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Reservoir Engineering - General - Improved Treatment of Dispersion in Numerical Calculation of Multidimensional Miscible DisplacementBy D. W. Peaceman
In previous papers by this author on numerical calculations of multidimensional miscible displacement, some simplifying assumptions were made in writing the dispersion term of the differential equatio
Jan 1, 1967
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Reservoir Engineering - General - In Situ Combustion Away From Thin, Horizontal Gas ChannelsBy R. F. Jones, N. E. Truitt, M. Prats
In most published discussions and theories of in situ combustion, the combustion fronts are assumed to be vertical. However, evidence from field tests leaves no doubt that combustion fronts often adva
Jan 1, 1969
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Reservoir Engineering - General - In Situ Combustion Process – Results of a Five-Well Field Exper...By R. E. Cook
This paper presents results of a study to determine to what extent errors in estimated free gas saturation affect the results of static pressure calculations from build-up curves in two-phase systems.
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Reservoir Engineering - General - In-Place Determination of Permeability Distribution for Heterogeneous Porous Media Through Analysis of Energy DissipationBy R. W. Nelson
The theoretical basis is presented for energy dissipation methods of measuring permeability in saturated heterogeneous media. Analysis starts with the equation for single-phase flow in heterogeneous p
Jan 1, 1969
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Reservoir Engineering - General - Integration of Partial Differential Equation for Transient Linear Flow of Gas-Condensate Fluids in Porous StructuresBy C. K. Eilerts
Finite difference equations were programmed and used to integrate the second-order, second-degree, partial differential equation with variable coefficients that represents the transient linear flow of
Jan 1, 1965
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Reservoir Engineering - General - Integration of Partial Differential Equations for Multicomponent, Two-Phase Transient Radial FlowBy E. F. Sumner, C. K. Eilerts
A partial differential equation was developed and programmed to compute the cumulation and flow of the liquid phase of a gas-condensate fluid. It was found that such cumulation near the wellbore may a
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Reservoir Engineering - General - Internal Anatomy of a Tight, Fractured Hunton Lime Reservoir Revealed by Performance – West Edmond FieldBy L. F. Elkins
In 1946 Littlefield, Gray and Godbold published a thorough geologic description of the West Edmond Hunton Lime reservoir, located in Central Oklahoma, and discussion of its early performance.l They st
Jan 1, 1970
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Reservoir Engineering - General - Isothermal Displacement Processes with Interphase Mass TransferBy H. S. Price, D. A. T. Donohue
The system of equations describing displacement of a hydrocarbon liquid by a hydrocarbon vapor in a porous medium where mass transfer takes place between the phases is solved numerically for a variety
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Reservoir Engineering - General - Linear Aquifer BehaviorBy R. H. Barham, G. W. Nabor
Linear aquifers, either limited or essentially infinite, may be encountered in reservoir engineering practice. In areas where faulting fixes reservoir boundaries, the fault block reservoir may have an
Jan 1, 1965
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Reservoir Engineering - General - Locating a Burning Front by Pressure Transient MeasurementsBy H. Kazemi
A pressure fall-off test on the injection well of a forward combustion project may permit us to calculate the distance to the burning front. In the mathematical description and analysis of test data,
Jan 1, 1967
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Reservoir Engineering - General - Mathematical Basis of Two-Phase, Incompressible, Vertical Flow Through Porous Media and Its Implications in the Study of Gravity-Drainage-Type Petroleum ReservoirsBy W. N. Hiatt
The mathematical theory of the flow of two-phase, incompressible fluid through porous media is clarified, and the development of a general fluid displacement equation for two-phase, incompressible ver
Jan 1, 1969
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Reservoir Engineering - General - Maximum Reservoir Worth – Proper Well SpacingBy G. T. Davis, C. C. Mattax, M. O. Denekas
The effects of crude oil cornponents on the wellabil-ities of sandstone and limestone were investigated. Fractions containing cornponents differing in molecular weight and molecular structure were obt
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Reservoir Engineering - General - Methods for Predicting Gas Well PerformanceBy G. E. Perry, J. F. Bruskotter, D. G. Russell, J. H. Goodrich
The depletion performance of gas wells has been investigated by mathematical simulation techniques. The gas well model which was studied consisted of a single well located in the center of a bounded,
Jan 1, 1967
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Reservoir Engineering - General - Mile-Six Pool – An Evaluation of Recovery EfficiencyBy E. L. Anders
The Mile Six pool is located on the La Brea-Parinas Cullcession of International Petroleum Co., Ltd., in northwestern Peru on the west coast of South America. The reservoir pressure in this pool has b
Jan 1, 1953
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Reservoir Engineering - General - Numerical Calculation of Immiscible Displacement by a Moving Reference Point MethodBy H. H. Rachford
Numerical solutions of immiscible flow problems in which dispersive effects of capillarity are dominated by convection require excessively fine grid spacing with attendant high computing costs. The us
Jan 1, 1967
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Reservoir Engineering - General - Numerical Methods of Higher-Order Accuracy for Diffusion-Convection EquationsBy H. S. Price, J. C. Cavendish, R. S. Varga
A numerical formulation of bigh-order accuracy, based on variational methods, is proposed for the solution of multidimensional diffusion-convection-type equations. Accurate solutions are obtained with
Jan 1, 1969
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Reservoir Engineering - General - Numerical Solutions of the Equations for One-Dimensional Multi-phase Flow in Porous MediaBy R. W. Snyder, W. H. Guilinger, B. S. Gottfried
Two numerical methods are presented JOT solving the equations Jor one-dimensional, multiphase /low in porous media. The case oF variable physical properties is included in the Formulation, although gr
Jan 1, 1967
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Reservoir Engineering - General - One-Dimensional, Incompressible, Noncapillary, Two-Phase Fluid...By E. H. Lee, F. J. Fayers
Problems in reservoir analysis can usually he cupressed in terms of a system of nonlinear partial difjerential equations. A rnethod for .setting physically reasonable boundary conditions for these sys
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Reservoir Engineering - General - Optimization of Multicycle Steam StimulationBy K. C. Hong, R. B. Jensen
The problem of determining the optimum set of steam volumes and cycle lengths for a single well undergoing multicycle steam stimulation in order to maximize the cumulative discounted net income has be
Jan 1, 1970
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Reservoir Engineering - General - Partial Integration of Equations of Multiphase FlowBy J. C. Martin
Equations for three-phase, three-dimensional, compressible flow (including capillarity) are reduced to two-dimensional relations by a partial integration. This reduction allows three-dimensional flow
Jan 1, 1969