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Reservoir Engineering–General - An Imbibition Model--Its Application to Flow Behavior and the Prediction of Oil RecoveryBy J. H. Henderson, J. Naar
The displacement of a wetting fluid from a porous medium by a non-wetting fluid (drainage) is now reasonably well understood. A complete explanation has yet to be found for the analogous case of a wet
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Reservoir Engineering–General - Analysis of Gas-Cap or Dissolved-Gas Drive ReservoirsBy H. L. Stone, A. O. Garder
A numerical method of solving the partial differential equations which describe the one-dimensional displacement of oil by gas has been presented. Possible extension of the method to treat multidimens
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Reservoir Engineering–General - Analysis of Gravity DrainageBy H. N. Hall
Various factors must be considered in an engineering evaluation of gravity-drainage reservoirs. Among these are: (1) the effect of producing rate on total oil recovery; (2) the effect upon well produc
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Reservoir Engineering–General - Calculated Temperature Behavior of Hot-Water Injection WellsBy D. D. Smith, D. P. Squier, E. L. Dougherty
A system of differential equations describing the temperature behavior of fluid injected at constant surface temperature in a well is derived and .solved analytically. A formula for the fluid temperat
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Reservoir Engineering–General - Computer Prediction of Water Drive of Oil and Gas Mixtures Through Irregularly Bounded Porous Media–Three-Phase FlowBy R. V. Higgins, A. J. Leighton
Interest by petroleum engineers in the flow of three phases—oil, gas and water—in irregularly bounded porous media lies mostly in the performance calculation of water floods of reservoirs that have be
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Reservoir Engineering–General - Correlation of Surface and Interfacial Tension of Light Hydrocarbons in the Critical RegionBy E. W. Hough, G. L. Stegemeier
Empirical equations for surface tension of propane and normal butane as functions of reduced temperature are obtained from experimental data. Another correlation relating surface tension to enthalpy o
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Reservoir Engineering–General - Effect of Off-Pattern Wells on the Performance of A Five-Spot Water FloodBy P. Hazebroek, M. Prats, E. E. Allen
Well locations in water floods frequently do not coincide with the ideal well locations associated with the flood pattern which is used. A question of importance is. "How much oil is lost because of t
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Reservoir Engineering–General - Effect of Vertical Fractures on Reservoir Behavior–Compressible-Fluid CaseBy W. R. Strickler, P. Hazebroek, M. Prats
The pressure and production behavior of a homogeneous cylindrical reservoir producing a single fluid through a centrally located vertical fracture of limited lateral extent was determined by using mat
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Reservoir Engineering–General - Effect of Vertical Fractures on Reservoir Behavior–Incompressible-Fluid CaseBy M. Prats
The effect of a sand-filled vertical fracture of limited radial extent and finite capacity (fracture capacity is the product of the permeability and width of the fracture) on the flow behavior of a cy
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Reservoir Engineering–General - Estimation of Reservoir Anisotropy From Production DataBy M. D. Arnold, H. J. Gonzalez, P. B. Crawford
A method is presented for estimating the effective directional permeability ratio and the direction of maximum and minimum permeabilities in anisotropic oil reservoirs. The method is based on the prin
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Reservoir Engineering–General - Imbibition Oil Recovery from Fractured, Water-Drive ReservoirBy J. R. Kyte, C. C. Mattax
Previous workers have developed differential equations to describe oil displacement by water imbibition, but have not explicitly defined the relationship between recovery behavior for a single reservo
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Reservoir Engineering–General - Injection Rates–The Effect of Mobility Ratio, Area Swept, and PatternBy J. C. Deppe
A method is presented for calculating approximate injection rates in secondary recovery operations. The method can be applied to cases of unequal fluid mobilities, irregular well patterns and boundary
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Reservoir Engineering–General - Linear Water Flood with Gravity and Capillary EffectsBy F. J. Fayers, S. A. Hovanessian
The one-dimensional displacement equation for a homogeneous porous medium, including the effects of gravity and capillaty forces, has been solved by a numerical method. A finite-difference scheme is d
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Reservoir Engineering–General - Material Balance Calculations with Water Influx in the Presence of Uncertainty in PressuresBy C. R. McEwen
This paper presents a technique for calculating the original amount of hydrocarbon in place in a petroleum reservoir, and for determining the constants characterizing the aquifer performance, based on
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Reservoir Engineering–General - Microbial Flora in a Number of Oilfield Water-Injection SystemsBy V. Carlson, J. A. Rowe, E. O. Bennett
This report concerns the microbial flora found throughout the surface facilities of six water-injection systems in Texas and Oklahoma. Each system is described in detail and water quality data are pre
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Reservoir Engineering–General - Nonequilibrium Gas Displacement CalculationsBy H. D. Attra
The effects of phase behavior on reservoir economics is a function of both fluid composition and flow properties of the reservoir rock. In some operations such as gas injection into volatile crude-oil
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Reservoir Engineering–General - Performance of Layered Reservoirs with Crossflow-Single-Compressible-Fluid CaseBy M. Prats, D. G. Russell
The performance of a well in a bounded, layered reservoir with interlayer crossflow has been investigated mathematically. The system studied comprises a centrally located well in a bounded cylindrical
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Reservoir Engineering–General - Pressure Transient Performance of a Multilayered Reservoir with CrossflowBy V. J. Berry, J. D. Pendergrass
Well pressure transient tests provide a means for directly obtaining information about formation pressure and reservoir flow capacity. Such tests have also been proposed for determining presence and l
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Reservoir Engineering–General - Simultaneous Flow of Gas and Liquid as Encountered in Well TubingBy N. C. J. Ros
The paper deals with pressure gradients occurring in flowing and gas-lift wells, a knowledge of which can be applied to the determination of optimum flow-string dimensions and to the design of gas-lif
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Reservoir Engineering–General - The Development of Stability Theory for Miscible Liquid-Liquid DisplacementBy R. L. Perrine
A stability theory is developed for miscible liquid-liquid displacement within a porous medium. In the usual case considered, a high-density high-viscosity "oil" is displaced downdip by a low-density