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  • AIME
    Reservoir Engineering - General - Partial Integration of Equations of Multiphase Flow

    By J. C. Martin

    Equations for three-phase, three-dimensional, compressible flow (including capillarity) are reduced to two-dimensional relations by a partial integration. This reduction allows three-dimensional flow

    Jan 1, 1969

  • AIME
    Reservoir Engineering - General - Performance Analysis of a Major Steam Drive Project in the Tia Juana Field, Western Venezuela

    By H. J. de Haan, L. Schenk

    Scope for Thermal Recovery in Shell's Heavy Oil Fields in Venezuela The main heavy oil reservoirs on the East coast of Lake Maracaibo (Fig. I), known as "Bolivar Coast", initially contained so

    Jan 1, 1970

  • AIME
    Reservoir Engineering - General - Permeability of Idealized Fractured Rock

    By R. W. Parsons

    The over-all apparent single-phase permeability of fracture-rock systems was studied using two different two-dimensional models. In a strict sense the results are applicable only to these models, yet

    Jan 1, 1967

  • AIME
    Reservoir Engineering - General - Predicting Depletion Behavior of Condensates

    By C. F. Weinaug, R. W. Farley, J. F. Wolfe

    A rapid, accurate method for predicting the dew points of gas condensate systems and their subsequent normal and retrograde phase behavior with pressure decline has been developed. The method predicts

    Jan 1, 1970

  • AIME
    Reservoir Engineering - General - Prediction of Approximate Time of Interference Between Adjacent...

    By W. A. Klikoff, I. Fatt

    The concept of fractional wet wattability is examined. Fractional water wettability of a reservoir rock is defined as the fraction of the internal surface urea that is in contact with water. Capillary

  • AIME
    Reservoir Engineering - General - Simplified Water Influx-Pressure Calculations Above the Bubble...

    By J. D. Rice, S. C. Pitzer, C. E. Thomas

    Interpretation of pressure build-up data obtained in the conventional manner has often been difficult because of the deviation from theoretical behavior. Major causes of this deviation have been attri

  • AIME
    Reservoir Engineering - General - Simulation of Three-Dimensional, Two-Phase Flow in Oil and Gas Reservoirs

    By A. G. Weber, K. H. Coats, M. H. Terhune, R. L. Nielsen

    Two computer-oriented techniques for simulating the three-dimensional flow behavior of two fluid phases in petroleum reservoirs were developed. Under the first technique the flow equations are solved

  • AIME
  • AIME
    Reservoir Engineering - General - Some Theoretical Aspects of Underground Combustion in Segregated Oil Reservoirs

    By B. S. Gottfried

    This paper is concerned with possible transport mechanisms which occur during segregated burning (i.e., burning in an oil reservoir in which the oil-bearing formation is overlain by a "clean" porous z

    Jan 1, 1967

  • AIME
    Reservoir Engineering - General - Steam Zone Growth in a Preheated Reservoir

    By P. J. Closmann

    Steam zone growth as a function of time has been calculated for the case of constant rate steam injection into a preheated reservoir. To simplify the calculation a linear temperature profile has been

    Jan 1, 1969

  • AIME
    Reservoir Engineering - General - The Effect of Partial Penetration on Pressure Build-up in Oil Wells

    By Robert G. Nisle

    The classic theory of pressure build-up in shut-in oil wells as developed by Horner and van Everdingen is based on two-dimensional radial symmetry in the well-reservoir system. Such symmetry does not

  • AIME
    Reservoir Engineering - General - The Heat Efficiency of Thermal Recovery Processes

    By M. Prats

    Most of the information available on the heat efficiency of hot fluid injection processes, both water and steam, has been obtained from calculated temperature distributions in the pay zone and adjacen

    Jan 1, 1970

  • AIME
    Reservoir Engineering - General - The Prediction of Volumes, Compressibilities and Thermal Expansion Coefficients of Hydrocarbon Mixtures

    By H. T. Kennedy, S. M. Avasthi

    An equation developed for gaseous hydrocarbon mixtures predicts molal volumes with an average absolute deviation of 0.73 percent when applied to 264 natural gas and condensate systems including 2,043

    Jan 1, 1969

  • AIME
    Reservoir Engineering - General - The Use of the Method of Characteristics in Determining Boundar...

    By F. J. Fayers, R. L. Perrine

    For many years the problem of increasing ultimate recovery of oil from a reservoir has been a subject of interest to the oil industry. At present, a standard secondary recovery technique is to flood t

  • AIME
    Reservoir Engineering - General - Three-Phase Reservoir Simulation

    By E. H. Herron, J. H. Perry

    Mathematical simulation of reservoir behavior may be used to help understand reservoir processes and to predict reservoir behavior, thereby leading to the most economically desirable form of exploitat

    Jan 1, 1970

  • AIME
    Reservoir Engineering - General - Transient Stresses and Displacement Around a Wellbore Due to Fluid Flow in Transversely Isotropic, Porous Media: II. Finite Reservoirs

    By K. E. Gray, M. S. Seth

    In Part I of this work,1 equations of elasticity were formulated for transversely isotropic, axisymmetric, homogeneous, porous media exhibiting pore fluid pressure. Equations of elasticity and the the

    Jan 1, 1969

  • AIME
    Reservoir Engineering - General - Two-Dimensional Method For Predicting Hot Waterflood Recovery Behavior

    By A. G. Spillette, R. L. Nielsen

    The purpose of this paper is to further the understanding of reservoir response to hot-water injection by desuribing a two-dimensional, mathematical model of the process. Key assumptions are that no g

    Jan 1, 1969

  • AIME
    Reservoir Engineering - Laboratory Research - Model Studies of Pilot Waterfloods

    By B. H. Caudle, W. J. Bernard

    Factors which influence the success or failure of a waterflood can seldom be determined in the laboratory. For this reason pilot waterfloods are initiated in a repreventative portion of the oil reserv

  • AIME
    Reservoir Engineering - Use of Permeability Distribution in Water Flood Calculations

    By W. E. Stiles

    A method is presented for predicting the performance of water flooding operations in depleted, or nearly depleted, petroleum reservoirs. The method makes use of permeability variations and the vertica

    Jan 1, 1949

  • AIME
    Reservoir Engineering - Use of Permeability Distribution in Water Flood Calculations

    By W. E. Stiles

    A method is presented for predicting the performance of water flooding operations in depleted, or nearly depleted, petroleum reservoirs. The method makes use of permeability variations and the vertica

    Jan 1, 1949