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Confined Fluid Phase Behavior and CO2 Sequestration in Shale Reservoirs

Autor Yueliang Liu, Zhenhua Rui
en Limba Engleză Paperback – 19 mai 2022
Confined Fluid Phase Behavior and CO2 Sequestration in Shale Reservoirs delivers the calculation components to understand pore structure and absorption capacity involving unconventional reservoirs. Packed with experimental procedures, step-by-step instructions, and published data, the reference explains measurements for capillary pressure models, absorption behavior in double nano-pore systems, and the modeling of interfacial tension in C02/CH4/brine systems. Rounding out with conclusions and additional literature, this reference gives petroleum engineers and researchers the knowledge to maximize productivity in shale reservoirs.

  • Helps readers gain advanced understanding of methods of adsorption behavior in shale gas
  • Presents theories and calculations for measuring and computing by providing step-by-step instructions, including flash calculation for phase equilibrium
  • Includes advances in shale fluid behavior, along with well-structured experiments and flow charts
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Specificații

ISBN-13: 9780323916608
ISBN-10: 0323916600
Pagini: 244
Ilustrații: 100 illustrations (50 in full color)
Dimensiuni: 152 x 229 x 21 mm
Greutate: 0.34 kg
Editura: ELSEVIER SCIENCE

Public țintă

Petroleum engineers; reservoir engineers; researchers interested in shale oil and gas reservoirs

Cuprins

1. Introduction2. Comparison of Pr-eos with Capillary Pressure Model with Engineering Density Functional Theory in Describing the Phase Behavior of Confined Hydrocarbons3. Competitive Adsorption Behavior of Hydrocarbon(s)/CO2 Mixtures Ii a Double-nanopore System Using Molecular Simulations4. Determination of the Absolute Adsorption/Desorption Isotherms of CH4 and N-C4H10 on Shale from a Nano-scale Perspective5. Phase Behavior of N2/N-C4H10 in a Partially Confined Space Derived from Shale Sample6. Measurements and Modeling of Interfacial Tension for CO2/CH4/Brine Systems Under Reservoir Conditions7. Conclusions, Contributions and Recommendations