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Reservoir Engineering – General - Special Applications of Drill-Stem Test Pressure DataBy John P. Dolan, Charles A. Einarsen, GiIman A. Hill
his paper discusses how the following formation characteristics can be determined mathematically from drill-stem test pressure charts: true formation pressures, effective permeability of the entire se
Jan 1, 1958
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Reservoir Engineering – General - Steady-State and Unsteady-State Flow of Non-Newtonian Fluids Through Porous MediaBy J. R. Jargon, H. K. van Poollen
Non-Newtonian fluids may be injected into a reservoir during secondary recovery operations. The non-Newtonian fluid used in this work is a power-law type of fluid that is, the viscosity of the fluid d
Jan 1, 1970
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Reservoir Engineering – General - The Application of the Buckley-Leverett Frontal Advance Theory to Petroleum RecoveryBy Stephen G. Dardaganian
Pore volume compresibilitieu measured in the laborutory on core .samples are reported for typical reservoir .sarrrl.rtorres at reservoir pressure. These cornpressibilities ore different for each reser
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Reservoir Engineering – General - The Compositional Reservoir Simulator: Case I – The Linear ModelBy J. Douglas, W. T. Ford, G. E. Henderson, I. F. Roebuck
An implicit numerical method is presented for simulating the differential and algebraic relations governing one-dimensional three-phase flow in porous media. The method is based upon compositional rep
Jan 1, 1970
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Reservoir Engineering – General - The Fry In Situ Combustion Test-Field OperationsBy R. G. Jones, W. L. Kinney, R. E. Schilson, R. S. Wilson, G. A. Clark, H. Suralo
This paper describes the field opeturluns at the Fry in situ combustion project in Crawford County, 111. Field operations may be divided into three phases—-preliminary engineering studies of 1960 and
Jan 1, 1966
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Reservoir Engineering – General - The Fry In Situ Combustion Test-PerformanceBy R. G. Jones, W. L. Kinney, R. E. Schilson, R. S. Wilson, G. A. Clark, H. Suralo
This paper discusses the results of the Fry conventional or cocurrent in situ combustion test, which was conduct-ed in a 3.3-acre inverted five-spot. The depth of the formation was between 880 and 936
Jan 1, 1966
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Reservoir Engineering – General - The Fry In Situ Combustion Test-Reservoir CharacteristicsBy C. H. Hewitt, J. T. Morgan
The Fry cocurrent in situ combustion project was carried out in a 3.3-acre portion of a lenticular body of Robinson sandstone of Lower Pennsylvanian age. This particular sand body is about 12,000 ft l
Jan 1, 1966
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Reservoir Engineering – General - The Interpretation of Interference Tests in Naturally Fractured Reservoirs with Uniform Fracture DistributionBy H. Kazemi, G. W. Thomas, M. S. Seth
The double-porosity model of Warren and Root7 for examining pressure drawdown and buildup phenomena in naturally fractured reservoirs has been extended to intetpret interference test results. Both ana
Jan 1, 1970
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Reservoir Engineering – General - The Predicted Performance of a Gas-Condensate System, Washington Field, LouisianaBy James E. Berryman
A method is presented for calculating the pressure depletion performance of a gas-condensate reservoir from the original reservoir fluid composition using the laboratory determined pressure-production
Jan 1, 1958
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Reservoir Engineering – General - The Simplification of the Material Balance Formulas by the Laplace TransformationBy William Hurst
Muskat's depletion performance equation is here derived considering the expansion behavior of the reservoir hydrocarbon system and a simple fractional-flow equation. This nietkod of derivation le
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Reservoir Engineering – General - Three-Phase Fluid Flow Including Gravitational, Viscous and Capillary ForcesBy M. Sheffield
This paper presents a technique lor predicting the flow of oil, gas and water through a petroleum reservoir. Gravitational, viscous arid capillary lorces are considered, and all fluids are considered
Jan 1, 1970
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Reservoir Engineering – General - Two-Phase Flow of Volatile HydrocarbonsBy V. J. Kniazeff, S. A. Naville
The problem of unsteady-state condensate-gas flow through porous media leads to a set of second-order non-linear partial differential equations. Such a set of equations is numerically solved in the ca
Jan 1, 1966
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Reservoir Engineering – General - Variations in Permeability and Porosity of Synthetic Oil Reservoir Rock-Methods of ControlBy L. J. Health
Synthetic rock with predictable porosity and permeability has been Prepared from mixtures of sand, cement and water. Three series of mixes were investigated primarily for the relation between porosity
Jan 1, 1966
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Reservoir Engineering – General - Wettability as Related to Capillary Action in Porous MediaBy J. C. Melrose
The contact angle is one of the boundary conditions for the differential equation specilying the configuration of fluid-fluid interfaces. Hence, applying knowledge concerning the wettability of a soli
Jan 1, 1966
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Reservoir Engineering – Laboratory Research - A Laboratory Investigation of the Effect of Rate on Recovery of Oil by Water FloodingBy T. G. Richardson, F. M. Perkins
In the recent paper of Richardson and Perkins entitled "A Laboratory Investigation of the Effect of Rate on Recovery of Oil by Water Flooding,"' the authors found very little appzrent effect on o
Jan 1, 1958
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Reservoir Engineering – Laboratory Research - A Laboratory Investigation of the Water-Driven Carb...By G. M. Webster, G. E. Dawsongrove
The use of percussion-type side-wall cores as an aid in detection and evaluation of hydrocarbon shows and in examination of rock properties has become increasingly popular in recent years. Sidewall co
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Reservoir Engineering – Laboratory Research - A Laboratory Study of Gravity Drainage in Fractured Systems Under Miscible ConditionsBy N. Mungan, J. L. Thompson
Laboratory displacement tests were performed to study oil recovery elficiency by gravity drainage in fractured systems under miscible conditions. The porous media used were cylindrical Berea and Blue
Jan 1, 1970
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Reservoir Engineering – Laboratory Research - A Laboratory Study of Laminar and Turbulent Flow in Heterogeneous Porosity LimestonesBy Charles R. Stewart, William W. Owens
Reservoir performance predictions based on laboratory core test data assume that fluid flow is laminar for the laboratory test. A study has been made to determine the validity of this assumption for l
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Reservoir Engineering – Laboratory Research - A Laboratory Study of Oil Recovery by Solution Gas DriveBy L. L. Handy
The most common method of identifying hydrocarbon-bearing strata in a well that penetrates many different formations involves measurement and interpretation of the electrical properties of the formati
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Reservoir Engineering – Laboratory Research - A Mathematical and Experimental Examination of Transverse Dispersion CoefficientsBy R. C. Hassinger, D. V. von Rosenberg
Transverse dispersion has received considerably less treatment in the literature than has longitudinal dispersion. Different methods for determining transverse dispersion coefficients have been used i
Jan 1, 1969