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Production Engineering and Research - Experimental Determinations of Water Vapor Content of a Natural Gas up to 2000 Pounds Pressure (T. P. 1792, Petr. Tech., Jan. 1945)By R. L. Huntington, Frank P. Vance, George F. Russell, Robert Thompson
With the advent of higher pressures in the operation of natural-gas transmission lines, the removal of water vapor from the gas has become increasingly important in order to prevent condensation or fo
Jan 1, 1945
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Production Engineering and Research - Fingering and Coning of Water and Gas in Homogeneous Oil Sand (T.P. 1723, Petr. Tech., March 1944) (With discussion)By M. G. Arthur
This paper is a theoretical analysis of fingering of water and coning of water and gas in homogeneous sand. Investigation of this idealized case illustrates the relative magnitude of the factors invol
Jan 1, 1944
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Production Engineering and Research - Fingering and Coning of Water and Gas in Homogeneous Oil Sand (T.P. 1723, Petr. Tech., March 1944) (With discussion)By M. G. Arthur
This paper is a theoretical analysis of fingering of water and coning of water and gas in homogeneous sand. Investigation of this idealized case illustrates the relative magnitude of the factors invol
Jan 1, 1944
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Production Engineering and Research - Flow into Slotted Liners and an Application of the Theory to Core Analysis (T. P. 1724, Petr. Tech., March 1944)By C. R. Dodson, W. T. Cardwell
This paper presents the results of a theoretical and experimental study of the effect of preperforated liners on well productivity. The analysis concerns the rectangular type of slot, either machin
Jan 1, 1945
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Production Engineering and Research - Fractional Analysis of Well Effluents to Trace Migration of High-pressure Reservoir Gas (T. P. 1873, Petr. Tech., July 1945).By E. P. Valby
A method is presented in which the hydrocarbon weight fractional analyses of the well effluents from a true gas-tip-portion well and a true dark-oil-ring well furnish the basic data for determining th
Jan 1, 1945
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Production Engineering and Research - Gravity Drainage in Oil Fields (T.P. 161 I, Petr. Tech., Sept. 1943)By James O. Lewis
Gravity drainage is the self-propulsion of oil downward in the reservoir rock. Under favorable natural and operational conditions, it has been found to effect recoveries comparable to water displaceme
Jan 1, 1944
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Production Engineering and Research - Gravity Drainage in Oil Fields (T.P. 161 I, Petr. Tech., Sept. 1943)By James O. Lewis
Gravity drainage is the self-propulsion of oil downward in the reservoir rock. Under favorable natural and operational conditions, it has been found to effect recoveries comparable to water displaceme
Jan 1, 1944
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Production Engineering and Research - Measurement of Capillary Pressures in Small Core Samples (T .P. 1817, Petr. Tech., March 1945)By G. L. Hassler, E. Bruner
An apparatus and method is described whereby the relation between saturation and capillary pressure under decreasing saturation can be quickly determined for small core samples. The initially saturate
Jan 1, 1945
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Production Engineering and Research - Prediction of Conditions for Hydrate Formation in Natural Gasses (T. P. 1748, Petr. Tech., July 1944)By Donald L. Katz
Charts for predicting the pressure to which natural gases may be expanded without hydrate formation have been prepared for gases of even gravity. Pressure-temperature curves for hydrate formati
Jan 1, 1945
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Production Engineering and Research - Prediction of Reservoir Behavior from Laboratory Data (T.P. 1664, Petr. Tech., Jan. 1944)By E. C. Babson
In order to explore the possibility of predicting reservoir performance from laboratory data, behavior of a hypothetical low-permeability reservoir has been estimated by applying data and methods curr
Jan 1, 1944
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Production Engineering and Research - Prediction of Reservoir Behavior from Laboratory Data (T.P. 1664, Petr. Tech., Jan. 1944)By E. C. Babson
In order to explore the possibility of predicting reservoir performance from laboratory data, behavior of a hypothetical low-permeability reservoir has been estimated by applying data and methods curr
Jan 1, 1944
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Production Engineering and Research - Role of Connate Water in Secondary Recovery of Oil (T.P. 1608, Petr. Tech., July 1943).By Robert B. Bossler, Parke A. Dickey
The presence of connate water in oil sands is of far greater practical significance in secondary oil-recovery operations than it is in primary operations. The percentage saturations of oil, water, and
Jan 1, 1944
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Production Engineering and Research - Role of Connate Water in Secondary Recovery of Oil (T.P. 1608, Petr. Tech., July 1943).By Parke A. Dickey, Robert B. Bossler
The presence of connate water in oil sands is of far greater practical significance in secondary oil-recovery operations than it is in primary operations. The percentage saturations of oil, water, and
Jan 1, 1944
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Production Engineering and Research - Selective Acidizing and Permeability Determination by an Electrical Method (T. P. 1604, Petr. Tech., July 1943) (With discussion)By P. E. Fitzgerald, Dana G. Hefley
An apparatus has been developed which permits selective acidizing of producing formations and determination of the relative permeability of a formation by fluid injection. This apparatus, known as the
Jan 1, 1944
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Production Engineering and Research - Selective Acidizing and Permeability Determination by an Electrical Method (T. P. 1604, Petr. Tech., July 1943) (With discussion)By P. E. Fitzgerald, Dana G. Hefley
An apparatus has been developed which permits selective acidizing of producing formations and determination of the relative permeability of a formation by fluid injection. This apparatus, known as the
Jan 1, 1944
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Production Engineering and Research - Selective Adsorption of Hydrocarbon and Water Vapor on Alumina at Atmospheric Pressure (T.P. 1628, Petr. Tech., Nov. 1943)By L. S. Reid, R. L. Huntington, Chen Chun Ku
The simultaneous adsorption of water and hydrocarbon vapor from natural gas by three grades of alumina has been studied at atmospheric pressure and temperature. Results of this investigation reveal th
Jan 1, 1944
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Production Engineering and Research - Selective Adsorption of Hydrocarbon and Water Vapor on Alumina at Atmospheric Pressure (T.P. 1628, Petr. Tech., Nov. 1943)By R. L. Huntington, L. S. Reid, Chen Chun Ku
The simultaneous adsorption of water and hydrocarbon vapor from natural gas by three grades of alumina has been studied at atmospheric pressure and temperature. Results of this investigation reveal th
Jan 1, 1944
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Production Engineering and Research - The Role of Capillarity in Oil Production (T.P. 1623, Petr. Tech., Sept. 1943)By E. Brunner, G. L. Hassler, T. J. Deahl
The capillary effects in reservoir rock are discussed in terms of the pressures they cause in sandstones and dolomites. Data for the two-phase case (oil-gas or water-gas) and for the three-phase case
Jan 1, 1944
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Production Engineering and Research - The Role of Capillarity in Oil Production (T.P. 1623, Petr. Tech., Sept. 1943)By G. L. Hassler, E. Brunner, T. J. Deahl
The capillary effects in reservoir rock are discussed in terms of the pressures they cause in sandstones and dolomites. Data for the two-phase case (oil-gas or water-gas) and for the three-phase case
Jan 1, 1944
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Production Engineering and Research - The Volumetric and Phase Behavior of Oil and Gas from Paloma Field (T. P. 1861, Petr. Tech., May 1945)By W. N. Lacey, R. H. Olds, B. H. Sage
Samules of liquid and gas were obtained from the primary separator of a well in the Paloma field. The volumetric properties of the samples and of six systematically chosen mixtures of the samples were
Jan 1, 1945