Science of Carbon Storage in Deep Saline Formations: Process Coupling across Time and Spatial Scales
Editat de Pania Newell, Anastasia Ilgenen Limba Engleză Paperback – 10 sep 2018
- Includes the underlying scientific research, as well as the risks associated with geological carbon storage
- Covers the topic of geological carbon storage from various disciplines, addressing the multi-scale and multi-physics aspects of geological carbon storage
- Organized by discipline for ease of navigation
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Specificații
ISBN-13: 9780128127520
ISBN-10: 012812752X
Pagini: 446
Dimensiuni: 191 x 235 x 15 mm
Greutate: 0.76 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 012812752X
Pagini: 446
Dimensiuni: 191 x 235 x 15 mm
Greutate: 0.76 kg
Editura: ELSEVIER SCIENCE
Public țintă
Professional geologists, geochemists, geophysicists, and environmental engineers; and upper-level graduate students in these fieldsCuprins
1. Overview of Geological Carbon Storage (GCS)
2. CO2 Enhanced Oil Recovery Experience and its Messages for CO2 Storage
3. Field observations of geochemical response to CO2 injection at the reservoir scale
4. Experimental studies of reactivity and transformations of rocks and minerals in water-bearing supercritical CO2
5. Reactive transport modelling of geological carbon storage - Zhenxue Dai, Hari Viswanathan, Ting Xiao, 6. Multi-phase flow associated with GCS at the field scale
7. Laboratory studies to understand the controls on flow and transport for CO2 storage
8. Numerical modelling of fluid flow during GCS
9. Field and laboratory studies of geomechanical response to the injection of CO2
10. Numerical geomechanics studies of GCS
11. Thermal processes during GCS: field observations, laboratory and theoretical studies
12. Field observations, experimental studies, and thermodynamic modelling of CO2 effects on microbial populations
13. Hydraulic-chemical coupling associated with injection of CO2 into subsurface - Rajesh Pawar and George Guthrie
14. Fracture Specific Stiffness: The Critical Link between the Scaling Behavior of Hydro-Mechanical Coupling in Fractures and Seismic Monitoring
15. Chemical-mechanical coupling associated with injection of CO2 into subsurface
16. Hydrologic, mechanical, thermal, and chemical process coupling triggered by the injection of CO2
17. Emergent Phenomena: Challenges in Prediction and Monitoring Risk and Performance in GCS - Seunghee Kim, D. 18. Closing remarks
2. CO2 Enhanced Oil Recovery Experience and its Messages for CO2 Storage
3. Field observations of geochemical response to CO2 injection at the reservoir scale
4. Experimental studies of reactivity and transformations of rocks and minerals in water-bearing supercritical CO2
5. Reactive transport modelling of geological carbon storage - Zhenxue Dai, Hari Viswanathan, Ting Xiao, 6. Multi-phase flow associated with GCS at the field scale
7. Laboratory studies to understand the controls on flow and transport for CO2 storage
8. Numerical modelling of fluid flow during GCS
9. Field and laboratory studies of geomechanical response to the injection of CO2
10. Numerical geomechanics studies of GCS
11. Thermal processes during GCS: field observations, laboratory and theoretical studies
12. Field observations, experimental studies, and thermodynamic modelling of CO2 effects on microbial populations
13. Hydraulic-chemical coupling associated with injection of CO2 into subsurface - Rajesh Pawar and George Guthrie
14. Fracture Specific Stiffness: The Critical Link between the Scaling Behavior of Hydro-Mechanical Coupling in Fractures and Seismic Monitoring
15. Chemical-mechanical coupling associated with injection of CO2 into subsurface
16. Hydrologic, mechanical, thermal, and chemical process coupling triggered by the injection of CO2
17. Emergent Phenomena: Challenges in Prediction and Monitoring Risk and Performance in GCS - Seunghee Kim, D. 18. Closing remarks