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CFD Simulation of Polydispersed Bubbly Two-Phase Flow around an Obstacle

机译:CFD仿真围绕障碍物多相流动

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摘要

This paper concerns the model of a polydispersed bubble population in the frame of an ensemble averaged two-phase flow formulation. The ability of the moment density approach to represent bubble population size distribution within a multi-dimensional CFD code based on the two-fluid model is studied. Two different methods describing the polydispersion are presented: (i) a moment density method, developed at IRSN, to model the bubble size distribution function and (ii) a population balance method considering several different velocity fields of the gaseous phase. The first method is implemented in the Neptune_CFD code, whereas the second method is implemented in the CFD code ANSYS/CFX. Both methods consider coalescence and breakup phenomena and momentum interphase transfers related to drag and lift forces. Air-water bubbly flows in a vertical pipe with obstacle of the TOPFLOW experiments series performed at FZD are then used as simulations test cases. The numerical results, obtained with Neptune_CFD and with ANSYS/CFX, allow attesting the validity of the approaches. Perspectives concerning the improvement of the models, their validation, as well as the extension of their applicability range are discussed.
机译:本文涉及在整体平均两相流动制剂的框架中的多分散泡沫群模型。研究了基于双流体模型的多维CFD码内代表泡沫群体分布的矩密度方法的能力。提出了两个不同的方法:(i)在IRSN开发的片刻密度方法,以模拟气泡尺寸分布功能和(ii)考虑到气相的几种不同速度场的群体平衡方法。第一种方法是在NEPTUNE_CFD码中实现的,而第二种方法是在CFD代码ANSYS / CFX中实现的。这两种方法都考虑了与阻力和升力相关的聚结和分类现象和动量间转移。然后使用在FZD执行的垂直管中的空气 - 水泡在垂直管中流动,然后用作模拟测试用例。使用Neptune_CFD和ANSYS / CFX获得的数值结果允许证明方法的有效性。讨论了有关改进模型,验证以及其适用性范围的透视。

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