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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Computational fluid-dynamics and experimental verification of two-phase two-dimensional flow on a sieve column tray
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Computational fluid-dynamics and experimental verification of two-phase two-dimensional flow on a sieve column tray

机译:筛塔塔板两相二维流动的计算流体力学和实验验证

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摘要

A modified two-fluid theoretical model is presented to describe the two-dimensional liquid phase flow on a sieve tray with consideration of the resistance created by uprising vapour, and solved numerically by the method of controlled volume. A sieve tray simulator is used for the experimental verification in which the local two-dimensional velocities of the liquid phase are measured by an improved technique using the hot film anemometer. The experimental results show that the liquid phase flow on a tray is substantially two-dimensional if the measurement is made more than 10 mm above from the tray floor, below which the flow is found to be three-dimensional. A comparison between the theoretical computations using the present model, the experimental results produced by the authors and those from the literature indicates that the proposed model gives a good prediction for the two-dimensional liquid phase flow on a tray under normal operation. Factors affecting the liquid phase circulating flow are discussed.
机译:提出了一种改进的双流体理论模型,该模型描述了筛板上的二维液相流动,并考虑了由上升蒸气产生的阻力,并通过控制体积的方法进行了数值求解。筛板模拟器用于实验验证,其中通过使用热膜风速计的改进技术来测量液相的局部二维速度。实验结果表明,如果在距托盘底部高出10毫米的位置进行测量,则托盘上的液相流动基本上是二维的,在该流动之下,流动是三维的。通过使用本模型的理论计算,作者产生的实验结果以及来自文献的实验结果之间的比较表明,所提出的模型对于正常操作下托盘上的二维液相流提供了良好的预测。讨论了影响液相循环流量的因素。

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