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Mathematics of Oil Recovery Book

Mathematics of Oil Recovery
Mathematics of Oil Recovery, This volume draws together a wide range of up-to-date research in the mathematics of oil recovery operations. It concentrates on three main themes: the statistical description of porous media and geological environments at various length scales; the deriv, Mathematics of Oil Recovery has a rating of 3 stars
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Mathematics of Oil Recovery, This volume draws together a wide range of up-to-date research in the mathematics of oil recovery operations. It concentrates on three main themes: the statistical description of porous media and geological environments at various length scales; the deriv, Mathematics of Oil Recovery
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  • Mathematics of Oil Recovery
  • Written by author Lowell R. King, King, P. R. King
  • Published by Clarendon Press, 1992/02/20
  • This volume draws together a wide range of up-to-date research in the mathematics of oil recovery operations. It concentrates on three main themes: the statistical description of porous media and geological environments at various length scales; the deriv
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Contributors
A Review of Reservoir Simulation Techniques and Considerations on Future Developments 1
Simulation of Waterflood Fracture Growth with Coupled Fluid Flow, Temperature and Rock Elasticity 23
Corner Point Geometry in Reservoir Simulation 45
A Boundary Element Solution to the Transient Pressure Response of Multiply Fractured Horizontal Wells 67
A Convective Segregation Model for Predicting Reservoir Fluid Compositional Distribution 85
Effects of Heterogeneities on Phase Behaviour in Enhanced Oil Recovery 115
On the Strict Hyperbolicity of the Buckley-Leverett Equations for 151
Three-Phase Flow
Application of Fractional-Flow Theory to 3-Phase, 1-Dimensional Surfactant Flooding 161
Averaging of Relative Permeability in Heterogeneous Reservoirs 173
Equations for Two-Phase Flow in Porous Media Derived from Space Averaging 199
Statistical Physics and Fractal Displacement Patterns in Porous Media 211
Simulations of Viscous Fingering in a Random Network 243
A Simple Analytical Model of the Growth of Viscous Fingers in Heterogeneous Porous Media 263
Simple Renormalization Schemes for Calculating Effective Properties of Heterogeneous Reservoirs 281
Finite Element Principles for Evolutionary Problems, with Applications to Oil Reservoir Modelling 299
Multigrid Methods in Modelling Porous Media Flow 323
Local Grid Refinement 337
Analysis of a Model and Sequential Numerical Method for Thermal Reservoir Simulation 359
Operator Splitting and Domain Decomposition Techniques for Reservoir Flow Problems 381
Simulation of Compositional Reservoir Phenomena on a Hypercube 393
The Parallelisation of Bosim, Shell's Black/Volatile Oil Reservoir Simulator 411
Monte Carlo Simulation of Lithology from Seismic Data in a Channel-Sand Reservoir 423
Numerical Rocks 437
Modelling Flow through Heterogeneous Porous Media using Effective Relative Permeabilities Generated from Detailed Simulations 449
Viscous/Gravity Scaling of Pseudo Relative Permeabilities for the Simulation of Moderately Heterogeneous Reservoirs 471
Microscopic Flow and Generalized Darcy's Equations 495
Prediction of Permeability from a Combination of Mercury Injection and Pore Image Analysis Data 515
The Inclusion of Molecular Diffusion Effects in the Network Modelling of Hydrodynamic Dispersion in Porous Media 529
The Network Simulation of Displacement Processes in Fractured Reservoir Matrix Blocks 551
An Analytical Solution to a Multiple-Region Moving Boundary Problem: Nonisothermal Water Injection into Oil Reservoirs 573
Statistical and Experimental Calculation of Effective Permeabilities in the Presence of Oblique Shales 597
Reservoir Simulation Using Mixed Methods, a Modified Method Characteristics, and Local Grid Refinement 617
Tracking an In-Situ Combustion Front Using the Thin Flame Technique 631
Averaging of Relative Permeability in Composite Cores 649
A Reservoir Simulator Based on Front-Tracking 683
Effective Absolute Permeability in the Presence of Sub-Grid Heterogeneities: An Analytical Approach 699
Relative Permeabilities and Capillary Pressure Estimation Through Least Square Fitting 721
Coning Simulation More Accurately 735
A Finite Difference Scheme for a Polymer Flooding Problem 745
Two-Phase Flow in Heterogeneous Porous Media: Large-Scale Capillary Pressure and Permeability Determination 751
A Matrix Injection Simulator 767
Effect of Fluid Properties on Convective Dispersion: Comparison of Analytical Model with Numerical Simulations 775
Fundamental Mechanisms of Particle Deposition on a Porous Wall: Hydrodynamical Aspects 785
Wetting Phenomena in Square-Sectional Capillaries 791
A Numerical Method for Simulation of Centrifuge Drainage 799
Gas-Coning by a Horizontal Well 805


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Mathematics of Oil Recovery, This volume draws together a wide range of up-to-date research in the mathematics of oil recovery operations. It concentrates on three main themes: the statistical description of porous media and geological environments at various length scales; the deriv, Mathematics of Oil Recovery

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Mathematics of Oil Recovery, This volume draws together a wide range of up-to-date research in the mathematics of oil recovery operations. It concentrates on three main themes: the statistical description of porous media and geological environments at various length scales; the deriv, Mathematics of Oil Recovery

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Mathematics of Oil Recovery, This volume draws together a wide range of up-to-date research in the mathematics of oil recovery operations. It concentrates on three main themes: the statistical description of porous media and geological environments at various length scales; the deriv, Mathematics of Oil Recovery

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