroleum Systems: 16. Hydrocarbons in thrustbelts: global view
17. Source rocks in thrustbelt settings
18. Maturation and migration in thrustbelts
19. Seals and traps in thrustbelts
20. Reservoir destruction or enhancement due to thrusting
21. Remaining petroleum potential of thrustbelts.