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Application of a novel model for bubble-induced turbulence to bubbly flows in containers and vertical pipes

机译:一种新型模型在气泡诱导的湍流中的应用在容器和垂直管中的气泡流动

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The baseline model for the CFD-simulation of turbulent bubbly flows in the Euler-Euler framework was proposed several years ago. It defines a fixed set of closures including all constants to avoid case by case tuning and to have a basis for sustainable model development. The present paper extends the baseline model by improving the modelling of bubble-induced turbulence. The closure terms in the transport equations of the k-omega SST model are revisited and replaced with the model recently proposed by Ma et al. (Ma et al., 2017. Physical Review Fluids 2, 034301) which is based on an analysis of the turbulent kinetic energy budget obtained from direct numerical simulation data. Detailed validation results for various flow configurations with a wide range of gas and liquid volumetric fluxes are presented. In case of vertical pipe flow significant improvements in the predicted gas volume fraction and velocity profiles are obtained, especially in high gas volume fraction cases where bubble-induced turbulence is dominant. Simulations of other configurations, such as uniform and non-uniform bubble columns, show that the model of Ma et al. (2017) results in an also for these cases overall improvement. Therefore, the baseline model is now updated to include the new model for bubble-induced turbulence. (C) 2019 Elsevier Ltd. All rights reserved.
机译:几年前提出了欧拉 - 欧拉框架中湍流泡沫流动的CFD模拟基线模型。它定义了一组固定的封闭件,包括通过案例调整避免案例的所有常数,并具有可持续模型开发的基础。本文通过改善气泡诱导的湍流建模来扩展基线模型。 R-Omega SST模型的传输方程中的关闭术语被重新审视并用Ma等人提出的型号替换。 (Ma等,2017.物理回顾流体2,034301)基于从直接数值模拟数据获得的湍流动能预算的分析。提出了具有各种气体和液体体积通量的各种流动配置的详细验证结果。在垂直管道流动的情况下,获得预测气体体积分数和速度型材的显着改善,特别是在气泡诱导的湍流中的高气体体积分数壳体中。模拟其他配置,如均匀和非均匀的气泡柱,表明MA等人的模型。 (2017)将在这些案例中产生整体改进。因此,现在更新基线模型以包括用于气泡诱导的湍流的新模型。 (c)2019年elestvier有限公司保留所有权利。

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