Air-water vertical upward bubbly flows are simulated by combining the S-γ population balance approach with an Eulerian-Eulerian two-fluid model in order to improve our ability to predict bubbly flows and the evolution of the bubble size distribution. Improved agreement with experimental profiles of bubble diameter is achieved with the addition of an optimized coalescence model. Satisfactory agreement is also found using a Reynolds stress turbulence formulation, whose superior predictive capability to describe the turbulence field might be essential for the simulation of more complex flow conditions than considered herein. Finally, the use of two bubble classes, accounting separately for small spherical and larger cap bubbles, seems sufficie...
Two-fluid modeling approach is considered as one of the most practical and accurate macroscopic form...
International audienceThis paper concerns the model of a polydispersed bubble population in the fram...
In the computational modeling of two-phase flow, many uncertainties are usually faced in simulations...
Bubbly flow in U-bend is widely encountered in two-phase flow systems because of its compactness and...
In bubbly flows, the bubble size distribution dictates the interfacial area available for the interp...
To model the spatial evolution of the geometrical structure of the gas bubbles in isothermal vertica...
In this work the status of computational modeling of bubbly flows is reviewed. The theory of four di...
In this paper, modelling gas-liquid bubbly flows is achieved by the introduction of a population bal...
A computational fluid dynamic (CFD) model was developed with an improved source term based on previo...
Gas-liquid bubbly flows exist in many engineering processes. However, limitations in understanding p...
In this work, five population balance models are applied to the simulation of isothermal bubbly flow...
The subject of this paper is the CFD simulation of adiabatic bubbly air-water flows. The aim is to c...
Abstract In this work the status of computational modeling of bubbly flows is reviewed. The theory o...
In this article, we present a review of the state-of-the-art population balance modelling techniques...
Considerable attention has been concentrated on describing the temporal and spatial evolution of two...
Two-fluid modeling approach is considered as one of the most practical and accurate macroscopic form...
International audienceThis paper concerns the model of a polydispersed bubble population in the fram...
In the computational modeling of two-phase flow, many uncertainties are usually faced in simulations...
Bubbly flow in U-bend is widely encountered in two-phase flow systems because of its compactness and...
In bubbly flows, the bubble size distribution dictates the interfacial area available for the interp...
To model the spatial evolution of the geometrical structure of the gas bubbles in isothermal vertica...
In this work the status of computational modeling of bubbly flows is reviewed. The theory of four di...
In this paper, modelling gas-liquid bubbly flows is achieved by the introduction of a population bal...
A computational fluid dynamic (CFD) model was developed with an improved source term based on previo...
Gas-liquid bubbly flows exist in many engineering processes. However, limitations in understanding p...
In this work, five population balance models are applied to the simulation of isothermal bubbly flow...
The subject of this paper is the CFD simulation of adiabatic bubbly air-water flows. The aim is to c...
Abstract In this work the status of computational modeling of bubbly flows is reviewed. The theory o...
In this article, we present a review of the state-of-the-art population balance modelling techniques...
Considerable attention has been concentrated on describing the temporal and spatial evolution of two...
Two-fluid modeling approach is considered as one of the most practical and accurate macroscopic form...
International audienceThis paper concerns the model of a polydispersed bubble population in the fram...
In the computational modeling of two-phase flow, many uncertainties are usually faced in simulations...