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CO2-Reservoir Oil Miscibility = Expe...
~
Saini, Dayanand.
CO2-Reservoir Oil Miscibility = Experimental and Non-experimental Characterization and Determination Approaches /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
CO2-Reservoir Oil Miscibility/ by Dayanand Saini.
Reminder of title:
Experimental and Non-experimental Characterization and Determination Approaches /
Author:
Saini, Dayanand.
Description:
XVI, 104 p. 45 illus., 28 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Fossil fuels. -
Online resource:
https://doi.org/10.1007/978-3-319-95546-9
ISBN:
9783319955469
CO2-Reservoir Oil Miscibility = Experimental and Non-experimental Characterization and Determination Approaches /
Saini, Dayanand.
CO2-Reservoir Oil Miscibility
Experimental and Non-experimental Characterization and Determination Approaches /[electronic resource] :by Dayanand Saini. - 1st ed. 2019. - XVI, 104 p. 45 illus., 28 illus. in color.online resource. - SpringerBriefs in Petroleum Geoscience & Engineering,2509-3126. - SpringerBriefs in Petroleum Geoscience & Engineering,.
Fundamentals of CO2-Oil Miscibility -- Needs to Determine CO2-Oil Minimum Miscibility Pressure (MMP) -- Analytical MMP Determination Methods -- Experimental MMP Determination Methods -- Computational MMP Determination Methods -- Advantages, Disadvantages, and Limitations of Various Methods -- Emerging CO2-Oil MMP Determination Approaches.
This SpringerBrief critically examines the latest experimental and non-experimental approaches used for the fast and reliable characterization and determination of CO2-reservoir oil miscibility in terms of the minimum miscibility pressure (MMP). This book serves as a one-stop source for developing an enhanced understanding of these available methods, and specifically documents, analyses, and evaluates their suitability and robustness for depicting and characterizing the phenomenon of CO2-reservoir oil miscibility in a fast and cost-effective manner. Such information can greatly assist a project team in selecting an appropriate MMP determination method as per the project’s need at a given project’s stage, be that screening, design, or implementation. CO2-Reservoir Oil Miscibility: Experiential and Non-Experimental Characterization and Determination Approaches will be of interest to petroleum science and engineering professionals, researchers, and undergraduate and graduate students engaged in CO2 enhanced oil recovery (EOR) and/or simultaneous CO2-EOR and storage projects and related research. It may also be of interest to engineering and management professionals within the petroleum industry who have responsibility for implementing CO2-EOR projects.
ISBN: 9783319955469
Standard No.: 10.1007/978-3-319-95546-9doiSubjects--Topical Terms:
654433
Fossil fuels.
LC Class. No.: TJ163.13-163.25
Dewey Class. No.: 662.6
CO2-Reservoir Oil Miscibility = Experimental and Non-experimental Characterization and Determination Approaches /
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Fundamentals of CO2-Oil Miscibility -- Needs to Determine CO2-Oil Minimum Miscibility Pressure (MMP) -- Analytical MMP Determination Methods -- Experimental MMP Determination Methods -- Computational MMP Determination Methods -- Advantages, Disadvantages, and Limitations of Various Methods -- Emerging CO2-Oil MMP Determination Approaches.
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This SpringerBrief critically examines the latest experimental and non-experimental approaches used for the fast and reliable characterization and determination of CO2-reservoir oil miscibility in terms of the minimum miscibility pressure (MMP). This book serves as a one-stop source for developing an enhanced understanding of these available methods, and specifically documents, analyses, and evaluates their suitability and robustness for depicting and characterizing the phenomenon of CO2-reservoir oil miscibility in a fast and cost-effective manner. Such information can greatly assist a project team in selecting an appropriate MMP determination method as per the project’s need at a given project’s stage, be that screening, design, or implementation. CO2-Reservoir Oil Miscibility: Experiential and Non-Experimental Characterization and Determination Approaches will be of interest to petroleum science and engineering professionals, researchers, and undergraduate and graduate students engaged in CO2 enhanced oil recovery (EOR) and/or simultaneous CO2-EOR and storage projects and related research. It may also be of interest to engineering and management professionals within the petroleum industry who have responsibility for implementing CO2-EOR projects.
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