Nuclear Technology · 2015 · 16 citations · 2 references
EngineeringFluid MechanicsGas-liquid FlowTwo-phase FlowBubble DynamicFluid PropertiesTransport PhenomenaTwo-group Iate DevelopmentBubble GroupsInterfacial Area ConcentrationFlow PhysicHydromechanicsDisperse FlowMultiphase FlowPhase EquilibriumCivil EngineeringHydrodynamicsFlow MeasurementFour-sensor Conductivity Probe
In the two-group interfacial area transport equation (IATE) used to calculate the interfacial area concentration (ai), bubbles are categorized into two groups. Namely, group-I consists of spherical/distorted bubbles, and group-II consists of cap/slug/churn-turbulent bubbles. Robust models for the major bubble interaction mechanisms that cause the transition from purely one-group to two-group flows are essential to the dynamic closure of the two-fluid model with the two-group IATE. Therefore, the present study seeks to establish an experimental database in cap-bubbly flows that highlights this transition to support model development. A four-sensor conductivity probe is used to obtain measurements of local time-averaged two-phase flow parameters, including the void fraction and ai, in vertical-upward air-water two-phase flows in a 5.08-cm pipe. Four flow conditions are investigated at ⟨jf⟩ = 2 m/s with increasing ⟨jg⟩ to study the generation and growth of group-II bubbles. Characteristic features of the local void fraction and ai distributions are discussed. Additionally, axial development of area-averaged void fraction and ai that is indicative of exchange between the bubble groups is presented.
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Thermo-fluid dynamic theory of two-phase flow
International Journal of Multiphase Flow · 1976 · 1.5K citations
Transient Phenomena in Multiphase Flow
G. Hetsroni · International Journal of Multiphase Flow · 1989 · 76 citations