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CFD simulation of transient particle mixing in a high shear mixer

机译:高剪切混合机中瞬态颗粒混合的CFD模拟

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摘要

Particle mixing is one of the key operations in pharmaceutical processing. In this work, an Eulerian-Eulerian multiphase framework has been employed to model and simulate particulate flow and mixing behaviour in the blending of dry powders for inhalation. The kinetic theory of granular flow and the frictional stress model are used to close the transport equations of dense particulate flow in a high shear mixer. The transient mixing dynamics, including start-up, within the mixer are captured by adding a scalar transport equation as a tracer. The solid velocity profile at the wall is experimentally determined by using a high speed camera and particle image velocimetry (PIV) evaluation. The evolution of a tracer movement is experimentally tracked using an imaging technique that is processed in the Matlab image toolbox to obtain the local particle concentration. The model can capture the main features in granular flow motion, e.g. bed height and the dominating flow direction. The mixing mechanism is found to be a combination of azimuthal, axial and radial mixing at the same order of magnitude. Rapid mixing is captured in the simulation and is in agreement with experimental data. Even though the continuum-based model can predict well some flow features and the transient mixing time, there is a need for further development of the continuum description of dense particulate flows.
机译:颗粒混合是药物加工中的关键操作之一。在这项工作中,已采用欧拉-欧拉多相框架对吸入的干粉混合中的颗粒流动和混合行为进行建模和模拟。颗粒流动的动力学理论和摩擦应力模型被用来封闭高剪切混合器中的致密颗粒流动的输送方程。通过添加标量传输方程作为示踪剂,可以捕获混合器内包括启动在内的瞬态混合动力学。通过使用高速相机和粒子图像测速(PIV)评估,可以实验确定壁上的固体速度分布。使用成像技术对示踪剂运动的演变进行实验跟踪,该成像技术在Matlab图像工具箱中进行处理以获得局部粒子浓度。该模型可以捕获颗粒流动的主要特征,例如床高和主导流向。发现混合机制是相同数量级的方位,轴向和径向混合的组合。在模拟中捕获了快速混合,并且与实验数据一致。即使基于连续体的模型可以很好地预测某些流动特征和瞬态混合时间,也需要进一步发展稠密颗粒流的连续体描述。

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