Pressure drop in aqueous surfactant solution flow through pipes in SIS structure degradation zone

被引:0
作者
Dugonik, M. [1 ]
Goricanec, D. [1 ]
Krope, J. [1 ]
机构
[1] Univ Maribor, Fac Chem & Chem Engn, Smetanova 17, SLO-2000 Maribor, Slovenia
来源
PROCEEDINGS OF THE 2ND IASME/WSEAS INTERNATIONAL CONFERENCE ON ENERGY & ENVIRONMENT | 2007年
关键词
fluid dynamics; surfactants; pressure drop; shear stress; drag coefficient; drag reduction;
D O I
暂无
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The paper describes chemical and rheologic properties of solutions of polymer additives and cationic surfactants while they flow though pipes in a laminar and turbulent zone and their influence on drag reduction. Surface active additives or aqueous solutions of surfactants form rod-like micelles, associated into an intermolecular SIS structure that absorbs the turbulence energy at the passage through a pipe, thus influencing the reduction in pressure drop or drag reduction. The influence of the velocity of aqueous solution of surface active additives is analysed in pipes in the Re number range, where high shear stress leads to a degradation of the surfactant intermolecular SIS structure and the drag reduction effect disappears. The pressure drop and drag reduction rate diagrams as functions of aqueous surfactant solution flow velocity and Re number are based on computer calculations.
引用
收藏
页码:50 / +
页数:3
相关论文
共 50 条
  • [31] A numerical model for pressure drop and flow distribution in a solar collector with U-connected absorber pipes
    Bava, Federico
    Furbo, Simon
    SOLAR ENERGY, 2016, 134 : 264 - 272
  • [32] Wet gas pressure drop across orifice plate in horizontal pipes in the region of flow pattern transition
    Liu, Weiye
    Ma, Youfu
    Lyu, Junfu
    Shao, Jie
    Wang, Shuo
    FLOW MEASUREMENT AND INSTRUMENTATION, 2020, 71
  • [33] CFD investigation of pressure drop reduction in hydrotransport of multisized zinc tailings slurry through horizontal pipes
    Krishna, Ram
    Kumar, Niranjan
    Gupta, Pankaj Kumar
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2023, 48 (43) : 16435 - 16444
  • [34] Molecular Insight into the Possible Mechanism of Drag Reduction of Surfactant Aqueous Solution in Pipe Flow
    Kobayashi, Yusei
    Gomyo, Hirotaka
    Arai, Noriyoshi
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2021, 22 (14)
  • [35] Air - water flow through a single serpentine mini channel - flow distribution and pressure drop
    Malhotra, Sneha
    Deshpande, Aniruddha
    Ghosh, Sumana
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2017, 96 : 48 - 55
  • [36] Dataset of flow experiment: Effects of density, viscosity and surface tension on flow regimes and pressure drop of two-phase flow in horizontal pipes
    AL-Dogail, Ala S.
    Gajbhiye, Rahul N.
    DATA IN BRIEF, 2021, 38
  • [37] Numerical computation of pressure drop by slow flow through micropacked bed reactors
    Song, Kwang Ho
    Koo, Sangkyun
    JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2006, 12 (03) : 368 - 372
  • [38] Fluid flow pressure drop through an annular bed of spheres with wall effects
    Sodre, JR
    Parise, JAR
    EXPERIMENTAL THERMAL AND FLUID SCIENCE, 1998, 17 (03) : 265 - 275
  • [39] Two-phase pressure drop caused by sudden flow area contraction/expansion in small circular pipes
    Roul, Manmatha K.
    Dash, Sukanta K.
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 2011, 66 (11) : 1420 - 1446
  • [40] Pressure drop of the gas-liquid two-phase stratified flow in horizontal pipes: An experimental study
    Xu, Ying
    Wei, Jing
    Liu, Gang
    Zhang, Tao
    Natural Gas Industry, 2015, 35 (02) : 92 - 99