首页> 外文会议>Italian Conference on Chemical and Process Engineering(ICheaP-6) vol.3; 20030608-11; Pisa(IT) >CFD Based Determination of Mixing Power of Beet Sugar Molasses - Water Mixture
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CFD Based Determination of Mixing Power of Beet Sugar Molasses - Water Mixture

机译:基于CFD的甜菜糖蜜糖浆-水混合物混合能力的测定。

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In the present paper, a computer-based determination of mixing power is shown for the case of mixing of sugar beet molasses - water mixture in a mixing vessel - homogenizer. The mixture behaves as a pseudoplastic non-Newtonian fluid, which can be described by the power law model. The investigation was limited to isothermal flow situation, therefore the governing set of equations representing fluid flow in the vessel consisted of mass and momentum conservation equations. For the solution of governing equations Computational Fluid Dynamics code CFX-Pro Mixus was used. With the aim of improving power demands of mixing in the homogenizer a computational analysis of influence of different stirrer types on power consumption was performed and it was experimentally verified for a chosen configuration. The difference in measured and computed power consumption was less than 6 % for a selected test case. As working stirrers disk turbine and pitched blade turbine were chosen. The influence of baffles in the homogenizer was also studied. The good agreement of computed and measured results presents a solid basis for the future research on temperature dependent non-Newtonian fluids.
机译:在本文中,显示了基于计算机的混合功率确定,用于将甜菜糖蜜-混合容器中的水混合物-均质器混合。该混合物表现为假塑性非牛顿流体,可以用幂律模型描述。研究仅限于等温流动情况,因此代表容器中流体流动的主导方程组由质量和动量守恒方程组成。对于控制方程的解,使用了计算流体动力学代码CFX-Pro Mixus。为了改善均质机中混合的功率需求,对不同搅拌器类型对功率消耗的影响进行了计算分析,并针对所选配置进行了实验验证。对于选定的测试案例,测量和计算的功耗差异小于6%。选择盘式涡轮机和斜叶片式涡轮机作为工作搅拌器。还研究了挡板在均质机中的影响。计算结果和测量结果的良好一致性为未来对温度相关的非牛顿流体的研究提供了坚实的基础。

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