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NUMERICAL SIMULATION AND MIXING STUDY OF NON-NEWTONIAN FLUIDS IN AN INDUSTRIAL HELICAL STATIC MIXER

机译:工业螺旋搅拌机中非牛顿流体的数值模拟与混合研究

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Static mixers are increasingly being used to perform a variety of mixing tasks in industries, ranging from simple blending to complex multi-phase reaction systems. Use of static mixers to process non-Newtonian fluids is quite common. Data on the pressure drop of non-Newtonian fluids in static mixers and the degree of mixing of materials through the mixer are very useful in the design and engineering application of these tools. This paper extends a previous study by the authors on an industrial helical static mixer and illustrates how static mixing processes of single-phase viscous liquids can be simulated numerically. A further aim is to provide an improved understanding of the flow pattern of non-Newtonian single -phase liquids through the mixer. A three-dimensional finite volume simulation is used to Judy the performance of the mixer. The non-Newtonian fluid is modeled by the Carreau law model for the shear stress. The effects of the Reynolds number of the flow and also properties of non-Newtonian fluids on the static mixer performance have been studied. The flow velocities, pressure drops, etc. are calculated for various flow rates. The computed pressure drop is in good agreement with existing experimental data. A comparison of the mixer performance for both Newtonian and non-Newtonian fluids is presented. It is shown that for low Reynolds number flows, the fluid type is less effective on the degree of mixing, while as flow Reynolds number increases and the viscosity decreases, it manifests more influence on the downstream mixing. It is also shown that the fluid type has a major impact on the pressure drop across the mixer.
机译:静态混合器在工业中越来越多地用于执行各种混合任务,从简单的混合到复杂的多相反应系统。使用静态混合器处理非牛顿流体非常普遍。静态混合器中非牛顿流体的压降数据以及通过混合器的物料混合程度数据对于这些工具的设计和工程应用非常有用。本文扩展了作者先前对工业螺旋静态混合器的研究,并说明了如何通过数值模拟单相粘性液体的静态混合过程。另一个目的是提供对通过混合器的非​​牛顿单相液体的流动模式的更好的理解。使用三维有限体积模拟来评估混合器的性能。非牛顿流体是通过Carreau律模型为剪切应力建模的。研究了雷诺数和非牛顿流体的性质对静态混合器性能的影响。计算各种流速下的流速,压降等。计算得出的压降与现有的实验数据非常吻合。比较了牛顿流体和非牛顿流体的混合器性能。结果表明,对于低雷诺数流动,流体类型对混合度的影响较小,而随着流动雷诺数增加和粘度降低,对下游混合影响更大。还表明,流体类型对混合器上的压降有重大影响。

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