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Author: Taylor, Charles E., editor, Kwan, Jonathan T., editor, SpringerLink (Online service)

Added by: sketch

Added Date: 2015-12-30

Language: eng

Subjects: Chemistry, Chemistry, Inorganic, Physical organic chemistry, Chemical engineering, Geochemistry, Chemistry, Chemistry, Physical and theoretical, Chemistry, Inorganic, Industrial Chemistry/Chemical Engineering, Geochemistry

Publishers: Springer US

Collections: journals contributions, journals

ISBN Number: 9780306486456, 0306486458

Pages Count: 300

PPI Count: 300

PDF Count: 1

Total Size: 113.86 MB

PDF Size: 16.31 MB

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Advances in the Study of Gas Hydrates
Author: Charles E. Taylor, Jonathan T. Kwan
Published by Springer US
ISBN: 978-0-306-48481-0
DOI: 10.1007/b105997

Table of Contents:

  • Towards a Full Dynamic Model of CO2 Hydrate Formation in Aqueous Solutions: Phase Field Theory of Nucleation and Growth
  • Statistical Thermodynamic Model of Clathrate Hydrates with Multiple Filling of Cages
  • Phenomenological Modeling of Hydrate Formation and Dissociation
  • Effect of Conductive and Convective Heat Flow on Gas Production from Natural Hydrates by Depressurization
  • An Application Used For Correcting Thermal Gradients Below Permafrost Using An Empirical Diffusion Model
  • Gas Production from Class 1 Hydrate Accumulations
  • A Project Update of Methane Hydrate Production from Alaskan Permafrost
  • Seismic Detection and Quantification of Gas Hydrates using Rock Physics and Inversion
  • Experiment and Modeling of Hydrate Equilibrium Line in Gas, Gas Condensate, Black Oil, and Drilling Completion Fluids
  • Solubility Measurements for CO2 and Methane Mixture in Water and Aqueous Electrolyte Solutions near Hydrate Conditions
  • Nucleation Mechanisms of Clathrate Hydrates
  • The MSU Micellar-Solution Gas Hydrate Storage Process for Natural Gas
  • Enhancement in the Storage of Methane in Hydrates
  • Strength and Acoustic Properties of Ottawa Sand Containing Laboratory-Formed Methane Gas Hydrate
  • Investigating Methane Hydrate in Sediments using X-Ray Computed Tomography
  • Methane Hydrate Studies: Delineating Properties of Host Sediments to Establish Reproducible Decomposition Kinetics

Towards a Full Dynamic Model of CO2 Hydrate Formation in Aqueous Solutions: Phase Field Theory of Nucleation and Growth -- Statistical Thermodynamic Model of Clathrate Hydrates with Multiple Filling of Cages -- Phenomenological Modeling of Hydrate Formation and Dissociation -- Effect of Conductive and Convective Heat Flow on Gas Production from Natural Hydrates by Depressurization -- An Application Used For Correcting Thermal Gradients Below Permafrost Using An Empirical Diffusion Model -- Gas Production from Class 1 Hydrate Accumulations -- A Project Update of Methane Hydrate Production from Alaskan Permafrost -- Seismic Detection and Quantification of Gas Hydrates using Rock Physics and Inversion -- Experiment and Modeling of Hydrate Equilibrium Line in Gas, Gas Condensate, Black Oil, and Drilling Completion Fluids -- Solubility Measurements for CO2 and Methane Mixture in Water and Aqueous Electrolyte Solutions near Hydrate Conditions -- Nucleation Mechanisms of Clathrate Hydrates -- The MSU Micellar-Solution Gas Hydrate Storage Process for Natural Gas -- Enhancement in the Storage of Methane in Hydrates -- Strength and Acoustic Properties of Ottawa Sand Containing Laboratory-Formed Methane Gas Hydrate -- Investigating Methane Hydrate in Sediments using X-Ray Computed Tomography -- Methane Hydrate Studies: Delineating Properties of Host Sediments to Establish Reproducible Decomposition Kinetics

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