Article ID Journal Published Year Pages File Type
785016 International Journal of Non-Linear Mechanics 2011 8 Pages PDF
Abstract

This work discusses the development of a three-dimensional Eulerian–Lagrangian CFD model for a gas–liquid flow in a rectangular column. The model resolves the time-dependent, three-dimensional motion of small gas bubbles in a liquid to simulate the dynamic characteristics of the oscillating bubble plume. Our model incorporates drag, gravity, buoyancy, lift, pressure gradient and virtual mass forces acting on a bubble rising in a liquid, and accounts for two-way momentum coupling between the phases. We use MUSIG model that provides a framework in which the population balance method together with the break up and coalescence models can be incorporated into three-dimensional CFD calculations. We use turbulent flow to describe liquid flow field. The standard κ–ε of turbulence is selected for calculating the properties of turbulent flow. The effect of aspect ratio of the column on the flow pattern, liquid velocity and gas hold-up profiles is discussed.

► A three-dimensional Eulerian–Lagrangian CFD model for a gas–liquid flow in a rectangular column is discussed. ► The MUSIG model which the population balance method together with the break up and coalescence models is employed. ► The effect of aspect ratio of the column on the flow pattern, liquid velocity and gas hold-up profiles is discussed.

Related Topics
Physical Sciences and Engineering Engineering Mechanical Engineering
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