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首页> 外文期刊>Chemical Engineering Science >A comparison of model order reduction techniques for a four-dimensional population balance model describing multi-component wet granulation processes
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A comparison of model order reduction techniques for a four-dimensional population balance model describing multi-component wet granulation processes

机译:描述多组分湿法制粒过程的四维人口平衡模型的模型降阶技术比较

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摘要

Three-dimensional (3-D) population balance equations are often used to model wet granulation processes, simulating distributions in particle size, liquid binder content, and porosity. In multi-component granulation, two or more solid components are present, and granule composition becomes a fourth distributed parameter. In this study, a four-dimensional (4-D) population balance model for multi-component wet granulation is presented and solved. Population balance models of high order are computationally expensive, limiting their applicability in analysis and design. The 4-D model was reduced to a combination of lower-dimensional models using the lumped parameter technique, in which one or more particle characteristics is assumed to be fixed within the remaining distributions. The reduced order models were compared with the full 4-D model for accuracy and computation time. Significant time savings were observed for all reduced order models. The 3-D model with gas volume as the lumped parameter showed the most promising results as an alternative to the 4-D model, which can be attributed to the limited influence of gas volume on aggregation and breakage rates.
机译:三维(3-D)人口平衡方程式通常用于对湿法制粒过程进行建模,以模拟粒度,液体粘合剂含量和孔隙率的分布。在多组分制粒中,存在两种或更多种固体组分,并且颗粒组成成为第四分布参数。在这项研究中,提出并解决了多维(4-D)多组分湿法制粒的种群平衡模型。高阶人口平衡模型的计算量很大,限制了它们在分析和设计中的适用性。使用集总参数技术将4-D模型简化为低维模型的组合,其中假定一个或多个粒子特征在其余分布中固定。将降阶模型与完整的4-D模型进行比较,以提高准确性和计算时间。对于所有减少订单的模型,都可以节省大量时间。将气体体积作为集总参数的3-D模型显示出最有希望的结果,作为4-D模型的替代方案,这可以归因于气体体积对聚集和破损率的有限影响。

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