Fr. 135.00

Integrated Reservoir Studies for CO2-Enhanced Oil Recovery and Sequestration - Application to an Indian Mature Oil Field

Anglais · Livre de poche

Expédition généralement dans un délai de 6 à 7 semaines

Description

En savoir plus

This book addresses the feasibility of CO2-EOR and sequestration in a mature Indian oil field, pursuing for the first time a cross-disciplinary approach that combines the results from reservoir modeling and flow simulation, rock physics modeling, geomechanics, and time-lapse (4D) seismic monitoring study. The key findings presented indicate that the field under study holds great potential for enhanced oil recovery (EOR) and subsequent CO2 storage.
Experts around the globe argue that storing CO2 by means of enhanced oil recovery (EOR) could support climate change mitigation by reducing the amount of CO2 emissions in the atmosphere by ca. 20%. CO2-EOR and sequestration is a cutting-edge and emerging field of research in India, and there is an urgent need to assess Indian hydrocarbon reservoirs for the feasibility of CO2-EOR and storage.
Combining the fundamentals of the technique with concrete examples, the book is essential reading for all researchers, students and oil & gas professionals who want to fully understand CO2-EOR and its geologic sequestration process in mature oil fields.

Table des matières

Preliminaries.- Introduction.- Ankleshwar Oil Field -A Proposed Co2 Injection Site.- Reservoir Modeling And Fluid Flow Simulations Of Ankleshwar Oil Field, Cambay Basin.- Acoustic Properties Of Reservoir Fluids-Co2 System.- Rock Perspective.- Implication Of Co2-Eor And Reservoir Geomechanics Viewpoint.-  Time-Lapse Monitoring Of Co2 Response At Ankleshwar.- Seismic Modeling Approach For Feasible Co2-Eor And Storage.- Conclusions.- Bibliography.

Résumé

This book addresses the feasibility of CO2-EOR and sequestration in a mature Indian oil field, pursuing for the first time a cross-disciplinary approach that combines the results from reservoir modeling and flow simulation, rock physics modeling, geomechanics, and time-lapse (4D) seismic monitoring study. The key findings presented indicate that the field under study holds great potential for enhanced oil recovery (EOR) and subsequent CO2 storage.
Experts around the globe argue that storing CO2 by means of enhanced oil recovery (EOR) could support climate change mitigation by reducing the amount of CO2 emissions in the atmosphere by ca. 20%. CO2-EOR and sequestration is a cutting-edge and emerging field of research in India, and there is an urgent need to assess Indian hydrocarbon reservoirs for the feasibility of CO2-EOR and storage.
Combining the fundamentals of the technique with concrete examples, the book is essential reading for all researchers, students and oil & gas professionals who want to fully understand CO2-EOR and its geologic sequestration process in mature oil fields.

Détails du produit

Auteurs Shib Sankar Ganguli
Edition Springer, Berlin
 
Langues Anglais
Format d'édition Livre de poche
Sortie 01.01.2018
 
EAN 9783319857633
ISBN 978-3-31-985763-3
Pages 134
Dimensions 155 mm x 8 mm x 235 mm
Poids 242 g
Illustrations XV, 134 p. 77 illus., 74 illus. in color.
Thèmes Springer Theses
Springer Theses
Catégories Sciences naturelles, médecine, informatique, technique > Sciences de la Terre > Géologie

B, Technologien für fossile Brennstoffe, allgemein, Earth and Environmental Science, Geotechnical Engineering & Applied Earth Sciences, Earth Sciences, Fossil Fuels (incl. Carbon Capture), Fossil fuel technologies, Fossil fuels, Fossil Fuel, Geotechnical engineering, Geotechnical Engineering and Applied Earth Sciences, Structural Geology

Commentaires des clients

Aucune analyse n'a été rédigée sur cet article pour le moment. Sois le premier à donner ton avis et aide les autres utilisateurs à prendre leur décision d'achat.

Écris un commentaire

Super ou nul ? Donne ton propre avis.

Pour les messages à CeDe.ch, veuillez utiliser le formulaire de contact.

Il faut impérativement remplir les champs de saisie marqués d'une *.

En soumettant ce formulaire, tu acceptes notre déclaration de protection des données.