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A hybrid CFD compartmentalization modeling framework for the scaleup of batch cooling crystallization processes

机译:用于扩大批量冷却结晶过程的混合CFD分区模型框架

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摘要

Crystallizer design is often hindered by the lack of scaleup rules, hydrodynamic information, and predictive crystallization modeling tools. A hybrid CFD compartmentalization batch cooling crystallizer model is proposed to take into account localized mixing, heat transfer, and fluid hydrodynamics, combined with key process engineering information obtained on a laboratory scale. The compartments were identified using CFD simulations based on the crystallizer geometry and operating conditions. The population, mass, concentration, and energy balance of each compartment is modeled separately as a well-mixed MSMPR unit with input and output streams. The software gPROMS ( Process Systems Enterprise Limited) is a process-modeling tool that can facilitate compartmental modeling and will be used for the prediction of the crystallization behavior upon scaleup.
机译:缺乏扩大规模的规则,流体动力信息和可预测的结晶建模工具常常阻碍了结晶器的设计。提出了一种混合CFD间隔化分批冷却结晶器模型,该模型考虑了局部混合,传热和流体流体动力学,并结合了实验室规模的关键工艺工程信息。根据结晶器的几何形状和操作条件,使用CFD模拟确定隔室。每个隔间的人口,质量,浓度和能量平衡分别建模为具有输入和输出流的混合良好的MSMPR单元。 gPROMS软件(Process Systems Enterprise Limited)是一个过程建模工具,可以方便进行隔室建模,并将用于按比例放大时的结晶行为预测。

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