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A Comparative Study of Turbulence Models for Two-Phase Coaxial Swirling Jet Flows

机译:两相同轴旋流流动湍流模型的比较研究

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This study assesses different turbulence modeling approaches for simulation of two-phase coaxial annular swirling jet flows. The problem selected from literature involves an analytical inlet profile for an annular liquid sheet sandwiched between two coaxial annular gaseous jets. The liquid-gas interface is resolved using the volume-of-fluid (VOF) model with continuum surface force approximation. 3D unsteady Reynolds averaged Navier-Stokes simulations using up to 8.4 million grid cells and 64 HPC cores are conducted using the Fluent 17.2 software to obtain transient multiphase CFD data for this problem. Different turbulence models explored include the k-epsilon RNG with swirl modification, the Reynolds stress model (RSM), and RSM with scale adaptive simulations (RSM-SAS). Comparisons with the direct numerical results from literature suggest that the scale-adaptive simulation using RSM-SAS approach better predicts the onset of instability, liquid jet column collapse, jet mixing, vortex breakup, and the overall characteristics of this flow.
机译:该研究评估了用于模拟两相同轴环形旋流喷射流动的不同湍流建模方法。从文献中选择的问题涉及用于夹在两个同轴环形气动喷射之间的环形液体片的分析入口轮廓。使用具有连续表面力近似的流体体积(VOF)模型来解决液体气体界面。 3D不稳定雷诺斯平均使用高达840万个网格单元的Navier-Stokes模拟,使用Fluent 17.2软件进行64个HPC核心,以获得此问题的瞬态多相CFD数据。探索的不同湍流模型包括带旋流修改的K-EPSILON RNG,雷诺应力模型(RSM)和RSM,具有比例自适应模拟(RSM-SAS)。与文献中的直接数值结果的比较表明,使用RSM-SAS方法的刻度自适应模拟更好地预测不稳定,液体喷射柱塌陷,喷射混合,涡流分解以及该流动的整体特征。

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