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Image processing methods to obtain symmetrical distribution from projection image.

H Asano1, N Takenaka, T Fujii

  • 1Department of Mechanical Engineering, Kobe University, 1-1, Rokodai-Cho, Nada-ku, Kobe 657-8501, Japan. asano@mech.kobe-u.ac.jp

Applied Radiation and Isotopes : Including Data, Instrumentation and Methods for Use in Agriculture, Industry and Medicine
|July 13, 2004
PubMed
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This study visualizes gas-liquid two-phase flow, measuring void fraction distribution to understand how obstacles affect heat transfer. Two projection-based methods, Abel transform and CT, were successfully applied to vertical upward air-water flow.

Area of Science:

  • Fluid Dynamics
  • Heat Transfer
  • Two-Phase Flow

Background:

  • Understanding gas-liquid two-phase flow is crucial for optimizing heat transfer and flow characteristics in conduits.
  • Obstacles significantly influence flow patterns and heat transfer efficiency.
  • Accurate measurement of cross-sectional liquid distribution is key to analyzing these effects.

Purpose of the Study:

  • To apply and evaluate two projection-based methods for measuring cross-sectional void fraction distribution.
  • To investigate the impact of obstacles on gas-liquid two-phase flow characteristics.
  • To clarify the relationship between flow distribution and heat transfer.

Main Methods:

  • Application of Abel transform for calculating radial void fraction distributions in axially symmetric geometries (circular tube, annulus with spacer).

Related Experiment Videos

  • Utilizing the CT method for measuring cross-sectional void fraction distributions in a tube with a periodically rotating wire coil.
  • Both methods rely on single-direction projection images.
  • Main Results:

    • Successfully obtained radial void fraction distributions using Abel transform under axial symmetry assumption.
    • Successfully measured cross-sectional void fraction distributions using CT method for rotating configurations.
    • Demonstrated the effectiveness of both methods in characterizing void fraction distribution.

    Conclusions:

    • Projection-based methods are effective for visualizing and measuring cross-sectional void fraction in gas-liquid two-phase flow.
    • Abel transform and CT methods provide valuable data for understanding flow behavior and heat transfer modifications caused by obstacles.
    • The study highlights the utility of these techniques for analyzing complex two-phase flow phenomena.