Shale Gas and Tight Oil Reservoir Simulation

Nonfiction, Science & Nature, Technology, Petroleum, Science, Physics, Energy
Cover of the book Shale Gas and Tight Oil Reservoir Simulation by Wei Yu, Kamy Sepehrnoori, Elsevier Science
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Author: Wei Yu, Kamy Sepehrnoori ISBN: 9780128138694
Publisher: Elsevier Science Publication: July 29, 2018
Imprint: Gulf Professional Publishing Language: English
Author: Wei Yu, Kamy Sepehrnoori
ISBN: 9780128138694
Publisher: Elsevier Science
Publication: July 29, 2018
Imprint: Gulf Professional Publishing
Language: English

Shale Gas and Tight Oil Reservoir Simulation delivers the latest research and applications used to better manage and interpret simulating production from shale gas and tight oil reservoirs. Starting with basic fundamentals, the book then includes real field data that will not only generate reliable reserve estimation, but also predict the effective range of reservoir and fracture properties through multiple history matching solutions. Also included are new insights into the numerical modelling of CO2 injection for enhanced oil recovery in tight oil reservoirs. This information is critical for a better understanding of the impacts of key reservoir properties and complex fractures.

  • Models the well performance of shale gas and tight oil reservoirs with complex fracture geometries
  • Teaches how to perform sensitivity studies, history matching, production forecasts, and economic optimization for shale-gas and tight-oil reservoirs
  • Helps readers investigate data mining techniques, including the introduction of nonparametric smoothing models
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Shale Gas and Tight Oil Reservoir Simulation delivers the latest research and applications used to better manage and interpret simulating production from shale gas and tight oil reservoirs. Starting with basic fundamentals, the book then includes real field data that will not only generate reliable reserve estimation, but also predict the effective range of reservoir and fracture properties through multiple history matching solutions. Also included are new insights into the numerical modelling of CO2 injection for enhanced oil recovery in tight oil reservoirs. This information is critical for a better understanding of the impacts of key reservoir properties and complex fractures.

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