首页> 外文会议>International Conference on Computational Science(ICCS 2005) pt.3; 20050522-25; Atlanta, GA(US) >Multiscale Modelling of Bubbly Systems Using Wavelet-Based Mesh Adaptation
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Multiscale Modelling of Bubbly Systems Using Wavelet-Based Mesh Adaptation

机译:基于小波的网格自适应的气泡系统多尺度建模

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Since typical industrial-scale reactors may contain many millions of bubbles, the extension of direct free-surface modelling techniques to resolve every bubble in the vessel would require far more computational power than will be available. A more immediate solution is to couple macro-scale reactor models to micro-scale models of individual bubbles and collections of a small number of bubbles. In this paper, a micro-scale modelling technique was presented and tested on the situation of a single rising bubble. The micro-scale model was based on the Volume-of-Fluid (VOF) technique combined with a dynamic mesh adaptation based on wavelet analysis to ensure a sufficient resolution at the gas-liquid interfaces. The method was based on a multi-block parallel scheme with mesh adaptivity facilitated by wavelet analysis embedded into a commercial CFD package CFX. Examples of the performance of the scheme for a bubble rising problem are given.
机译:由于典型的工业规模反应堆可能包含数百万个气泡,因此直接自由表面建模技术的扩展(用于解析容器中的每个气泡)将需要比可用的计算能力大得多的计算能力。更为直接的解决方案是将宏观反应堆模型与单个气泡和少量气泡集合的微观模型耦合。本文提出了一种微尺度建模技术,并在单个上升气泡的情况下进行了测试。微观模型基于流体体积(VOF)技术,结合基于小波分析的动态网格自适应,以确保在气液界面处具有足够的分辨率。该方法基于具有网格自适应性的多块并行方案,该网格自适应性是通过将小波分析嵌入到商用CFD软件包CFX中来实现的。给出了针对气泡上升问题的方案的性能的示例。

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