Computational fluid dynamics - pbm modelling of gas-liquid two-phase flow in bubble column reactors with an improved breakup kernel accounting for bubble shape variations
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Date
Authors
Shi, W.
Li, G.
Yang, J.
Zong, Y.
Yang, X.
Journal Title
Journal ISSN
Volume Title
Publisher
HEFAT
Abstract
The breakup model developed by Luo and Svendsen (1993)
implemented into CFD modelling of gas-liquid two-phase
flows assumes that the bubble shapes are spherical. The
simulation results usually yield an unreliable prediction of the
break-up of very small bubbles. To the best knowledge of the
authors, incorporation of the bubble shape variation into the
break-up model has been rarely documented. The current study
intends to propose and implement an improved bubble breakup
model which accounts for variation of bubble shapes when
solving the population balance equations for CFD simulation of
gas-liquid two-phase flows in bubble columns.
Description
Papers presented at the 13th International Conference on Heat Transfer, Fluid Mechanics and Thermodynamics, Portoroz, Slovenia on 17-19 July 2017 .
Keywords
CFD-PBM modelling, Gas-liquid two-phase flow, Column reactors, Kernel accounting