Title of article
Numerical simulation of the gas–liquid flow in a laboratory scale bubble column Influence of bubble size distribution and non-drag forces
Author/Authors
Montes، Francisco J. نويسنده , , Galan، Miguel A. نويسنده , , Diaz، M. Elena نويسنده , , Iranzo، Alfredo نويسنده , , Cuadra، Daniel نويسنده , , Barbero، Ruben نويسنده ,
Issue Information
روزنامه با شماره پیاپی 2 سال 2008
Pages
17
From page
363
To page
379
Abstract
In the present work, a computational model based on an Eulerian–Eulerian approach was used for the simulation of the transient two-phase flow in a rectangular partially aerated bubble column. Superficial gas velocities (UG) ranging from 0.24 to 2.30 cm/s were used throughout both the experiments and the simulations. The calculated results were verified by comparing them with experimental data including measurements of gas hold-up, plume oscillation period (POP) and Sauter mean bubble diameter. The study shows the effect of mesh refinement, time-step and physical model selection, the latter regarding the role of bubble size distribution and non-drag forces, on the computational results. According to the results presented here, the representation of bubble populations using multiple size groups (MUSIG model) instead of a single group improves the prediction of the experimental parameters under study. Additionally, the results obtained after including the virtual mass force term do not differ considerably from those obtained including only the drag force. On the contrary, as a consequence of introducing the lift force term into the model, the gas hold-up is overestimated and a non-symmetric bubble plume oscillation appears, a fact that is not experimentally observed.
Keywords
SIMULATION , CFD , Gas–liquid flow , Coalescence , Break-up , Bubble column
Journal title
Chemical Engineering Journal
Serial Year
2008
Journal title
Chemical Engineering Journal
Record number
121235
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