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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Design of ring and spider type spargers for bubble column reactor: Experimental measurements and CFD simulation of flow and weeping
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Design of ring and spider type spargers for bubble column reactor: Experimental measurements and CFD simulation of flow and weeping

机译:鼓泡塔反应器的环形和星形蜘蛛喷射器设计:流动和渗流的实验测量和CFD模拟

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摘要

In case of low H/D ratio bubble columns, sparger design governs the performance of bubble column reactors. Therefore, a comprehensive study was undertaken for single ring spargers, multiple ring spargers and spiders covering a wide range of hole diameters (2-6 mm), ring diameter (0.4-1 m), number of holes (19-90), number of rings (1-4), number of arms (3-5) and arm length (0.4-1 m). The flow distribution and critical weep point velocity was related to geometric and operating parameters. CFD simulations (ANSYS CFX-10.0) have been performed for all these cases and very good agreement was observed between the CFD predictions and experimental values of pressure, hole velocity and the critical weep point velocity. A step-wise design procedure for all types of sparger is presented along with a worked example. Further a new sparger (Wheel type) is proposed which would be superior to the existing spargers.
机译:在低H / D比鼓泡塔的情况下,喷射器设计控制着鼓泡塔反应器的性能。因此,对单环喷射器,多环喷射器和星形轮进行了广泛的研究,其涵盖了大范围的孔直径(2-6 mm),环直径(0.4-1 m),孔数(19-90),数量环(1-4)的数量,臂数(3-5)和臂长(0.4-1 m)。流量分布和临界哭点速度与几何和操作参数有关。在所有这些情况下都进行了CFD模拟(ANSYS CFX-10.0),并且在CFD预测与压力,孔速度和临界哭点速度的实验值之间观察到非常好的一致性。给出了适用于所有类型喷头的分步设计过程,并提供了一个实例。此外,提出了一种新的喷头(轮式),该喷头将优于现有的喷头。

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