Physics of Fluids · 2007 · 41 citations · 21 references
EngineeringFluid MechanicsTurbulenceGas-liquid FlowUnsteady FlowBubble DynamicFluid PropertiesHydrodynamic StabilityLiquid PhasePipe FlowFlow PhysicShear Reynolds StressesHydromechanicsTaylor BubblesConsecutive Elongated BubblesMultiphase FlowCivil EngineeringHydrodynamicsAerodynamicsTurbulent StructureVertical PipesFlow Measurement
The development of gas-liquid slug flow along pipes is governed by the interaction between consecutive elongated bubbles. It is commonly accepted that the trailing bubble’s shape and velocity are affected by the flow field in the liquid phase ahead of it. Particle image velocimetry (PIV) measurements of the velocity field in the wake of an elongated Taylor bubble are performed for different pipe diameters and various Reynolds numbers. Experiments are carried out in both laminar and turbulent background flows. Ensemble-averaged quantities in the frame of reference moving with the Taylor bubble are calculated. Peculiarities regarding the variation of the mean velocity distributions, as well as of the normal and shear Reynolds stresses, with the distance from the Taylor bubble bottom are discussed.
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Universal correlation for the rise velocity of long gas bubbles in round pipes
Flavia Viana, Raimundo Pardo, RODOLFO YÁNEZ et al. · Journal of Fluid Mechanics · 2003 · 198 citations
Entrance Effects in a Two-Phase Slug Flow
R. Moissis, P. Griffith · Journal of Heat Transfer · 1962 · 170 citations
Laminarescent, relaminarizing and retransitional flows
Katepalli R. Sreenivasan · Acta Mechanica · 1982 · 125 citations