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Assessment of Nucleation Boiling Models and Improvement by the Chen Correlation for Two-fluid Model CFD

机译:对两种流体模型CFD的陈相关性评估成核沸腾模型及改进

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Accurate prediction of vapor generation due to wall nucleation boiling is important in boiling heat transfer systems such as nuclear reactors. In current studies, simulations were performed using the commercial three-dimensional (3-D) Computational Fluid Dynamics (CFD) code ANSYS CFX to compare the predictive capabilities of different bubble departure diameter models and departure frequency models for subcooled boiling flow. Six diameter models and seven frequency models, a total of 42 model combinations, were compared with data from four experimental conditions. The simulation results showed a large variation between different model combinations. There was no specific frequency model or diameter model which could consistently perform the best. Also, most of the results showed smaller void fraction than the experimental data near the heated wall as well as the bulk region. To improve, the Chen correlation was used in place of the bubble departure frequency model. The results showed void fraction predictions closer to experimental data.
机译:精确预测由于墙壁成核沸腾导致的蒸汽产生在沸腾的传热系统中是重要的,例如核反应堆。在目前的研究中,使用商业三维(3-D)计算流体动力学(CFD)代码ANSYS CFX进行仿真,以比较不同气泡偏离直径模型的预测能力和用于过脱机沸腾流的脱离频率模型。六种直径模型和七种频率型号,共有42种型号组合,与来自四个实验条件的数据进行比较。仿真结果显示了不同模型组合之间的巨大变化。没有特定的频率模型或直径模型,可以一致地表现最佳。而且,大多数结果表明比加热壁附近的实验数据以及散装区域的实验数据较小。为了改善,使用陈相关来代替泡沫脱离频率模型。结果显示了更接近实验数据的空隙分数预测。

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