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  • AIME
    Reservoir Engineering-General - Effect of Vertical Fractures on Reservoir Behavior-Results on Oil and Gas Flow

    By J. S. Levine, M. Prats

    A homogeneous and uniform cylindrical reservoir containing oil and gas is fractured vertically on completion and is produced at a constant bottom-hole pressure. The fracture has an infinite flow capac

  • AIME
    Reservoir Engineering-General - Equilibrium in the Methane-Carbon Dioxide-Hydrogen Sulfide-Sulfur System

    By D. R. Wieland, H. T. Kennedy

    The object of the work reported here was to determine the content of elemental sulfur in gaseous methane, carbon dioxide, hydrogen sulfide, and in mixtures of these gases, at pressures and temperatwes

  • AIME
    Reservoir Engineering-General - Equilibrium Ratios for Reservoir Studies

    By J. N. Sicking, F. H. Brinkman

    A new method for obtaining equilibrium vaporization ratios (K-values) for reservoir fluids has been developed and tested. By application of the method, complex experimental measurements of liquid and

  • AIME
    Reservoir Engineering-General - Evaluation of Scale-Up Laws for Two-Phase Flow Through Porous Media

    By M. R. Tek, R. L. Nielsen

    The scaling laws as formulated by Rapoport relate dynamically similar flow systems in porous media each involving two immiscible, incompressible fluids. A two-dimensional numerical technique for solvi

  • AIME
    Reservoir Engineering-General - Extensions of Pressure Build-Up Analysis Methods

    By D. G. Russell

    Two techniques have been developed with which the applicability of pressure build-up analyses can be extended to include pressure data which previously have been considered virtually unusable. One of

    Jan 1, 1967

  • AIME
    Reservoir Engineering-General - Feasibility of Underground Storage of Liquid Methane

    By D. A. Flanagan, P. B. Crawford

    A study has been made of the feasibility of storing liquid meihane at low pressures in undergrohd caverns. Methane liquefies at — 258°F at atmospheric pressure. It is shown that the methane evaporatio

  • AIME
    Reservoir Engineering-General - Gas-Oil Relative Permeability Ratio Correlation From Laboratory Data

    By C. R. Knopp

    Gas-oil relative permeability ratio is an important relationship in oil reservoir predictive calculations. A correlation has been developed from 107 gas-flood k/k tests on Venezuelan core samples. The

    Jan 1, 1966

  • AIME
    Reservoir Engineering-General - Heat Transfer Perpendicular to Fluid Flow in Porous Rocks

    By J. M. Smith, G. P. Willhite, J. S. Dranoff

    Heat transfer rates were measured in sandstones with flow of gases perpendicular to the direction of energy transfer. Effective thermal conductivities ker ranged from 0.7 to 1.7 Btu/(br)(ft)(°F). The

  • AIME
    Reservoir Engineering-General - Inference Between Oil Fields

    By W. Hurst

    What is entailed here is the extension of the sinzplified material balance formulas to encompass interference between oil fields. As previously reported, the ex-plicitness as so revealed for the cunzu

  • AIME
    Reservoir Engineering-General - Interbedding of Shale Breaks and Reservoir Heterogeneities

    By G. A. Zeito

    Detailed visua1 examination of outcrops was used to ob-tain data on the lateral extent of shale breaks. Thirty vertical exposures belonging to maritie, deltaic and channel depositiorral environrrrents

    Jan 1, 1966

  • AIME
    Reservoir Engineering-General - Liquid-Density Correlation of Hydrocarbon Systems

    By A. Madrazo

    The Standing-Katz method for predicting liquid densities of reservoir fluids has been tested using experimental data of 154 bottom-hole or recombined reservoir fluid samples. New pressure- and tempera

  • AIME
    Reservoir Engineering-General - Mathematical Model of an Unstable Miscible Displacement

    By E. L. Dougherty

    A phenomenological theory for a one-dimensional unstable miscible displacement similar in type to the Buckley-Leverett model but including the effects of mixing is proposed An equation giving the frac

  • AIME
    Reservoir Engineering-General - Miscible Displacement in a Multiphase System

    By G. R. Countryman, G. H. Thomas, I. Fatt

    Miscible displacement in both thewetting and non-wetting phase has been studied in two-phase systems. Experimental data show that dispersion is a function of saturation and cannot be predicted from di

  • AIME
    Reservoir Engineering-General - Oil Displacement Using Partially Miscible gas-Solvent Systems

    By L. L. Handy

    Solvent floods using slugs of solvent have been found to show continuity in behavior from the vapor pressure of the solvent to the critical pressure for the two-component driving gas-solvent system. I

  • AIME
    Reservoir Engineering-General - Oil Recovery from Watered-Out Stratified Porous Systems Using Water-Driven Solvent Slugs

    By A. K. Csazar, L. W. Holm

    This paper describes our investigation of a post-water-flood, oil recovery process which consists of injecting a slug of propane followed by water. Also described are the results obtained by applying

  • AIME
    Reservoir Engineering-General - Oilfield Interference in Aquifers of Non-Uniform Properties

    By M. Mortada

    Nonsteady-state flow of slightly compressible liquids in porous media of non-uniform properties has been the subject of a number of recent studies. Most of these studies considered one-dimensional flo

  • AIME
    Reservoir Engineering-General - Performance Predictions for Low Productivity Reservoirs

    By G. W. Tracy, R. D. Carter

    Numerical calculations were made to determine the behavior of reservoirs with high-pressure drawdown and wide well spacing where the initial productivity is low and the wells are completed by hydrauli

  • AIME
    Reservoir Engineering-General - Physical Properties of Carbonated Oils

    By D. D. Dunlop, J. R. Welker

    The growing interest in the use of CO, in crude oil recovery increases the need for data on the effect of CO, on hydrocarbon physical properties. Data are presented on the solubility of CO, in various

  • AIME
    Reservoir Engineering-General - Prediction of Pressure Gradients for Multiphase Flow in Tubing

    By K. E. Brown, G. H. Fancher

    An 8,000-ft experimental field well was utilized to conduct flowing pressure gradient tests under conditions of continuous, multiphase flow through 2 3/8-in. OD tubing. The well was equipped with 10 g

  • AIME
    Reservoir Engineering-General - Pressure Build-Up Analysis, Variable-Rate Case

    By F. Selig, A. S. Odeh

    A second-order approximation to the exact solution of the diffusivity equation corresponding to the pressure build-up of a well producing at a variable rate is derived. This approximation is applicabl