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Introduction to Enhanced Recovery Methods for Heavy Oil and Tar Sands

Download or Read eBook Introduction to Enhanced Recovery Methods for Heavy Oil and Tar Sands PDF written by James G. Speight and published by Gulf Professional Publishing. This book was released on 2016-02-24 with total page 577 pages. Available in PDF, EPUB and Kindle.
Introduction to Enhanced Recovery Methods for Heavy Oil and Tar Sands
Author :
Publisher : Gulf Professional Publishing
Total Pages : 577
Release :
ISBN-10 : 9780128018750
ISBN-13 : 0128018755
Rating : 4/5 (50 Downloads)

Book Synopsis Introduction to Enhanced Recovery Methods for Heavy Oil and Tar Sands by : James G. Speight

Book excerpt: Introduction to Enhanced Recovery Methods for Heavy Oil and Tar Sands, Second Edition, explores the importance of enhanced oil recovery (EOR) and how it has grown in recent years thanks to the increased need to locate unconventional resources such as heavy oil and shale. Unfortunately, petroleum engineers and managers aren't always well-versed in the enhancement methods that are available when needed or the most economically viable solution to maximize their reservoir's productivity. This revised new edition presents all the current methods of recovery available, including the pros and cons of each. Expanded and updated as a great preliminary text for the newcomer to the industry or subject matter, this must-have EOR guide teaches all the basics needed, including all thermal and non-thermal methods, along with discussions of viscosity, sampling, and the technologies surrounding offshore applications. - Enables users to quickly learn how to choose the most efficient recovery method for their reservoir while evaluating economic conditions - Presents the differences between each method of recovery with newly added real-world case studies from around the world - Helps readers stay competitive with the growing need of extracting unconventional resources with new content on how these complex reservoirs interact with injected reservoir fluids


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Introduction to Enhanced Recovery Methods for Heavy Oil and Tar Sands
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