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Experimental and CFD analysis of two-phase cross/countercurrent flow in the packed column with a novel internal

机译:新型内部填充塔两相交叉/逆流的实验和CFD分析

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摘要

The pressure drop and liquid hold-up for the G-L cross/counter-current flow in a packed column with a novel internal was simulated using a Eulerian/Eulerian two-fluid model solved by a commercial CFD software CFX4.4. Simulation results are in good agreement with the experimental data of pressure drop. The internal significantly increases the gas radial velocity and lower the gas axial velocity, which lowers the pressure drop and improves operational flexibility. To minimize bypass flow caused by the internal, optimum baffle thickness and width of the internal's passage are proposed. (c) 2005 Elsevier Ltd. All rights reserved.
机译:使用由商业CFD软件CFX4.4解决的Eulerian / Eulerian两流体模型,模拟了具有新型内件的填充柱中G-L交叉/逆流的压降和液体滞留率。仿真结果与压降实验数据吻合良好。内部部件显着提高了气体径向速度,降低了气体轴向速度,从而降低了压降并提高了操作灵活性。为了最小化由内部部件引起的旁通流量,提出了最佳的挡板厚度和内部通道的宽度。 (c)2005 Elsevier Ltd.保留所有权利。

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