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CFD modelling of polydispersed bubbly two-phase flow around an obstacle

机译:障碍物周围多分散气泡两相流的CFD建模

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A population balance model (the Inhomogeneous MUSIG model) has recently been developed in close cooperation between ANSYS-CFX and Forschungszentrum Dresden-Rossendorf and implemented into the CFD-Code CFX [Krepper, E., Lucas, D., Prasser, H.-M, 2005. On the modelling of bubbly flow in vertical pipes. Nucl. Eng. Des. 235, 597-611; Frank, T., Zwart, P.J., Shi, J.-M., Krepper, E., Rohde, U, 2005. Inhomogeneous MUSIG Model-a population balance approach for polydispersed bubbly flows, International Conference "Nuclear Energy for New Europe 2005", Bled, Slovenia, September 5-8, 2005; Krepper, E., Beyer, M., Frank, Th., Lucas, D., Prasser, H.-M., 2007. Application of a population balance approach for polydispersed bubbly flows, 6th Int. Conf. on Multiphase Flow Leipzig 2007, (paper 378)]. The current paper presents a brief description of the model principles. The capabilities of this model are discussed via the example of a bubbly flow around a half-moon shaped obstacle arranged in a 200 mm pipe. In applying the Inhomogeneous MUSIG approach, a deeper understanding of the flow structures is possible and the model allows effects of polydispersion to be investigated. For the complex flow around the obstacle, the general structure of the flow was well reproduced in the simulations. This test case demonstrates the complicated interplay between size dependent bubble migration and the effects of bubble coalescence and breakup on real flows. The closure models that characterize the bubble forces responsible for the simulation of bubble migration show agreement with the experimental observations. However, clear deviations occur for bubble coalescence and fragmentation. The models applied here, which describe bubble fragmentation and coalescence could be proved as a weakness in the validity of numerous CFD analyses of vertical upward two-phase pipe flow. Further work on this topic is under way.
机译:最近,在ANSYS-CFX和Forschungszentrum Dresden-Rossendorf之间的紧密合作下,开发了人口平衡模型(非均质MUSIG模型),并将其实施为CFD代码CFX [Krepper,E.,Lucas,D.,Prasser,H.- M,2005。关于垂直管道中气泡流的建模。核仁。德斯235,597-611; Frank,T.,Zwart,PJ,Shi,J.-M.,E. Krepper,E.,Rohde,U,2005。非均质MUSIG模型-多分散气泡流的人口平衡方法,国际会议“ 2005年新欧洲核能” ”,斯洛文尼亚布莱德,2005年9月5日至8日; Krepper,E.,Beyer,M.,Frank,Th。,Lucas,D.,Prasser,H.-M.,2007。《人口平衡方法在多分散气泡流中的应用》,第六版。 Conf。莱比锡多相流研究(2007年,论文378)]。本文对模型原理进行了简要描述。通过围绕布置在200 mm管道中的半月形障碍物的气泡流动的示例,讨论了该模型的功能。在应用非均质MUSIG方法时,可以对流动结构有更深入的了解,并且该模型可以研究多分散的影响。对于障碍物周围的复杂流,在模拟中很好地再现了流的一般结构。该测试案例展示了尺寸依赖性气泡迁移与气泡合并和破裂对实际流量的影响之间的复杂相互作用。表征气泡运动的气泡力的闭合模型与实验观察结果一致。但是,气泡合并和破碎会发生明显的偏差。此处应用的描述气泡破裂和聚结的模型可能被证明是对垂直向上两相管道流进行大量CFD分析有效性的弱点。关于该主题的进一步工作正在进行中。

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