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  • SME
    Pipeline Tunneling by Connecting Conventional and TBM Methods under High Groundwater Pressure

    By Tsunenori Shibata, Kazunori Jimbo, Kaoru Toya, Masafumi Matsumoto, Jinya Mitsui, Toshinori Tsuji

    "The Toyama Line is under construction as a natural gas pipeline with a length of 102 km from Itoigawa City to Toyama City. A 2 km-long tunnel section of the pipeline that we are reporting here is bei

    Jan 1, 2016

  • AUSIMM
    Pipelines - The Mining Cycle Catalyst

    Both as an energy source and as a raw material, natural gas is playing an increasingly important role as a catalyst for the development, continuation and rebirth of mining projects in Australia. Pipel

    Jan 1, 1998

  • AIME
    Pipelines Show Good Potential For Long-Distance Transporting Of Solids

    By R. Costantini

    Long-distance transportation of solids by hydraulic pipelines holds promise of great economic benefits. In most mineral processing plants today, moving of solids in slurry-form by pipeline is commonpl

    Jan 8, 1961

  • AIME
    Pipelining - Equipment, Methods and Materials - Axial Laminar Flow of Non-Newtonian Fluids in Narrow Eccentric Annuli

    By R. D. Vaughn

    The analysis of laminar flow of power-law non-Newtonian fluids in narrow, eccentric annuli is employed in this paper to discuss the problems of lubricant flow in journa! bearings and of errors introdu

    Jan 1, 1966

  • AIME
    Pipelining - Equipment, Methods and Materials - Drag Reduction Characteristics of Solutions of Macromolecules In Turbulent Pipe Flow

    By J. G. Savins

    Certain types of macromolecules added to water and salt solutions flowing in turbulent motion can reduce the pressure gradient. Alternatively, the volumetric capacity of a pipe for these fluids is inc

    Jan 1, 1965

  • AIME
    Pipelining - Equipment, Methods and Materials - Experimental Study of Pressure Gradients Occurring During Continuous Two-Phase Flow in Small Diameter Vertical Conduits

    By K. E. Brown, A. R. Hagedorn

    A 1,500-ft experimental well was used to study the pressure gradients occurring during continuous, vertical, two-phase flow through 1-in., 1 1/4-in. and 1 1/3-in. nominal size tubing. The test well

    Jan 1, 1966

  • AIME
    Pipelining - Equipment, Methods and Materials - Fluid Mechanics Research and Engineering Application in Non-Newtonian Fluid Systems

    By L. L. Melton, W. T. Malone

    Fluid mechanics research conducted with non-Newtonian fluid systems now permits prediction of the behavior of these fluid systems in both laminar and turbulent modes of flow through circular pipes. Pr

    Jan 1, 1965

  • SME
    Pipelining Bulk Minerals

    By James M. Link

    The first rule of mineral deposits always seems to be: the deposit is never close to the market. With gems and precious metals, this is not much of a problem. But with most of the mineral commodities

    Jan 10, 1982

  • AIME
    Pipelining – Equipment, Methods and Materials - Correlation of Drag Reduction With Modified Deborah Number for Dilute Polymer Solutions

    By J. L. Zakin, G. K. Patterson, J. M. Rodriguez

    Correlation has been obtained between drag-reducing characteristics for turbulent flow in a pipe and measurable properties of several polymer solutions. Several concentrations of high molecular weight

  • AIME
    Pipelining – Equipment, Methods and Materials - Drag and Lift Forces on a Submarine Pipeline Subjected to a Transverse Horizontal Current

    By R. J. Brown

    Design of a submarine pipeline system is governed by many factors, one of which is the effect of transverse horizontal currents on the pipeline structure itself Although this feature alone can be of u

    Jan 1, 1967

  • AIME
    Pipelining – Equipment, Methods and Materials - General Turbulent Pipe Flow Scale-Up Correlation for Rheologically Complex Fluids

    By L. L. Melton, D. L. Lord, B. W. Hulsey

    A mathematical model d1.20p/4L = A(8v)8 derived from the Blasius equation is proposed to be applicable to turbulent flow through straight cylindrical pipe for time-independent fluids which produce a d

  • AIME
    Pipelining – Equipment, Methods and Materials - Numerical Prediction of the Pipeline Flow Characteristics of Thixotropic Liquids

    By R. A. Ritter, J. P. Batycky

    A numerical technique has been developed to permit estimating the pressure gradient associated with laminar flow of thixotropic liquids through long Pipelines. For this purpose the pipeline is divided

  • AIME
    Pipelining – Equipment, Methods and Materials - On the Flow of Bingham Plastic Slurries in Pipes and Between Parallel Plates

    By D. R. Pratt, R. W. Hanks

    The method of Caldwell and Babbitt for detennining Bingham plastic rheological constants from engineering pipe flow data has been erroneously used in many previous applications. A reanalysis of extens

  • AIME
    Pipelining – Equipment, Methods and Materials - Predicting Two-Phase Pressure Drops in Vertical Pipe

    By J. Orkiszewski

    A method i.s presented which can accurately predict, with a precision of about 10 percent, two-phase pressure drops in flowing and gas-lift production wells over a wide range of well conditions. The m

  • AIME
    Pipelining – Equipment, Methods and Materials - The Laminar-Turbulent Transition in Suspension of Rigid Spheres

    By J. S. Dodge, I. M. Krieger

    The laminarturbulent transition was studied for monodisperse rigid polymer latices as functions of particle diameter and concentration at several tube diameters. Breaks in the graph of friction factor

  • AIME
    Pipelining – Equipment, Methods and Materials - The Prediction of Flow Patterns, Liquid Holdup and Pressure Losses Occurring During Continuous Two-Phase Flow in Horizontal Pipelines

    By B. A. Eaton, K. E. Brown, C. R. Knowles, D. E. Andrews, I. H. Silberberg

    This paper presents the resitlts of an investigation of two-phase, gm-liquid flow in horizontal pipelines. Experimental data were taken in three field-size, horizontal pipelines, two of which were con

  • AIME
    Piping and Segregation in Steel Ingots

    By H. M. Howe

    A Discussion of the paper of Professor Howe, presented at the London Meeting, July, 1906, and printed in Bi-Monthly Bulletin, No. 14, March, 1907, pp. 169 to 274. SECRETARY'S NOTE.-M. Beutter&

    Jul 1, 1907

  • AIME
    Piping and Segregation in Steel Ingots - Preliminary Paper

    By HENRY M. HOWEL

    1. Introduction.-The first part of this papers treats of the causes and the restraining of piping in steel ingots; the second& considers the causes and the restraining of -segregation; and the third p

    Mar 1, 1907

  • AIME
    Piping And Segregation In Steel Ingots.

    By P. H. Dudley

    A Discussion of the Paper of Prof. Howe. (Bi-Monthly Bulletin, No. 14, March, 1907, pp. 169 to 274.) P. H. DUDLEY, New York, N. Y. (communication to the Secretary*) :-The characteristics of Prof. How

    Jan 5, 1908

  • AIME
    Piping And Segregation Of Ingots Of Steel And Ductility-Tests For Open-Hearth Steel Rails.

    By P. H. Dudley

    THE piping and segregation of ingots of steel is a comprehensive subject, and must be studied in reference to the different grades of soft, medium, and hard steel, rather than to discuss it in a gener

    Jan 4, 1913