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Reservoir Engineering - General - A Method of Predicting Oil Recovery in a Five-Spot SteamfloodBy B. H. Caudle, L. G. Davies, I. H. Silberberg
This paper presents a method of predicting the recovery and performance of a five-spot steam injection project, in which a realistic approach to pattern sweepout efficiencies is made. Published method
Jan 1, 1969
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Reservoir Engineering - General - A Model for the Mechanism of Oil Recovery from the Porous Matrix Due to Water Invasion in Fractured ReservoirsBy J. S. Aronofsky
The first step in a quantitative analysis ot the mechanism of oil displacement by water in a fractured reservoir is usually conceded to be the solution of the differential equation describing the satu
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Reservoir Engineering - General - A Numerical Method for Computing the Dynamical Behavior of Fluid-Fluid Interfaces in Permeable MediaBy E. L. Dougherty, J. W. Sheldon
A numerical method for computing the dynamical behavior of fluid- fluid interfaces is described. Results of studies made to assess the accuracy and economy of the method on a computer are reported. It
Jan 1, 1965
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Reservoir Engineering - General - A Numerical Solution of the Linear Displacement Equation with C...By R. H. Jacoby, V. J. Berry, R. C. Koeller
The experimental phase behavior of several field gas-condensate systems, one field volatile oil system, and a series of synthetic systems having gas-oil ratios from 2,000 to 20,000 scf/bbl stock tank
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Reservoir Engineering - General - A Numerical Study of Waterflood Performance in a Stratified System with CrossflowBy M. R. Tek, F. F. Craig, J. O. Wilkes, C. S. Goddin
The waterflood performance of a water-wet, stratified system with crossflow is computed by a finite difference procedure. The effects of five dimensionless parameters on tile oil displacement efficien
Jan 1, 1967
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Reservoir Engineering - General - A Simplified Method for Determining Specific SurfaceBy C. Perez-Rosales
A simplified method for evaluating specific surface of porous media is described. The theory takes as its point of departure a previous statistical method. Due to its simplicity, it is considered that
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Reservoir Engineering - General - A Simplified Model of Conduction Heating in Systems of Limited PermeabilityBy G. W. Thomas
A simplified mathematical model of underground conduction heating in a system of limited permeability is presented. The model applies to underground retorting of oil shale, or to reservoirs containing
Jan 1, 1965
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Reservoir Engineering - General - A Stochastic Model for Predicting Variations in Reservoir Rock PropertiesBy J. C. Griffiths, D. W. Bennion
A mathematical model, which does not assume a priori that stratification exists, but was designed to test for the stratification was developed. The model segmented the reservoir horizontally into area
Jan 1, 1967
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Reservoir Engineering - General - A Study of Anomalons Pressure Build-up BehaviorBy C. S. Matthews, G. L. Stegemeier
In one field in South Texas, approximately 72 per cent of the pressure build-up results show a characteris-i.rtic "hump" (i.e., the pressure builds up and then falls off) which makes interpretation by
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Reservoir Engineering - General - A Viscosity Correlation for Gas-Saturated Crude OilsBy M. R. Tek, K. H. Coats, D. L. Katz
In natural gas storage operations, seasonal pressure fluctuations in the gas reservoir cause the water from the surrounding aquifer to flow into and out of the gas sand. The theory of unsteady-state l
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Reservoir Engineering - General - Aids to Forecasting the Performance of Water FloodsBy R. V. Higgins
This paper presents a computer method to obtain the shape factors and equal cell volumes of the channels for any well spacing pattern from a potentiometric model. By using this program the authors hav
Jan 1, 1965
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Reservoir Engineering - General - An Investigation of the Flow Regime for Hele-Shaw FlowBy R. A. Greenkorn, R. C. Smith
Hele-Shaw cells are used to model creeping flow through porous media (where Darcy's law is valid). The effects of inertia on flow about obstructions in a Hele-Shaw cell can be calculated by a per
Jan 1, 1970
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Reservoir Engineering - General - Analysis of Pressure Build-Up DataBy G. B. Thomas
Several methods of analyzing pressure build-up data in wells have been presented by various authors. This paper reviews the theory and method of D. R. Horner and presents example calculations performe
Jan 1, 1953
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Reservoir Engineering - General - Analysis of Pressure Fall-Off Curves Obtained in Water Injection Wells to Determine Injective Capacity and Formation DamageBy G. W. Lester, T. J. Nowak
The paper presents a practical method of utilizing pressure fall-off data obtained when a water injection well is shut in for determination of: (I) the static reservoir pressure, (2) the potential wat
Jan 1, 1956
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Reservoir Engineering - General - Analysis of Reservoir Performance Kg/Ko Curves and a Laboratory Kg/Ko Curve Measured on a Core SampleBy W. J. West, T. D. Mueller, J. E. Warren
Two methods are used to obtain the relatiorlship between ratio of gas to oil permeability and gas saturation. One method is to calculate a curve from field measurements of reservoir behavior: the othe
Jan 1, 1956
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Reservoir Engineering - General - Application of Laboratory PVT Data to Reservoir Engineering ProblemsBy C. R. Dodson, D. Goodwill, E. H. Mayer
The paper summarizes the historical background of the pressure-volume-temperature analyses of reservoir fluids, the errors involved in both the sampling and testing of reservoir fluids, the type of in
Jan 1, 1953
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Reservoir Engineering - General - Application of the Finite Element Method to Transient Flow in Porous MediaBy I. Javandel, P. A. Witherspoon
The finite element method was originally developed in the aircraft industry to handle problems of stress distribution in complex airframe configurations. This paper describes how the method can be ext
Jan 1, 1969
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Reservoir Engineering - General - Application of the Material Balance Equation to a Partial Water-Drive ReservoirBy E. H. Timmerman, A. F. van Everdingen, J. J. McMahon
The prevent paper contains a method which combines the material balance equation' with the water influx equation' to obtain reliable values for the active oil originally in place and a quant
Jan 1, 1953
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Reservoir Engineering - General - Applying the Frontal Advance Equation to Vertical Segregation ReservoirsBy W. J. Joslin
The frontal-advance equation can determine how the fluid withdrawal rate and subsurface operating pressure influence oil recovery from pressure-maintained reservoirs having characteristics favorable f
Jan 1, 1965
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Reservoir Engineering - General - Areal Sweep Efficiency of Pseudoplastic Fluids in a Five-Spot Hele-Shaw ModelBy E. L. Claridge, K. S. Lee
Areal sweep efficiency of oil displacement by enhanced-viscosity water exhibiting pseudoplastic behavior was measured in a Hele-Shaw model representing one-quarter of a five-spot pattern. The pseudopl
Jan 1, 1969