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Modeling interfacial area concentration in bubbly flow

Physics of Fluids
Accurate mass, momentum, and energy transfer predictions through gas and liquid interfaces are critical in simulating gas–liquid two-phase flow dynamics. Since the interfacial transfer rates depend on the interfacial area concentration (IAC), it is essential to model the IAC accurately for robust two-phase flow analyses.
Kelei Song, Takashi Hibiki
openaire   +1 more source

Development of the five-sensor conductivity probe method for the measurement of the interfacial area concentration

Nuclear Engineering and Design, 2001
The interfacial area concentration (IAC) is one of the most important parameters in the two-fluid model for two-phase flow analysis. The purpose of this study is to develop the local IAC measuring method by using the five-sensor conductivity probe. In this paper, the mathematical approach of the five-sensor conductivity probe method for measuring the ...
D.J. Euh   +5 more
openaire   +1 more source

Measurement of Gas-Liquid Interfacial Area Concentration and Its Effect on Aerosol Behavior in Pool Scrubbing

Volume 15: Student Paper Competition, 2022
Abstract Pool scrubbing is one of the severe accidents (SA) countermeasures in nuclear power plants. In pool scrubbing, gas containing Fission Products (FPs) generated in the reactor during SA is passed through the pool water in the suppression chamber to move FPs into the pool water and prevent them from being released into the ...
Sasuke Kadoma   +3 more
openaire   +1 more source

Closures for the Bubble Size Distribution and Interfacial Area Concentration

2015
This chapter is devoted to the presentation of the closure laws for the interfacial area transport equation and other multi-size bubble models. Considering first the single size case, the different forms of the interfacial area transport equation are recalled and their closure laws are reviewed.
openaire   +1 more source

On thermodynamic closures for two-phase flow with interfacial area concentration transport equation

International Journal of Multiphase Flow, 2005
Abstract The present work is a part of a modelling of forest fires fighting by aerial means. In this paper, we study different kind of closures for modelling two-phase flows with an almost “infinite range” of scales. Since theories like homogenization are not, in this case, relevant for obtaining the equivalent medium equations, the averaging method ...
Olivier Séro-Guillaume, Nicolas Rimbert
openaire   +1 more source

Concentrated emulsions. Investigation of polydispersity and droplet distortion and their effect on volume fraction and interfacial area

Langmuir, 1990
Concentrated emulsions with 0.7 < φ < 0.9, where φ=volume fraction of internal phase, may be produced, in principle, through polydisperse packing of droplets and/or through distortion of the same. By use of an ideal fcc configuration, it is shown that a volume fraction as high as 0.89 may be achieved with spheres of three sizes.
Ashok K. Das, Pushpito K. Ghosh
openaire   +1 more source

Axial development of interfacial area and void concentration profiles measured by double-sensor probe method

International Journal of Heat and Mass Transfer, 1995
Abstract Interfacial area concentration is an important parameter in modeling the interfacial transfer terms in the two-fluid model. In this paper, the local geometric and statistical characteristics of upward co-current dispersed bubbly flow in a pipe have been studied both at the entrance ( L D = 8 ) and at a region far away from the entrance (
W.H. Leung   +3 more
openaire   +1 more source

Transport model of interfacial area concentration and its validation

Proceedings of Annual / Fall Meetings of Atomic Energy Society of Japan, 2011
KATAOKA, ISAO   +4 more
openaire   +1 more source

Measurement of Interfacial Area Concentration in a Liquid-Metal Two-Phase Flow

Proceedings of Annual / Fall Meetings of Atomic Energy Society of Japan, 2009
Saito, Yasushi   +3 more
openaire   +2 more sources

Unified two-component interfacial area concentration model for narrow channel two-phase flow

International Journal of Multiphase Flow, 2023
Yiang Yang, Jinbiao Xiong
exaly  

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