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Reservoir Engineering–General - Transient Interfaces During Immiscible Liquid-Liquid Displacement in Porous MediaBy H. D. Outmans
In steady vertical flow, the interface of an immiscible liquid-liquid displacement is horizontal for any flow rate below the critical. In nonvertical flow, however, the shape of the interface in the s
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Reservoir Engineering–General - Transient Response of Nonhomogeneous AquifersBy T. D. Mueller
Many investigators have used the response of the "dimensionless aquifer" to a unit pressure drop or a unit fluid-withdrawal volume to calculate the performance of an aquifer in supplying water influx
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Reservoir Engineering–General - Underground Combustion in the Shannon Pool, WyomingBy D. R. Parrish, K. W. Beaver, H. W. Wood, R. W. Rausch
A pilot test of forward combustion in the Shannon pool, Salt Creek field, Wyo., is described. The Shannon sand, 950-ft deep, contains a heavy (25" API), viscous (76 cp) oil. Natural reservoir energ
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Reservoir Engineering–General - Wellbore Heat TransmissionBy H. J. Ramey
As fluids move through a wellbore, there is transfer of heat between fluids and the earth due to the diflerence between fluid and geothermal temperatures. This type of heat transmission is involved in
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Reservoir Engineering–Laboratory Research - A Laboratory and Field Study of Wettability Adjustment in Water FloodingBy O. R. Wagner, R. O. Leach, H. W. Wood, C. F. Harpke
PAN AMERICAN PETROLEUM CORP.TULSA, OKLA. CASPER, WYO A field test has been made in which additional oil recovery was obtained from a previously-waterflooded "oil-wet" sandstone reservoir. This reco
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Reservoir Engineering–Laboratory Research - A Verification of Waterflood Scaling in Heterogenous Communicating Flow ModelsBy C. W. Carpenter, P. T. Bail, J. E. Bobek
This paper presents the results of model studies made to demonstrate the validity of applying the "basic" waterflooding scaling relationships of Rapoport1 to water-wet reservoirs composed of communica
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Reservoir Engineering–Laboratory Research - Cellar OilBy M. H. Gaskell, D. C. Lindley
Small, steeply inclined reservoirs without natural water drives often are found associated with salt domes or other highly faulted structures. Frequently, only one well may be economically justified i
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Reservoir Engineering–Laboratory Research - Effect of Viscosity on Relative PermeabilityBy F. E. Crane, J. Downie
The general application of Darcy's law to natural rocks has already been challenged in the literature.1 The evidence shows that the permeability as calculated from the Darcy equation can be a fun
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Reservoir Engineering–Laboratory Research - Experiments on Mixing During Miscible Displacement in Porous MediaBy W. E. Brigham, P. W. Reed, J. N. Dew
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Reservoir Engineering–Laboratory Research - Factor Affecting Fuel Availability and Composition During In Situ CombustionBy J. D. Alexander, W. L. Martin, J. N. Dew
This paper presents data obtained using a flood-pot technique to determine the fuel available and the corresponding theoretical air requirements for in situ combustion of crude oils. Since the techniq
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Reservoir Engineering–Laboratory Research - Gravity Segregation of Miscible Fluids in Linear ModelsBy J. Downie, H. A. Kendall, G. H. F. Gardner
Some cases of the motion of two miscible fluids in uniform linear models are discussed. There is no bulk flow through the models, and the convection currents are caused solely by density gradients.
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Reservoir Engineering–Laboratory Research - Imbibition Relative Permeability in Unconsolidated Porous MediaBy J. H. Henderson, R. J. Wygal, J. Naar
Experimental work is reported which shows that consolidated rocks and unconsolidated porous media exhibit different imbibition flow behavior. At a given saturation the imbibition nonwetting permeabili
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Reservoir Engineering–Laboratory Research - Laboratory Studies of Oil Recovery by InjectionBy V. V. Valleroy, A. J. Cornelius, B. T. Willman, G. W. Runberg, L. W. Powers
This paper reports the results of an investigation into the use of steam as a recovery agent. High oil recoveries by steam, as much as 100 per cent greater than by water flood, were demonstrated in
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Reservoir Engineering–Laboratory Research - Mechanism of Alcohol Displacement of Oil from Porous MediaBy J. J. Taber, I. S. K. Kamath, R. L. Reed
Alcohol floods of consolidated sandstone cores have shown the process to be strongly dependent on the phase behavior of the particular alcobol-oil-water system used. This means that in many cases the
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Reservoir Engineering–Laboratory Research - Model Studies of Oil Displacement from Thin Sands by Vertical Water Influx from Adjacent ShalesBy P. T. Bail, J. E. Bobek
In reservoirs containing soft shales interbedded with oil-producing sands, it is possible to have water movement from the shales into the sands during reservoir depletion. This paper presents the r
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Reservoir Engineering–Laboratory Research - The Effect of Fluid Properties and Stage of Depletion on Waterflood Oil RecoveryBy M. D. Arnold, P. B. Crawford, P. C. Hall
An experimental study has been made to determine the optimum flooding pressures for four different oils. The oil formation volume factors ranged from 1.08 to 2.13, and solution gas-oil ratios ranged f
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Reservoir Engineering–Laboratory Research - The Use of a Viscous Slug To Improve Waterflood Efficiency In a Reservoir Partially Invaded by Bottom WaterBy A. L. Barnes
A number of reservoirs have been partially invaded by bottom water. Water flooding such reservoirs can be especially inefficient if the oil has a high viscosity because injected water will under-run t
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Reservoir Engineering–Laboratory Research - Water Flooding – Down-Structure Displacement In the Presence of a Gas CapBy J. F. Wilson
Steady-state flow theory, previously applied to displacements with two mobile phases, is extended to cover down-structure flow involving three mobile phases: oil, gas and water. When used with normal
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Reservoir Gas and Oil in the Vicinity of Cleveland, OhioBy Frank Van Horn
IT is customary to ascribe two general modes of occurrence to natural gas, namely shale. gas which, as the name indicates, is found in' shale, and reservoir gas, which occurs ill sandstone, congl
Jan 1, 1917
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Reservoir Gas and Oil in the Vicinity of Cleveland, Ohio. DiscussionBy F. R. Van Horn
WALLACE MCKEEHAN, Douglas, Ariz. (communication to the Secretary*).-In going over this report, which I have done very carefully, I find that the summary as composed deals with the various problems alm
Jan 4, 1917