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Hydrodynamic study of different configurations of sieve trays for a dividing wall column by using experimental and CFD methods

机译:用实验性和CFD方法对分隔壁柱不同配置的流体动力学研究

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During the last decades, process intensification has led to significant developments in chemical process engineering. Divided wall column (DWC) is intensified process equipment for reducing energy consumption and capital costs in distillation operations. In the present work, hydrodynamics of a 0.5 m in diameter sieve tray of DWC with several types of downcomers was studied experimentally and computational fluid dynamics (CFD) model was developed to predict the hydrodynamics of trays. Simulation results are in good agreement with the experimental data in terms of pressure drop and prediction of turbulence of the vapor-liquid mixture on the tray. Further, the pressure drop values were compared with the empirical correlations. Moreover, it was found that downcomer design plays a key role in the tray hydrodynamics.
机译:在过去的几十年中,流程强化导致化学工艺工程的显着发展。 分开的壁柱(DWC)是加强工艺设备,用于降低蒸馏操作中的能耗和资本成本。 在目前的工作中,研究了DWC直径筛托的流体动力学,采用了几种类型的降低者进行了实验,并开发了计算流体动力学(CFD)模型来预测托盘的流体动力学。 模拟结果与试验数据吻合良好,并在压力下降和托盘上蒸气液混合物的湍流预测。 此外,将压降值与经验相关性进行比较。 此外,发现降液管设计在托盘流体动力学中起着关键作用。

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