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Computational Fluid Dynamic Simulation of Single and Two-Phase Vortex Flow-A Comparison of Flow Field and Energy Separation

机译:单相和两相涡流的计算流体动力学模拟-流场和能量分离的比较

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In the present work, a computational fluid dynamic (CFD) simulation has been performed to investigate single and two-phase vortex tube. Air in compressed form and partially condensed phase are used as working fluid, respectively. Simulation has been carried out using commercial CFD software package fluent 6.3.26. A detailed study has been performed to generate the profiles of velocity, pressure, and pathlines. These profiles provide an insight on how the process of energy separation as well as the flow field in the vortex tube gets affected on introduction of a liquid phase. The result shows that in case of cryogenic vortex tube, the flow reversal takes place closer to wall due to presence of a very thin wall adhering liquid film, while, in single-phase flow vortex tube, flow reversal is observed at the central portion. The model also predicts that presence of recirculation zone near warm end diminishes the refrigeration effect of vortex tube for two-phase flow.
机译:在目前的工作中,已经进行了计算流体动力学(CFD)仿真以研究单相和两相涡流管。压缩形式的空气和部分冷凝的空气分别用作工作流体。使用商用CFD软件包fluent 6.3.26进行了仿真。已经进行了详细的研究以生成速度,压力和路径线的轮廓。这些配置文件提供了有关在引入液相时能量分离过程以及涡流管中流场如何受到影响的见解。结果表明,在低温涡流管的情况下,由于存在非常薄的壁粘附液膜,流动逆转发生在靠近壁的地方,而在单相流动涡流管中,在中心部分观察到流动逆转。该模型还预测,靠近热端的再循环区的存在会降低涡流管两相流的制冷效果。

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