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    Jan 1, 1948

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  • AIME
    Research - Phase Behavior in the Methane-ethane-n-pentane System (TP 2232, Petr. Tech., July 1917, with discussion)

    By Sage B. H., Lacey W. N., G. W. Billman

    The composition of the coexisting phases in the methane-ethane-n-pentane system was determined at 100°F. This was accomplished by withdrawing samples of the coexisting phases under isobaric-isothermal

    Jan 1, 1948

  • AIME
    Research - A Radial Turbulent Flow Formula (TP 2304, Petr. Tech., Jan. 1948, with discussion)

    By Jack R. Elenbaas, Donald L. Katz

    A radial turbulent flow formula has been developed which permits the computation of the pressure drop for radial flow in gas wells whether the flow is laminar, turbulent, or partially laminar and part

    Jan 1, 1948

  • AIME
    Research - Potentiometric-model Studies of Fluid Flow in Petroleum Reservoirs (TP 2262 Petr. Tech., Sept. 1947)

    By R. D. Lee

    A simplification of the method of Hurst and McCarty for conducting potentiometric model studies by the single probe method is presented along with experimentally determined invasion patterns for certa

    Jan 1, 1948

  • AIME
    Research - Some Uses and Limitations of Model Studies in Cycling (TP 2230, Petr. Tech., July 1947, with discussion)

    By L. K. Oliver, Marshall

    The use of model studies for the development of invasion patterns for cycling is .illustrated by model studies obtained with a recently developed apparatus in the solution of actual cycling problems.

    Jan 1, 1948

  • AIME
    Research - Some Theoretical Aspects of Well Drainage and Economic Ultimate Recovery (TP 2201, Petr. Tech., May 1947, with discussion)

    By Vaughn Moyer

    A method for incorporating well drawdown effect into reservoir calculations is presented in detail, together with examples of its use for widely divergent conditions that could be normally encountered

    Jan 1, 1948

  • AIME
    Research - Apparatus for Determination of Volumetric Behavior of Fluids (TP 2269, Petr. Tech., Sept. 1947)

    Apparatus and a method for determining the volumetric behavior of hydrocarbons at pressures up to 10,000 psia and at temperatures between 0° and 460°F are described. The equipment is suitable for meas

    Jan 1, 1948

  • AIME
    Reservoir Engineering - Calculated Effect of Pressure Maintenance on Oil Recovery (TP 2231, Petr. Tech., Sept. 1947)

    By Robert L. Hoss

    The application of Muskat's differential equations for predicting the performance of a solution gas-drive reservoir to the Fullerton field indicates that a recovery may be expected of 14,030 bbl

    Jan 1, 1948

  • AIME
    Reservoir Engineering - A Reservoir Study of the West Edmond Hunton Pool, Oklahoma (TP 2203, Petr. Tech., Nov. 1947, with discussion)

    By Gray L. L., Max Littlefield, Godbold A. C.

    The West Edmond pool of Central Oklahoma, a limestone reservoir, has an area in excess of 29,000 acres and as of Sept. 15, 1946, had produced 53 million barrels of oil from 731 wells at an average dep

    Jan 1, 1948

  • AIME
    Reservoir Engineering - Calculated Recoveries by Cycling from a Retrograde Reservoir of Variable Permeability (TP 2200, Petr. Tech., May 1947, with discussion

    By R. I. Parsons, M. B. Standing, E. N. Lindblad

    The recovery of the heavier components from a gas cap or retrograde pool is shown to be the greatest when the sand is cycled with a dry gas at a low pressure. This conclusion is in direct opposition t

    Jan 1, 1948

  • AIME
    Reservoir Engineering - Some Aspects of High Pressures in the D-7 Zone of the Ventura Avenue Field (TP 2204, Petr. Tech., May 1947, with discussion)

    By E. V. Watts

    The D-7 zone of the Ventura Avenue field is of special interest because the initial reservoir pressure at 92.00 ft nearly equaled the pressure exerted by the overburden. While the phenomenon has been

    Jan 1, 1948

  • AIME
    Production Engineering - Cathodic Protection of Steel Tank Bottoms by the Use of Magnesium Anodes (TP 2202, Petr. Tech., May 1947)

    By R. L. Featherly, J. R. James

    The replacement or reconditioning of oil storage tank bottoms due to external corrosion is an expensive maintenance item to the oil industry. Cathodic protection as a means of mitigating this probl

    Jan 1, 1948

  • AIME
    Production Engineering - Radioactive Markers in Oil-field Practice (TP 2261, Petr. Tech., Sept. 1947)

    By H. P. Schwede, H. G. Doll

    This paper describes a method to provide identification of particular depths in a borehole through the use of radioactive markers. The correlation of a marker, placed in the wall of a borehole, with k

    Jan 1, 1948

  • AIME
    Production Engineering - Diamond Coring in the Rangely Field, Colorado (TP 2301, Petr. Tech., Jan. 1948)

    By Carl J. Christensen

    This paper presents the development of diamond coring of the Weber sand section in the Rangely Field, Colorado. The description and operation of the diamond-coring equipment is included as well as the

    Jan 1, 1948

  • AIME
    Production Engineering - Use of Oil-emulsion Mud in the Sivells Bend Field (TP 2227: Petr. Tech., July 1947)

    By W. H. Echols

    An oil-emulsion mud, consisting of a mixture of oil-base mud and bentonitic water-base mud, has been used experimentally in drilling 8 of the 35 wells in the Sivells Bend field, Cooke County, Texas. E

    Jan 1, 1948

  • AIME
    Production Engineering - Well Flowmeter for Logging Producing Ability of Gas Sands (TP 2263, Petr. Tech., Sept. 1947)

    By R. M. Leibrock, C. W. Ziemer, R. P. Vincent

    The Stanolind flowmeter, which employs a hot-wire anemometer connected in a Wheat-stone bridge circuit, has proved useful for determining the relative productive ability of individual sand members of

    Jan 1, 1948

  • AIME
    Production Engineering - Location of Points of Water Entry in Oil Wells (TP 2316, Petr. Tech., Jan. 1948)

    By D. Silverman, A. R. Brown

    EquipmENT and methods for locating the points of entry of salt water into oil wells are described. These techniques make it possible to delineate accurately the top and bottom boundaries of water zone

    Jan 1, 1948