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CFD simulation of liquid-phase mixing in solid-liquid stirred reactor

机译:固液搅拌反应器中液相混合的CFD模拟

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A comprehensive CFD model was developed to gain an insight into solid suspension and its implications on the liquid-phase mixing process in a solid-liquid stirred reactor. The turbulent solid-liquid flow in a stirred reactor was simulated using a two-fluid model with the standard k-epsilon. turbulence model with mixture properties. The multiple reference frames (MRFs) approach was used to simulate impeller rotation in a fully baffled reactor. The computational model with necessary sub-models was mapped on to a commercial solver FLUENT 6.2 (of Fluent Inc., USA). The predicted solid concentration distribution was compared with the experimental data of Yamazaki et al. [ 1986. Concentration profiles of solids suspended in a stirred tank. Powder Technology 48, 205-216]. The computational model was then further extended to simulate and understand the implications of the suspension quality on liquid-phase mixing process. The computational model and the predicted results discussed here will be useful for understanding the liquid-phase mixing process in stirred slurry reactors in various stages of solid suspension. (c) 2008 Elsevier Ltd. All rights reserved.
机译:开发了全面的CFD模型,以深入了解固体悬浮液及其对固液搅拌反应器中液相混合过程的影响。使用具有标准k-ε的双流体模型模拟了搅拌反应器中的湍流固液流动。具有混合特性的湍流模型。多参考框架(MRF)方法用于模拟全折流板反应器中的叶轮旋转。具有必要子模型的计算模型已映射到商用求解器FLUENT 6.2(美国Fluent Inc.)。将预测的固体浓度分布与Yamazaki等人的实验数据进行了比较。 [1986.悬浮在搅拌槽中的固体的浓度曲线。粉末技术48,205-216]。然后进一步扩展了计算模型,以模拟和理解悬浮液质量对液相混合过程的影响。本文讨论的计算模型和预测结果将有助于理解固体悬浮液各个阶段搅拌浆式反应器中的液相混合过程。 (c)2008 Elsevier Ltd.保留所有权利。

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