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Modelling horizontal gas-liquid flow using averaged bubble number density approach

机译:使用平均气泡数密度方法模拟水平气液流动

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摘要

In this study, the internal phase distributions of gas-liquid bubbly flow in a horizontal pipe have been predicted using the population balance model based on Average Bubble Number Density approach. Four flow conditions with average gas volume fraction ranging from 4.4% to 20% have been investigated. Predicted local radial distributions of void fraction, interfacial area concentration and gas velocity have been validated against the experimental data. In general, satisfactory agreements between predicted results and measured values have been achieved. For high superficial gas velocity, it has been ascertained that peak local void fraction of 0.7 with interfacial area concentration of 800 m-1 can be encountered near the top wall of the pipe. Some discrepancies have nonetheless been found between the numerical and experimental results at certain locations of the pipe. The insufficient resolution of the turbulent model in fully accommodating the strong turbulence in the current pipe orientation and the inclusion of additional interfacial force such as the prevalent bouncing force among bubbles remain some of the outstanding challenging issues need to be addressed in order to improve the prediction of horizontal gas-liquid bubbly flow.
机译:在这项研究中,已经使用基于平均气泡数密度方法的总体平衡模型预测了水平管中气液气泡流的内相分布。已经研究了四种平均气体体积分数在4.4%至20%范围内的流动条件。相对于实验数据已经验证了预测的局部空隙率,界面面积浓度和气体速度的局部径向分布。通常,已经在预测结果和测量值之间达成了令人满意的协议。对于较高的表观气体速度,已确定在管道的顶壁附近会遇到0.7的峰值局部空隙率,界面面积浓度为800 m-1。尽管如此,在管道的某些位置的数值和实验结果之间仍发现了一些差异。湍流模型的分辨率不足以完全适应当前管道方向上的强湍流,并且包括额外的界面力(例如气泡中普遍存在的弹跳力)仍然是一些突出的挑战性问题,需要加以改进才能改善预测结果水平的气液气泡流。

著录项

  • 作者

    Li C; Yeoh G; Cheung C; Tu J;

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  • 年度 2010
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