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  • AIME
    Reservoir Engineering–General - Pressure Drop in a Composite Reservoir

    By T. L. Loucks, E. T. Guerrero

    Pressure drop characteristics in a system composed of two adjacent concentric regions of different permeability were studied. The differential equations for continuity of mass flow in the two regions

  • AIME
    Reservoir Engineering–General - Pressure Studies in Bounded Reservoirs

    By S. A. Hovanessian

    Analytical solutions are obtained for calculating the pressure distribution in rectangular fields due to injection and/or producing wells located anywhere within the field. The field is assumed to be

  • AIME
    Reservoir Engineering–General - Pressure Transient Performance of a Multilayered Reservoir with Crossflow

    By V. J. Berry, J. D. Pendergrass

    Well pressure transient tests provide a means for directly obtaining information about formation pressure and reservoir flow capacity. Such tests have also been proposed for determining presence and l

  • AIME
    Reservoir Engineering–General - Results from a Multi-Well Thermal-Recovery Test in Southeastern Kansas

    By L. W. Emery

    Undergrorlnd combustion operations were initiated in a 60-acre Bartlesville sand "shoe-string" reservoir in Allen Connty, Kans., in 1956. Tests in separate patterns were conducted using various co~nbi

  • AIME
    Reservoir Engineering–General - Simultaneous Flow of Gas and Liquid as Encountered in Well Tubing

    By N. C. J. Ros

    The paper deals with pressure gradients occurring in flowing and gas-lift wells, a knowledge of which can be applied to the determination of optimum flow-string dimensions and to the design of gas-lif

  • AIME
    Reservoir Engineering–General - Stability Theory and Its Use to Optimize Solvent Recovery of Oil

    By R. L. Perrine

    This paper shows how stability theory can be used to optimize solvent recovery of oil. Application of the theory leads to definition of the limiting conditions required for stable displacement to occu

  • AIME
    Reservoir Engineering–General - Study of Gas Reservoirs Subject to Water Drive on Electronic Differential Analyzer

    By H. D. Yoo, M. R. Tek, D. L. Katz

    The behavior of gas-storage reservoirs subject to water drive is investigated through analog simulation on an electronic differential analyzer. The simulation technique developed on an LM-10 computer

  • AIME
    Reservoir Engineering–General - Temperature Profiles in Underground Combustion

    By P. E. Baker

    Approximate solutions are presented for the heat-flow equations in a loss-free linear system with a moving source and with heat transfer by convection and conduction, representing in situ combustion i

  • AIME
    Reservoir Engineering–General - The Calculated Performance of Solution-Gas-Drive Reservoirs

    By J. S. Levine, M. Prats

    Several methods are available for calculating the performance of solution-gas-drive reservoirs from the PVT properties of the oil and from the relative permeability and other properties of the formati

  • AIME
    Reservoir Engineering–General - The Critical Temperatures and Critical Pressures of Binary Mixtures of the Fixed Gases and Aliphatic Hydrocarbons

    By G. Thodos, R. B. Grieves

    A method has been developed For predicting the critical temperatures and critical pressures of binary mixtures of carbon dioxide, hydrogen sulfide, nitrogen, hydrogen, carbon monoxide and oxygen with

  • AIME
    Reservoir Engineering–General - The Development of Stability Theory for Miscible Liquid-Liquid Displacement

    By R. L. Perrine

    A stability theory is developed for miscible liquid-liquid displacement within a porous medium. In the usual case considered, a high-density high-viscosity "oil" is displaced downdip by a low-density

  • AIME
    Reservoir Engineering–General - The Effect of Oil Production Rate Upon Performance of Wells Producing from More Than One Horizon

    The performance of a two-horizon depletion-type reservoir produced through combination wells is analyzed. By introducing some simplifying approximations, it has been possible to obtain formulas which

  • AIME
    Reservoir Engineering–General - The Effect of Turbulence on Flow of Natural Gas Through Porous Reservoirs

    By M. R. Tek, K. H. Coats, D. L. Katz

    The nature and the limits of validity of Darcy's law US applied to the flow of natural gas through reservoirs has been considered in order to resolve some controversial aspects of the effect of t

  • AIME
    Reservoir Engineering–General - The Influence of Production Rate, Permeability Variation and Well Spacing on Solution-Gas-Drive Performance

    By G. J. Heuer, J. N. Dew, G. C. Clark

    The effect on well behavior of partial permeability barriers, changes in producing rates and well spacings have been calculated through use of a radial, unsteady-state, two-phase-flow mathematical mod

  • AIME
    Reservoir Engineering–General - The Linear Displacement of Oil from Porous Media by Enriched Gas

    By E. F. Johnson, F. H. Brinkman, H. J. Welge, S. P. Ewing

    This paper presents a method for predicting the manrler in which oil will be displaced from a porous body by enriched gas. The calculations apply to a gas rich enough to give a partially, but not a co

  • AIME
    Reservoir Engineering–General - The Motion of an Interface Between Two Fluids In a Slightly Dipping Porous Medium

    By F. J. Fayers, J. W. Sheldon

    A theoretical discussion is presented of the behavior of the interface between two fluids of different physical properties when displacement is occurring along a thin tilted bed. An approximate equati

  • AIME
    Reservoir Engineering–General - The Prediction of Gas-Well Performance Including the Effect of Non-Darcy Flow

    By O. G. Kiel, G. W. Swift

    The concept of "a continuous succession of steady-states", which has been applied successfully by Aromfsky and Jenkins to obtain a solution for the nonlinear partial differential equation describing t

  • AIME
    Reservoir Engineering–General - The PVT-Behavior of Ethane in the Gaseous and Liquid States

    By G. Thodos, E. M. Phillips

    A reduced density correlation for the gaseous and liquid regions of ethane has been developed from all the experimental PVT data available in the literature for this substance. Saturated vapor and liq

  • AIME
    Reservoir Engineering–General - Theoretical Analysis of Pressure Phenomena Associated with the Wireline Formation Tester

    By J. H. Moran, E. E. Finklea

    The pressure build-up technique is a recognized method of determining permeability from conventional drillstem tests. In this paper an effort is made to extend such techniques to the interpretation of

  • AIME
    Reservoir Engineering–General - Three-Component Analysis by Dispersivity in Fluid-Flow Analogs

    By R. E. Gilchrist, R. R. Harvey, M. R. Dean

    A simple and rapid three-component analysis procedure has been developed for use in fluid-flow studies. The method is based on refractive index measurements, combined with refractive dispersion measur