Characteristic Behavior of Bubbles and Slugs in Transient Two-Phase Flow Using Image-Processing Method.
Shoji Goto, Yasuo Ishizaki, Hirotada Ohashi, Mamoru AKIYAMA
Abstract
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Shoji Goto, Yasuo Ishizaki, Hirotada Ohashi, Mamoru AKIYAMA
Abstract
Open-access reader
Simulation of transient two-phase flow has been performed by solving transient hydrodynamic equations. However, constitution relations used in this simulation are primarily based on steady-state experimental results. Thus it is important to understand the transient behavior of bubbles and slugs, in particular, transient behavior of the void fraction, the interfacial area and the flow pattern, to confirm the applicabibity of the present simulation method and to advance two-phase flow simulation further. The present study deals with measurement of transient two-phase flow. We have measured local and instantaneous void fractions using imaging techniques, and compared the experimental data with simulation results.
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Simulation of transient two-phase flow has been performed by solving transient hydrodynamic equations. However, constitution relations used in this simulation are primarily based on steady-state experimental results. Thus it is important to understand the transient behavior of bubbles and slugs, in particular, transient behavior of the void fraction, the interfacial area and the flow pattern, to confirm the applicabibity of the present simulation method and to advance two-phase flow simulation further. The present study deals with measurement of transient two-phase flow. We have measured local and instantaneous void fractions using imaging techniques, and compared the experimental data with simulation results.
Key concepts: Transient (computer programming), Transient flow, Mechanics, Two-phase flow, Flow (mathematics), Transient state, Materials science, Slug flow