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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Numerical Investigation of the Effect of Impeller Design Parameters on the Performance of a Multiphase Baffle-Stirred Reactor
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Numerical Investigation of the Effect of Impeller Design Parameters on the Performance of a Multiphase Baffle-Stirred Reactor

机译:叶轮设计参数对多相折流板反应器性能影响的数值研究

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摘要

The turbulent gas-liquid flow field in an industrial 100-m~3 stirred tank was calculated by using computational fluid dynamics based on the finite-volume method. Turbulent effects were modeled with the shear stress transport model, and gas-liquid bubbly flow was modeled with the Eulerian-Eulerian approach using the Grace correlation for the drag force interphase momentum transfer. The relative motion between the rotating impeller and the stationary baffled tank was considered by using a multiple frames of reference algorithm. The effects of Rushton and pitched-blade impeller design parameters such as blade geometry, location, and pumping direction on the mixing performance were investigated. It was found that a combination of Rushton turbines with up-pumping pitched-blade turbines provides the best mixing performance in terms of gas holdup and interfacial area density. The approach outlined in this work is useful for performance optimization of biotechnology reactors, as typically found in fermentation processes.
机译:在有限体积法的基础上,采用计算流体力学方法,计算了工业100m〜3搅拌釜中的湍流场。用剪切应力传递模型对湍流效应进行建模,并使用格雷斯相关性通过拖曳力相间动量传递,使用欧拉-欧拉方法对气液气泡流进行建模。通过使用多个参考算法框架,考虑了旋转叶轮和固定挡板箱之间的相对运动。研究了Rushton和变桨叶轮设计参数(例如叶片几何形状,位置和泵送方向)对混合性能的影响。已经发现,就气体滞留率和界面面积密度而言,Rushton涡轮机与上泵斜桨涡轮机的组合可提供最佳的混合性能。这项工作中概述的方法可用于优化发酵工艺中常见的生物技术反应器的性能。

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