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CFD simulation of mixing in tall gas-liquid stirred vessel: Role of local flow patterns

机译:高气液搅拌容器内混合的CFD模拟:局部流型的作用

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摘要

In this work, we have used the computational fluid dynamics (CFD)-based models to investigate the gas-liquid flows generated by three down-pumping pitched blade turbines. A two-fluid model along with the standard k-epsilon turbulence model was used to simulate the dispersed gas-liquid flow in a stirred vessel. Appropriate drag corrections to account for bulk turbulence [Khopkar and Ranade, 2005. CFD simulation of gas-liquid flow in a stirred vessel: VC, S33 and L33 flow regimes. A.I.Ch.E. Journal, accepted for publication] were developed to correctly simulate different flow regimes. The computational snapshot approach was used to simulate impeller rotation and was implemented in the commercial CFD code, FLUENT4.5 (of Fluent. Inc., USA). The computational model has successfully captured the flow regimes as observed during experiments. The particle trajectory simulations were then carried out to examine the influence of the different flow regimes on the circulation time distribution. The model predictions were verified by comparing the predicted results with the experimental data of [Shewale and Pandit, 2006. Studies in multiple impeller agitated gas-liquid contactors. Chemical Engineering Science 61, 489-504]. The computational model and results discussed in this study would be useful for explaining the implications local flow patterns on the mixing process and extending the applications of CFD models for Simulating large multiphase stirred reactors. (c) 2005 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们使用了基于计算流体动力学(CFD)的模型来研究由三台下泵斜桨式涡轮机产生的气液流。使用双流体模型和标准k-ε湍流模型来模拟搅拌容器中分散的气液流动。适当的阻力修正以解决整体湍流[Khopkar和Ranade,2005年。CFD模拟搅拌容器中的气液流动:VC,S33和L33流动形式。 A.I.Ch.E.开发了可以接受出版的期刊],以正确模拟不同的流态。计算快照方法用于模拟叶轮旋转,并在商业CFD代码FLUENT4.5(美国Fluent。Inc.)中实现。计算模型已成功捕获了实验期间观察到的流动状态。然后进行了粒子轨迹模拟,以检验不同流动方式对循环时间分布的影响。通过将预测结果与[Shewale和Pandit,2006年的实验数据进行比较,从而验证了模型的预测。在多个叶轮搅拌式气液接触器中的研究。化学工程科学61,489-504]。本研究中讨论的计算模型和结果将有助于解释局部流型对混合过程的影响,并扩展CFD模型在模拟大型多相搅拌反应器中的应用。 (c)2005 Elsevier Ltd.保留所有权利。

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