Understanding Pore Space through Log Measurements: Developments in Petroleum Science, cartea 76
Autor K. Meenakshi Sundaram, Soumyajit Mukherjeeen Limba Engleză Paperback – 29 noi 2022
- Offers insight into influence of pore attributes on macroscopic pore space descriptors
- Grain characters that influence the properties of the pore space
- Guides on how to best model the inversion of log data into these attributes
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Specificații
ISBN-13: 9780444641694
ISBN-10: 0444641696
Pagini: 874
Dimensiuni: 152 x 229 x 51 mm
Greutate: 1.15 kg
Editura: ELSEVIER SCIENCE
Seria Developments in Petroleum Science
ISBN-10: 0444641696
Pagini: 874
Dimensiuni: 152 x 229 x 51 mm
Greutate: 1.15 kg
Editura: ELSEVIER SCIENCE
Seria Developments in Petroleum Science
Public țintă
- Geologists
- Geophysicists
- Exploration Geologists
- Petrophysicists
- The target readers/audience would within the oil and gas industry sector up to middle management responsible for log data analysis and customising / improvising upon current data processing techniques
- Students pursuing post graduate studies / research in the field of reservoir characterization and Petroleum Geoscience
- Workers in the sedimentology field who would find avenues of integration of log data analyses with their work
Cuprins
1. Pore Space and its Classification – Different types of pores and their origin – Concept of different types of porosity – different models of pore space
2. Porosity Estimation from Logs – Modelling grain properties and fluid saturation for estimating porosity from logs – Review of techniques of inversion of log data to gross attributes of the pore space
3. Pore attributes for conventional reservoirs - Clastic and carbonate rock pore types - concepts of pore size - pore shape – surface to volume ratio – pore connectivity – pore compressibility
4. Pore attributes for non-conventional reservoirs – Tight Gas Reservoirs – Basin Centred Gas Reservoirs – Shale Gas Reservoirs – Coals – surface to volume ratio – pore compressibility
5. An overview of log measurements which help obtain pore attributes in respect of conventional reservoirs
6. An overview of log measurements which are essential for understanding pore attributes and pore space attributes of non-conventional reservoirs
7. Techniques for characterizing grains and pores from logs
8. Archie’s cementation exponent–importance of, and salient features of effective medium theory based approaches
9. Permeability of unimodal pore system– conventional reservoirs – unimodal porosity - the crucial role this porosity plays in controlling permeability–Permeability and Stoneley wave Propagation.
10. Bi-Modal, Tri-Modal Pore Systems, Fractures
2. Porosity Estimation from Logs – Modelling grain properties and fluid saturation for estimating porosity from logs – Review of techniques of inversion of log data to gross attributes of the pore space
3. Pore attributes for conventional reservoirs - Clastic and carbonate rock pore types - concepts of pore size - pore shape – surface to volume ratio – pore connectivity – pore compressibility
4. Pore attributes for non-conventional reservoirs – Tight Gas Reservoirs – Basin Centred Gas Reservoirs – Shale Gas Reservoirs – Coals – surface to volume ratio – pore compressibility
5. An overview of log measurements which help obtain pore attributes in respect of conventional reservoirs
6. An overview of log measurements which are essential for understanding pore attributes and pore space attributes of non-conventional reservoirs
7. Techniques for characterizing grains and pores from logs
8. Archie’s cementation exponent–importance of, and salient features of effective medium theory based approaches
9. Permeability of unimodal pore system– conventional reservoirs – unimodal porosity - the crucial role this porosity plays in controlling permeability–Permeability and Stoneley wave Propagation.
10. Bi-Modal, Tri-Modal Pore Systems, Fractures