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Modelling of Air Bubble Rising in Water and Polymeric Solution

机译:水和聚合溶液中气泡的建模

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This study investigates a Computational Fluid Dynamics (CFD) model for a single air bubble rising in water and xanthan gum solution. The bubble rise characteristics through the stagnant water and 0.05% xanthan gum solution in a vertical cylindrical column is modelled using the CFD code Fluent. Single air bubble rise dispersed into the continuous liquid phase has been considered and modelled for two different bubble sizes. Bubble velocity and voracity magnitudes were captured through a surface-tracking technique i.e. Volume of Fluid (VOF) method by solving a single set of momentum equations and tracking the volume fraction of each fluid throughout the domain. The simulated results of the bubble flow contours at two different heights of the cylindrical column were validated by the experimental results and literature data. The model developed is capable of predicting the entire flow characteristics of different sizes of bubble inside the liquid column.
机译:本研究研究了水和黄原胶溶液中的单个气泡的计算流体动力学(CFD)模型。使用CFD码流畅的稳定性圆柱柱中通过停滞水和0.05%黄原胶溶液的泡沫升高特性。已经考虑分散到连续液相中的单个气泡升高,并为两种不同的气泡尺寸进行建模。通过表面跟踪技术捕获气泡速度和旋流性幅度。通过求解一组动量方程并在整个域中跟踪每个流体的体积分数的流体(VOF)方法的体积。通过实验结果和文献数据验证了圆柱形柱的两个不同高度的气泡流量轮廓的模拟结果。该模型开发的能够预测液柱内不同尺寸的泡沫的整个流动特性。

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