Larsen Michael Roland, Ottsen Tobias, Holmen Olofsson Erik Tomas, Spangenberg Jon
Department of Mechanical Engineering, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark.
Dansac A/S, 3480 Fredensborg, Denmark.
Polymers (Basel). 2023 Apr 19;15(8):1938. doi: 10.3390/polym15081938.
This paper presents a non-isothermal, non-Newtonian Computational Fluid Dynamics (CFD) model for the mixing of a highly viscous polymer suspension in a partially filled sigma blade mixer. The model accounts for viscous heating and the free surface of the suspension. The rheological model is found by calibration with experimental temperature measurements. Subsequently, the model is exploited to study the effect of applying heat both before and during mixing on the suspension's mixing quality. Two mixing indexes are used to evaluate the mixing condition, namely, the Ica Manas-Zlaczower dispersive index and Kramer's distributive index. Some fluctuations are observed in the predictions of the dispersive mixing index, which could be associated with the free surface of the suspension, thus indicating that this index might not be ideal for partially filled mixers. The Kramer index results are stable and indicate that the particles in the suspension can be well distributed. Interestingly, the results highlight that the speed at which the suspension becomes well distributed is almost independent of applying heat both before and during the process.
本文提出了一种非等温、非牛顿计算流体动力学(CFD)模型,用于模拟部分填充的西格玛叶片混合器中高粘性聚合物悬浮液的混合过程。该模型考虑了粘性加热和悬浮液的自由表面。通过与实验温度测量结果进行校准,确定了流变模型。随后,利用该模型研究了在混合前和混合过程中施加热量对悬浮液混合质量的影响。使用了两个混合指数来评估混合条件,即伊卡·马纳斯-兹拉乔弗分散指数和克莱默分布指数。在分散混合指数的预测中观察到一些波动,这可能与悬浮液的自由表面有关,因此表明该指数可能不适用于部分填充的混合器。克莱默指数的结果是稳定的,表明悬浮液中的颗粒可以很好地分布。有趣的是,结果突出表明,悬浮液达到良好分布的速度几乎与在该过程之前和过程中施加热量无关。