首页> 外文会议>International Conference on Nuclear Engineering >CFD ANALYSIS OF S-GAMMA MODEL COUPLED WITH TWO-GROUP INTERFACIAL AREA TRANSPORT EQUATIONS AND AMUSIG MODEL FOR A LARGE DIAMETER PIPE
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CFD ANALYSIS OF S-GAMMA MODEL COUPLED WITH TWO-GROUP INTERFACIAL AREA TRANSPORT EQUATIONS AND AMUSIG MODEL FOR A LARGE DIAMETER PIPE

机译:S-GAMMA模型的CFD分析与大直径管的两组界面传输方程和Amusig模型

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This paper describes the modeling of flow regimes beyond bubbly flows in a large diameter channel considering polydispersity and bubble induced turbulence using the Eulerian two-fluid approach. A two-bubble-group approach with two-group interfacial area transport equations (lATEs) is used to demonstrate flow phenomena in a large diameter pipe. Source and sink terms for mass and momentum exchanges between the two groups of bubbles and for bubble coalescence and breakup mechanisms are implemented. For predicting particle size and its distribution, S-Gamma (Sγ) model is used. The Sy model with two-group lATEs are evaluated by comparing local distributions of void fractions and Sauter mean diameters with results of adaptive-multiple-size-group (AMUSIG) models and experimental dataset developed by Schlegel et al., (2012) for model validations. It shows that two-group IATEs with Sy model predict reasonably accurate flow characteristics of beyond bubbly flow regimes, but also show shortcomings in their accuracies predicting local distributions, which imply that further studies for modeling of interfacial force are needed.
机译:本文介绍了在考虑使用欧拉两种流体方法的多分散性和气泡诱导的湍流中的大直径通道中起泡流动的流动制度的建模。具有双组界面区域传输方程(LATES)的双气相组方法用于在大直径管道中展示流动现象。实现了两组气泡与气泡聚结和破碎机制之间的质量和势能交换的源头和下沉术语。为了预测粒度及其分布,使用S-Gamma(Sγ)模型。通过将空隙分数和燃烧器平均直径的局部分布与Schlegel等人开发的适应性多尺寸组(Amusig)模型和实验数据集进行评估,通过比较局部分布和燃烧器平均直径进行评估。(2012)为模型验证。它表明,具有SY模型的两组IATES预测超出气泡流动制度的合理准确的流动特性,但也显示出预测局部分布的准确性的缺点,这意味着需要进一步研究界面力的建模。

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