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  • AIME
    Reservoir Engineering – Laboratory Research - The Injection of Detergent Slugs in Water Floods

    By J. J. Taber

    The turbulent flow drag coefficients, or friction factors, have been experimentally determined for the cut-tings normally encountered in drilling operations. The gas law and average drag coefficien

  • AIME
    Reservoir Engineering – Laboratory Research - The Mechanism of Gas and Liquid Flow Through Porous Media in the Presence of Foam

    By L. W. Holm

    This study shows that in the presence of foam, gas and liquid flow separately through porous media representative of reservoir rock. These results were obtained by using tracer techniques to measure t

    Jan 1, 1969

  • AIME
    Reservoir Engineering – Laboratory Research - Theory and Application of Imbibition Phenomena in R...

    By W. C. Hardy, B. W. McArthur

    The purpose of this work is to show application of laboratory data in calculating solution gas-drive performance of the Cisco K-I reservoir. Included herein is a diagram showing the graphical relation

  • AIME
    Reservoir Engineering – Laboratory Research - Transfer of Fluid Components in a Porous Medium at...

    By J. W. Marx, R. H. Langenheim

    The authors are to he complimented for a timely presentation of useful information concerning application of heat to oil reservoirs to increase the rate and ultimate recovery of oil. The solution f

  • AIME
    Reservoir Engineering – Laboratory Research - Wet and Partially Quenched Combustion

    By J. Weijdema, D. N. Dietz

    In the conventional underground combustion process (dry combustion) much heat is left behind in the swept formation and goes to rva.rte. Econonmy can be improved by heat recuperation through water inj

    Jan 1, 1969

  • AIME
  • AIME
    Reservoir Engineering- Laboratory Research - A Laboratory Study of an Improved Water-Driven LPG Slug Process

    By J. L. Thompson

    There are two basic forms of the LPG-slug process: the gas driven and the water driven. The pressure required for miscibility between gas and LPG prohibits the use of the gas-driven LPG process in sha

  • AIME
    Reservoir Engineering- Laboratory Research - Application of Air-Mercury and Oil-Air Capillary Pressure Data in the Study of Pore Structure and Fluid Distribution

    By W. B. Hickman, J. J. Pickell, B. F. Swanson

    Many physical properties of the porous media-immiscible liquid system are dependent upon the distribution of fluids within the pores; this in turn, is primarily a function of pore structure, liquid-li

    Jan 1, 1967

  • AIME
    Reservoir Engineering- Laboratory Research - Casing Temperature Studies in Steam Injection Wells

    By K. Leutwyler

    The key to realistic casing stress analysis in thermal recovery installations is accurate knowledge of the temperatures involved. Much information leading to prediction of heat losses from tubing stri

    Jan 1, 1967

  • AIME
    Reservoir Engineering- Laboratory Research - Certain Wettability Effects in Laboratory Waterfloods

    By N. Mungan

    Laboratory imbibition and displacement experiments were performed using crude oil and cores drilled with water and preserved under anaerobic conditions. The purpose of these tests was to determine res

    Jan 1, 1967

  • AIME
    Reservoir Engineering- Laboratory Research - Determination of Chemical Requirements and Applicability of Wettability Alteration Flooding

    By H. R. Froning, R. O. Leach

    In wertability alteration flooding, a chemical agent is rnoved through a reservoir by the flood water to increase oil recovery by decreasing the degree of wetting of the rock by the oil. Substantial a

  • AIME
    Reservoir Engineering- Laboratory Research - Effect of Cleavage Rate and Stress Level on Apparent Surface Energies of Rocks

    By W. W. Krech, T. E. Perkins

    As fractures are propagated through rocks, energy is absorbed near the extending crack tip. Apparent surface energies for several rocks have been measured by cleavage under dynamic con-ditions. At nom

    Jan 1, 1967

  • AIME
    Reservoir Engineering- Laboratory Research - Effect of Interfacial Tension on Displacement Efficiency

    By O. R. Wagner, R. O. Leach

    Immiscible displacement tests were performed in a consolidated sandstone core over the interfacial tension range from less thdn 0.01 to 5 dynes/cm to better define how interfacial tension (IFTJ reduct

    Jan 1, 1967

  • AIME
    Reservoir Engineering- Laboratory Research - Flow of Polymer Solutions Through Porous Media

    By D. E. Menzie, D. L. Dauben

    This paper discusses the physical parameters involved in the slow flow of high molecular weight polymer solutions in porous media. The interacting effects of polymer properties and porous media proper

  • AIME
    Reservoir Engineering- Laboratory Research - Fluid Dispersion and Distribution in Porous Media Using the Frequency Response Method With a Radioactive Tracer

    By R. R. Goddard

    By use of the frequency response method with a radioactive tracer, it was possible to determine fluid dispersion and distribution in a natural consolidated and an unconsolidated medium. Measurements w

    Jan 1, 1967

  • AIME
    Reservoir Engineering- Laboratory Research - Fluid Distributions During Immiscible Displacements in Porous Media

    By P. Datta, L. L. Handy

    For a wetting phase displacing a nonwetting phase from a porous medium the distribution of the residual fluid may depend on displacement conditions. Although this subject has been debated in the liter

    Jan 1, 1967

  • AIME
    Reservoir Engineering- Laboratory Research - Imbibition Model Studies on Water-Wet Carbonate Rocks

    By R. W. Parsons, P. R. Chaney

    Oil recovery by the imbibition mechanism can be important in fractured carbonate reservoirs with a bottom water drive. Laboratory experiments were performed on water-wet carbonate rocks to model this

    Jan 1, 1967

  • AIME
    Reservoir Engineering- Laboratory Research - Interfacial Effects in Immiscible Liquid-Liquid Displacement in Porous Media

    By N. Mungan

    A study was made of the effects of wettability and interfacial tension on the immiscible displacement of a Iiquid by another Iiquid from porous media. The influence of viscosity ratio was also investi

    Jan 1, 1967

  • AIME
    Reservoir Engineering- Laboratory Research - Mobility Control with Polymer Solutions

    By W. B. Gogarty

    With the use of polymer solutions in secondary recovery operations, the need has developed to understand the mobility control mechanism. This study investigated mobility control by considering both pe

  • AIME
    Reservoir Engineering- Laboratory Research - Mode Conversion Technique Employed in Shear Wave Velocity Studies of Rock Samples Under Axial and Uniform Compression

    By A. R. Gregory

    A shear wave velocity laboratory apparatus and techniques for testing rock samples under simulated subsurface conditions have been developed. In the apparatus, two electromechanical transducers operat