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首页> 外文期刊>Journal of Engineering >Numerical Modelling of Two-Phase Flow in a Gas Separator Using the Eulerian–Lagrangian Flow Model
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Numerical Modelling of Two-Phase Flow in a Gas Separator Using the Eulerian–Lagrangian Flow Model

机译:欧拉拉格朗安流动模型气体分离器中两相流的数值模型

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Gravity-driven separators are broadly used in various engineering applications to remove particulate matters from gaseous fluids to meet legislation demands. This study represents a detailed numerical investigation of a two-phase cyclone separator using the Eulerian–Lagrangian gas flow method. The turbulence is modelled using the Reynolds stress model (RSM). The technique has successfully predicted the typical trends and variations seen in such gas separators with an average error of approximately 5.5%. Also, the computed results show a realistic agreement with the experimental measurements.
机译:引力驱动的分离器广泛用于各种工程应用中,以从气体流体上除去颗粒物质,以满足立法需求。 该研究代表了使用Eulerian-Lagrangian气体流法的两相旋风分离器的详细数值研究。 使用雷诺应力模型(RSM)建模湍流。 该技术已成功预测这种气体分离器中看到的典型趋势和变化,平均误差约为5.5%。 此外,计算结果表明了与实验测量的现实协议。

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