Fundamentals of Enhanced Oil Recovery Methods for Unconventional Oil Reservoirs

Fundamentals of Enhanced Oil Recovery Methods for Unconventional Oil Reservoirs

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Fundamentals of Enhanced Oil Recovery Methods for Unconventional Oil Reservoirs, Volume 67 provides important guidance on which EOR methods work in shale and tight oil reservoirs. This book helps readers learn the main fluid and rock properties of shale and tight reservoirs—which are the main target for EOR techniques—and understand the physical and chemical mechanisms for the injected EOR fluids to enhance oil recovery in shale and tight oil reservoirs. The book explains the effects of complex hydraulic fractures and natural fractures on the performance of each EOR technique. The book describes the parameters affecting obtained oil recovery by injecting different EOR methods in both the microscopic and macroscopic levels of ULR. This book also provides proxy models to associate the functionality of the improved oil recovery by injecting different EOR methods with different operating parameters, rock, and fluid properties. The book provides profesasionals working in the petroleum industry the know-how to conduct a successful project for different EOR methods in shale plays, while it also helps academics and students in understanding the basics and principles that make the performance of EOR methods so different in conventional reservoirs and unconventional formations.
EAN 9780128183434
ISBN 0128183438
Binding Paperback / softback
Publisher Elsevier Science Publishing Co Inc
Publication date September 8, 2020
Pages 286
Language English
Dimensions 229 x 152
Country United States
Readership Professional & Scholarly
Authors Alfarge, Dheiaa (Research advisory board member, SRP-Center.iq, Karbala, Iraq and assistant professor, Izmir Katip Celebi University, Izmir, Turkey); Bai, Baojun (Professor and holder of the Lester R. Birbeck Endowed Chair in Petroleum Engineering Program, Missouri University of Science and Technology (S&T)); Wei, Mingzhen (Associate Professor, Department of Geosciences and Geological and Petroleum Engineering (GGPE), Missouri S&T)
Series Developments in Petroleum Science