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Reservoir Engineering-Laboratory Research - The Pembina Miscible Displacement Pilot and Analysis of Its PerformanceBy H. Groeneveld, C. A. Connally, P. J. Hoenmans, J. J. Justen, W. L. Mason
A miscible displacement pilot using a slug of LPG driven by separator gas was conducted in the Cardiurn reservoir of the Pembina field. The injection pattern was a 10-acre, inverted, isolated five-spo
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Reservoir Engineering-Laboratory Research - Thermal Aleration of SandstonesBy M. M. Mebta, G. W. Dean, W. H. Somerton
With the advent of underground heating operations, interest has developed in the alteration of rock properties by high-temperature treatment. In the present work a number of sandstones were heated to
Jan 1, 1966
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Reservoir Engineering-Laboratory Research - Using Phase Surfaces to Describe Condesing-Gas-Drive ExperimentsBy F. I. Stalkup
Vapor-liquid phase equilibrium experiments have been conducted in a static equilibrium cell on mixtures of a light, 45 API stock- tank gravity reservoir fluid and a rich hydrocarbon gas containing app
Jan 1, 1966
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Reservoir Engineering-Laboratory Research - Volumes of Liquid Hydrocarbons at High Temperatures and PressuresBy G. H. Alani, H. T. Kennedy
One of the major difficulties in predicting the performance of oil reservoirs from their early pressure history lies in the uncertainty of estimating the volume of the liquid hydrocarbons contained in
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Reservoir Engineering-Laboratory Research - Water Coning Control in Oil Wells by Fluid InjectionBy S. J. Prison, C. R. Smith
The effect of fluid injection to control water coning in oil and gas wells was investigated. Analytical and model techniques were employed. The factors investigated were the position and length of the
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Reservoir Engineering-Laboratory Research - Waterflood Performance in a Stratified, Five-Spot Reservoir-A Scaled-Model StudyBy D. C. Lindley, D. H. Gaucher
The displacement of oil by water in a waterflood project is accomplished by the action of transient viscous, gravitational and capillary forces which drive fluid through interconnecting pore spaces to
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Reservoir Engineering–General - A Computer Method to Calculate Two-Phase Flow in Any Irregularly Bounded Porous MediumBy R. V. Higgins, A. J. Leighton
A fast method is needed for calculating thoroughly the performance of two-phase flobr~ in reservoir rock with complex geotrietry. The authors present such a method and .slzow its accuracy by rompariso
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Reservoir Engineering–General - A Mathematical Model Water Movement about Bottom-Water-Drive ReservoirsBy K. H. Coats
This paper presents the development and solution of a mathematical model for aquifer water movement about bottom-water-drive reservoirs. Pressure gradients in the vertical direction due to router flow
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Reservoir Engineering–General - A Numerical Solution to the Unsteady-State Partial-Water-Drive Reservoir Performance ProblemBy J. D. Rice, P. L. Wearden, W. L. Hensou
Solutions to the unsteady-state partial water-drive reservoir performance problem can be obtained through the use of analogue computers or high-speed electronic digital computers. The solutions that h
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Reservoir Engineering–General - A Potentiometric Study of the Effects of Mobility Ratio on Reservoir Flow PatternBy J. P. Heller, H. B. Bradley, A. S. Odeh
A potentiometric model technique is presented for determining the areal sweep efficiency of a five-spot well pattern, at and beyond breakthrough. A sharp interface between displaced and displacing flu
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Reservoir Engineering–General - A Scale-Model Study of Bottom-Water DrivesBy D. H. Henley, F. F. Craig, W. W. Owens
The oil recovery performance of systems producing entirely by bottom-water encroachment has been experimentally determined in a series of scaled laboratory-model tests. The effects of well spacing, fl
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Reservoir Engineering–General - A Simple Method for Correcting Spot Pressure ReadingsBy F. Brons, W. C. Miller
Pressure information for use in material-balance calculations is obtained, where possible, from pressure build-up surveys in shut-in wells. Using proper extrapolation methods, static pressures are obt
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Reservoir Engineering–General - A Statistical Reservoir-Zonation TechniqueBy J. D. Testerman
A statistical technique to identify and describe naturally occurring zones in a reservoir and to correlate these zones from well to well is described. The technique is particularly useful in describin
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Reservoir Engineering–General - A Study of Flow in Stratified Reservoirs by Use of the Thermal AnalogyBy N. T. Cotman, C. H. Pickering, P. B. Crawford
A beat-conduction model has been developed to study the flow of fluids in a stratified oil reservoir which is being subjected to unsteady-state depletion. To simulate stratification, plates of differe
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Reservoir Engineering–General - A Study of Gravity Counterflow SegregationBy C. D. Stahl, E. E. Templeton, R. F. Nielsen
It has been customary, in predicting saturation changes, to use the Leverett fractional flow formula", obtained by eliminating the unknown pressure gradient from the generalized Darcy equations for th
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Reservoir Engineering–General - A Theoretical Study of Pressure Distribution and Fluid Flux in Bounded Stratified Porous Systems with CrossflowBy M. R. Tek, M. L. Katz
The flow of fluids in stratified porous systems, in which adjacent layers of the system are in communication over part or all of their common interface, in many instances involves crossflow between la
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Reservoir Engineering–General - An Analysis for Predicting the Performance of Cone-Shaped Reservoirs Receiving Gas or Water InjectionBy E. F. Johnson, F. H. Brinkman, H. J. Welge, A. L. Hicks
A method is presented for predicting the character of gas or water displacement in a radial system, which can be either horizontal or inclined. The latter case would comprise cone-shaped or dome-shape
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Reservoir Engineering–General - An Approximate Method for Computing Nonsteady-State Flow of Gases in Porous MediaBy L. G. Jones
An approximate method of calculation is developed in this paper which allows duplication of radial unsteady-state gas flow computer results where Darcy's law applies, such as those reported by Ar
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Reservoir Engineering–General - An Approximate Method for Determining Areal Sweep Efficiency and Flow Capacity in Formations with Anisotropic PermeabilityBy G. W. Nabor, M. Mortada
The effects of anisotropic or directional permeability on the areal sweep efficiency and the flow capacity are examined. The paper points out the importance of taking directional permeability into con
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Reservoir Engineering–General - An Approximate Method for Transient Radial FlowBy G. Rowan, M. W. Clegg
The basic equations for the flow of gases, compressible liquids and incompressible liquids are derived and the full implications of linearising then discussed. Approximate solutions of these equations