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Investigating the dynamic behaviour of fluidized bed spray granulation, processes applying numerical simulation tools

机译:研究流化床喷雾造粒的动力学行为,应用数值模拟工具的过程

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Particulate processes involve different kinetic processes such as formation of nuclei, their subsequent growth and breakage. In addition, external product classification can play a significant role. A reliable prediction and thorough understanding of potential sources for instability is not only of scientific interest but also an important issue for better process design and process control.The application of these nonlinear dynamics is concerned with fluidized bed spray granulation. Self-sustained oscillations may rise in processes with external product classification.Therefore, focus of this work is on process stability which can be influenced by classifying, milling and recycling of particles and by the production of internal and external seeds.First a brief introduction to the model is given, that couples the particle population state with thermodynamic-, fluiddynamic- and granulation process for a unit with non-classifying product discharge and a screening and milling unit in the seed recycle and builds the core of the software package AVA (R) FBSim (R), used for the experiments. (c) 2005 Elsevier Ltd. All rights reserved.
机译:颗粒过程涉及不同的动力学过程,例如核的形成,它们随后的生长和破裂。此外,外部产品分类也可以发挥重要作用。对不稳定性潜在来源的可靠预测和透彻理解不仅具有科学意义,而且对于更好地进行过程设计和过程控制也很重要。这些非线性动力学的应用涉及流化床喷雾造粒。在进行外部产品分类的过程中,自持振荡可能会上升,因此,这项工作的重点是过程稳定性,这可能受到颗粒的分类,研磨和回收以及内部和外部种子的产生的影响。给出了该模型,该模型将粒子种群状态与热力学,流体动力学和制粒过程相结合,以实现不分类产品排放的装置以及种子循环中的筛选和研磨装置,并构建了AVA(R )FBSim(R),用于实验。 (c)2005 Elsevier Ltd.保留所有权利。

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