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Studying disturbance waves in vertical annular flow with high-speed video
Authors:D Schubring  TA Shedd  ET Hurlburt
Institution:1. Visualization, Imaging, and Computation of Thermohydraulics for Reactors (VICTR) Lab, University of Florida, 202 Nuclear Science Building, P.O. Box 118300, Gainesville, FL 32611-8300, USA;2. Multiphase Flow Visualization and Analysis Laboratory (MFVAL), University of Wisconsin-Madison, 1500 Engineering Drive, Madison, WI 53706-1609, USA;3. Bettis Laboratory West Mifflin, PA 15122, USA
Abstract:In many annular two-phase gas–liquid flows, large disturbance waves propagate liquid mass. These waves are important for modeling of gas-to-liquid momentum transfer and liquid film behavior. High-speed videos of vertical upflow have been analyzed to extract individual and average wave data. Two types of structures, coherent waves and piece waves, have been identified in these flows. Velocities, lengths, and temporal spacings of individual waves and average velocities, lengths, frequencies, and intermittencies have been studied as functions of both gas and liquid flow rates. Velocity and frequency increase with liquid and gas flow rates, length decreases with increasing gas flow and increases with increasing liquid flow, and intermittency is predominantly an increasing function of liquid flow.
Keywords:Disturbance waves  Vertical flow  Annular flow  Visualization
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