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  • AIME
    Natural Gas Technology - Simultaneous Flow of Liquid and Gas Through Horizontal Pipe

    By A. F. Bertuzzi, M. R. Tek, F. H. Poettmann

    A method is presented for predicting pressure drop for two-phase fluid flow in horizontal pipes. A set of 267 experimental measurements randomly sampled from approximately 1,000 measurements from v

    Jan 1, 1957

  • AIME
    Natural Gas Technology - Solutions of Unsteady-State Radial Gas Flow

    By R. D. Carter

    Nurnerical .solutions are presented to some problems of unsteady-state radial flow of gas in which Darcy's law holds. These solutions are intended to aid in explaining the observed behavior of ga

  • AIME
    Natural Gas Technology - Spacing of Natural Gas Wells

    By R. C. Craze

    This paper discusses the characteristics of the velocity logs now available to the petroleum industry, and some of their advantages and limitations. The velocity log was designed as an aid to the g

  • AIME
    Natural Gas Technology - Temperature Surveys in Gas Producing Wells

    By M. P. Tixier, K. S. Kunz

    A method for the interpretation of temperature curves recorded in gas producing wells is described. One essen-tial feature of the method is a simple graphical construction which conveniently reflects

    Jan 1, 1956

  • AIME
    Natural Gas Technology - Testing and Analyzing Low-Permeability Fractured Gas Wells

    By L. Cichowicz, K. K. Millheim

    The constant-rate drawdown test performance for a low-permeability, verticany fractured gas well was investigated. A series of gar wells were tested by flowing each well at constant rate until the da

    Jan 1, 1969

  • AIME
    Natural Gas Technology - The Cricondentherm and Temperatures of Multicomponent Hydrocarbon Mixtures

    By G. Thodos, R. B. Grieves

    A method has been developed for the accurate calculation of the cricondentberm and cricondenbar temperatures of multicomponent hydrocarbon mixtures of known composition. The mixtures may contain any n

  • AIME
    Natural Gas Technology - The Critical Composition Method – A New Convergence Pressure Method

    By A. M. Rowe

    A considerable quantity of experimental hydrocarbon K-factor data has been correlated as a function of component identity, temperature, pressure and convergence pressure. To utilize these correlations

  • AIME
    Natural Gas Technology - The Design of Hydrocarbon Recovery Units Using Solid Adsorbents

    By R. E. Holmes, T. W. Leland

    The solution to the unsteady-state mass- and heat-transfer equations describing the adsorption of a dilute component from a gas stream flowing through a packed bed is readily applicable to the design

  • AIME
    Natural Gas Technology - The Flow of Real Gases Through Porous Media

    By R. Al-Hussainy, P. B. Crawford, H. J. Ramey

    The effect of variations of pressure-dependent viscosity and gas law deviation factor on the flow of real gases through porous media has been considered. A rigorous gas flow equation was developed whi

    Jan 1, 1967

  • AIME
    Natural Gas Technology - The Importance of Reliable Data in Gas-Condensate Calculations

    By R. F. Hinds

    A pressurizing system was designed and built to apply a radial pressure of 5.000 psi to rock samples. Samples of the Bradford, Weir and Kirkwood sandstones were subjected to radial pressures parallel

  • AIME
    Natural Gas Technology - The Importance of Water Influx in Gas Reservoirs

    By R. G. Agarwal, Ramey Jr. H. J., Al-Hussainy R.

    Although it has long been realized that gas recovery from a water-drive gas reservoir may be poor because of high residual saturations under water drive, it appears that only limited infomlation on th

    Jan 1, 1966

  • AIME
    Natural Gas Technology - The Isochronal Performance Method of Determining the Flow Characteristics of Gas Wells

    By M. H. Cullender

    The performance characteristics 01 gas wells producing from formations which fail to stabilize within a relatively short period of time are obscured by the interrelation of the coefficient (C) and the

    Jan 1, 1956

  • AIME
    Natural Gas Technology - The Phase and Volumetric Behavior of Natural Gases at Low Temperatures and High Pressures

    By F. Kurata, A. F. Bertuzzi, P. C. Davis, T. L. Gore

    The phase and volumetric properties of 10 very volatile mixtures are presented for temperatures from — 200°F to above the critical points. These mixtures consisted of natural gases and of mixtures of

    Jan 1, 1955

  • AIME
    Natural Gas Technology - The PVT Behavior of Methane in the Gaseous and Liquid States

    By G. Thodos, D. E. Matschke

    Cansiderable time and effort frequently are expended to establish, with a degree of confidence, the PVT behavior of pure substances. In particular, a great deal of experimental information contributed

  • AIME
    Natural Gas Technology - The Role of Bubble Formation in Oil Recovery by Solution Gas Drives in Limestones

    By E. B. Hunt, T. M. Geffen, C. R. Stewart, V. J. Berry

    Laboratory data .show that the gas-oil ratio performance of non-uniform porosity limestones produced by solution gas drive is sensitive to producing rate and to fluid properties. Nan-uniform porosity

    Jan 1, 1955

  • AIME
    Natural Gas Technology - The Slip Velocity of Gases Rising Through Liquid Columns

    By C. R. Sandberg, N. Stein, L. D. Wiener, E. B. Elfrink

    this paper presents the results of a study of the slip velocity of gases rising through liquids in vertical tubes, inclined tubes, and vertical annuli. The data were obtained in gas-liquid systems whi

    Jan 1, 1952

  • AIME
    Natural Gas Technology - The Viscosity of Methane

    By A. L. Lee, M. H. Gonzalez, R. F. Bukacek

    Experimental viscosity data for methane are presented for temperatures from 100 to 340F and pressures from 200 to 8,000 psia. A summary is given of the available data for methane, and a comparison is

  • AIME
    Natural Gas Technology - The Volumetric Behavior of Natural Gases Containing Hydrogen Sultide and Carbon Dioxide

    By D. B. Robinson, C. A. Macrygeorgos, G. W. Govier

    Experimental data have been obtained on the volurrletric behavior of ternary mixtures of methane, hydrogen sulfide and carbon dioxide at temperalures of 40°, 100" and 160°F up to pressures of 3,000 ps

  • AIME
    Natural Gas Technology - Threshold Pressure Phenomena in Porous Media

    By M. R. Tek, L. K. Thomas, D. L. Katz

    Threshold displacement pressures are needed to determine how much overpressure can be used in storing natural gas. An experimental technique for determining threshold pressures by displacing water wit

    Jan 1, 1969

  • AIME
    Natural Gas Technology - Unsteady-State Distributions of Fluid Compositions in Two-Phase Oil Reservoirs Undergoing Gas Injection

    By F. G. Miller, R. C. McFarlane, T. D. Mueller

    During the process of gas storage in pressure-depleted oil reservoirs, it has been observed that in some instances additional liquid oil is recovered and that the composition of the storage gas is mat