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Production Engineering and Engineering Research - Calculation of Pressure Drops in Flowing Wells (With Discussion)By R. J. Schilthuis, T. V. Moore
In a previous paper,' the results of some experimental work on the measurement of slippage in the flow of oil and gas mixtures through vertical pipes were presented. The data obtained were correl
Jan 1, 1933
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Production Engineering and Engineering Research - Gas Column Apparatus for Precise Measurement of Oil Well Pressure (Abstract; see also Oil Weekly, April 4, 1932)By Stanley Gill
The apparatus is composed of sections of small diameter, seamless steel tubing welded into a continuous flexible tube. At the bottom end a 1/4-in. pipe nipple with a 10 to 15-lb. weight is attached, t
Jan 1, 1933
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Production Engineering and Engineering Research - Some Studies on the Porosity and Permeability of Rocks (With Discussion)By F. G. Tickell, R. C. McCurdy, O. E. Mechem
The behavior of fluids in the voids of a rock is fundamental to the study of many of the problems of oil-field development and production. For it is by virtue of these openings between grains that oil
Jan 1, 1933
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Production Engineering and Engineering Research - Subsurface Pressures in Oil Wells and Their Field of Application (With Discussion)By D. J. Hawthorn
The widespread interest shown during the past year in the study of subsurface pressures warrants brief reference to its early development. Though it is impossible to set an exact date when constructiv
Jan 1, 1933
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Production Engineering and Engineering Research - The Killing of Milham Elliott No. 1 and Continental Elliott No. 12-8By R. Silent, N. A. Rousselot
The first producing wells completed in the Kettleman Hills arca were noteworthy for their high gas-oil ratios. As a result they became the object of criticism, and controversies arose based on their a
Jan 1, 1933
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Production Engineering and Engineering Research - The Mechanics of Porous Flow Applied to Water-flooding Problems (With Discussion)By M. Muskat, R. D. Wyckoff, H. G. Botset
The flow of liquids through porous media is known to follow Darcy's law which states that the velocity of flow is proportional to the pressure gradient. This law is but a statement of the facts o
Jan 1, 1933
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Production Engineering and EngineersBy E. H. Griswold
PETROLEUM production engineering is essentially the application of the laws of 'physics and mechanics to the production of oil. A true production engineer is one who can apply the principles of m
Jan 1, 1932
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Production Engineering and Research - A Series of Enthalpy-entropy Charts for Natural Gases (T. P. 1747,By G. G. Brown
Enthalpy-entropy diagrams are presented for natural gases of 0.6, 0.7, 0.8, 0.9, and 1.0 gravity over the pressure range of 5 to 10,000 Ib. per sq. in. and temperature range of 32º to 700°F. The chart
Jan 1, 1945
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Production Engineering and Research - An Experimental Water-flood in a California Oil Field (T. P. 1816, Petr. Tech., March 1945)By J. E. Sherborne, P. H. Jones, E. C. Babson
A study of the Chapman zone in the Richfield field, Orange County, California, indicates that the quantity of oil recovered by present methods will be only a small portion of the oil originally in pla
Jan 1, 1945
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Production Engineering and Research - An Introductory Discussion of the Reservoir Performance of Limestone Formations (T. P. 1791, Petr. Tech., Jan. 1945)By R. U. Fitting, A. C. Bulnes
Field experience with limestone and sandstone production indicates the existence of wide differences between the reservoir behavior of these two types of formation. Little attention appears to have be
Jan 1, 1945
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Production Engineering and Research - Calculation of Static Pressure Gradients in Gas Wells (T. P. 1814, Petr. Tech., March 1945)By D. L. Katz, M. J. Rzasa
The derivations of three methods of computing the static pressure gradients in natural gas wells have been presented to show the assumptions made. Charts were developed from which the pressure gradien
Jan 1, 1945
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Production Engineering and Research - Engineering Features of the Schuler Field and Unit Operation (T.P. 1605, Petr. Tech., July 1943) (With discussion)By H. H. Kaveler
A summary of the reservoir engineering and related geologic data on the Schuler field, Union County, Arkansas, is presented here in a manner intended to interest both technical and nontechnical reader
Jan 1, 1944
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Production Engineering and Research - Engineering Features of the Schuler Field and Unit Operation (T.P. 1605, Petr. Tech., July 1943) (With discussion)By H. H. Kaveler
A summary of the reservoir engineering and related geologic data on the Schuler field, Union County, Arkansas, is presented here in a manner intended to interest both technical and nontechnical reader
Jan 1, 1944
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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 - 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