A current-sensing electromagnetic flowmeter for two-phase flow and numerical simulation of the three-dimensional virtual potential distribution: I. Fundamentals and annular flow

被引:10
|
作者
Ahn, YC [1 ]
Oh, BD [1 ]
Kim, MH [1 ]
机构
[1] Pohang Univ Sci & Technol, Dept Mech Engn, Pohang 790784, South Korea
关键词
current-sensing electromagnetic flowmeter; high temporal resolution; virtual potential distribution; weight function; annular flow; finite-difference method; impedance spectroscopy;
D O I
10.1088/0957-0233/14/3/301
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The theory of the current-sensing electromagnetic flowmeter for a high temporal resolution was developed for two-phase flow measurements. To predict the output of the current-sensing flowmeter, the three-dimensional virtual potential distribution G and the newly introduced flow pattern coefficient f were derived and computed. The output of the flowmeter depends on the liquid conductivity (sensitive to temperature) and flow configurations of the two-phase flow with sinusoidal excitation over 100 Hz. The flow pattern coefficient was specially devised to separate the dependence on the flow configuration of the two-phase flow from that on the liquid conductivity which can be expressed with the calibration of single-phase flow. Using the finite-difference method, the three-dimensional virtual potential distributions were computed for an electrode of finite size. By taking the derivative of the virtual potential, the weight functions were evaluated. In addition, the flow pattern coefficients were evaluated for annular flows with various film thicknesses, and compared with the experimental results obtained by impedance spectroscopy. The numerical results agreed well with the experimental data.
引用
收藏
页码:239 / 250
页数:12
相关论文
共 50 条
  • [1] Three-dimensional simulation of two-phase flow in pipes
    Giese, T
    Laurien, E
    HIGH PERFORMANCE COMPUTING IN SCIENCE AND ENGINEERING '02, 2003, : 354 - 366
  • [2] Parallel Numerical Simulation on Three-dimensional Two-phase Flow of Interior Ballistic Trajectory
    Cheng C.
    Zhang X.
    Binggong Xuebao/Acta Armamentarii, 2019, 40 (04): : 769 - 776
  • [3] Three-Dimensional Numerical Simulation of a Two-Phase Supercritical Open Channel Junction Flow
    Blagojevic, Marko
    Hocevar, Marko
    Bizjan, Benjamin
    Dresar, Primoz
    Repinc, Sabina Kolbl
    Rak, Gasper
    WATER, 2024, 16 (12)
  • [4] Numerical study of three-dimensional droplet impact on a flowing liquid film in annular two-phase flow
    Xie, Zhihua
    Hewitt, Geoffrey F.
    Pavlidis, Dimitrios
    Salinas, Pablo
    Pain, Christopher C.
    Matar, Omar K.
    CHEMICAL ENGINEERING SCIENCE, 2017, 166 : 303 - 312
  • [5] Numerical simulation of turbine flowmeter's three-dimensional flow fields
    Sun, Lijun
    Zhou, Zhaoying
    Zhang, Tao
    WCICA 2006: SIXTH WORLD CONGRESS ON INTELLIGENT CONTROL AND AUTOMATION, VOLS 1-12, CONFERENCE PROCEEDINGS, 2006, : 5023 - +
  • [6] Three-dimensional numerical model for the two-phase flow and heat transfer in condensers
    Mirzabeygi, Pooya
    Zhang, Chao
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2015, 81 : 618 - 637
  • [7] Numerical analysis of three-dimensional two-phase flow behavior in a fuel assembly
    Takase, K
    Yoshida, H
    Ose, Y
    Akimoto, H
    Computational Methods in Multiphase Flow III, 2005, 50 : 183 - 192
  • [8] Three-dimensional coupling numerical simulation of two-phase flow and electrochemical phenomena in alkaline water electrolysis
    Torii, Kenjiro
    Kodama, Manabu
    Hirai, Shuichiro
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2021, 46 (71) : 35088 - 35101
  • [9] Numerical simulation of flow-induced stresses in mold filling process using a three-dimensional two-phase flow model
    Zhuang, Xin
    Ouyang, Jie
    Zhou, Wen
    Liu, Qingsheng
    Yang, Binxin
    ARCHIVE OF APPLIED MECHANICS, 2016, 86 (07) : 1179 - 1201
  • [10] Numerical simulation of flow-induced stresses in mold filling process using a three-dimensional two-phase flow model
    Xin Zhuang
    Jie Ouyang
    Wen Zhou
    Qingsheng Liu
    Binxin Yang
    Archive of Applied Mechanics, 2016, 86 : 1179 - 1201