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A more efficient simulator of particle size distribution in slurry phase polyolefin systems

机译:淤浆相聚烯烃系统中粒度分布更有效的模拟器

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摘要

The Segregation Approach is used as an alternative to Population Balance Modelling (PBM) to predict particle size distributions in olefin polymerisation reactors. The Segregation Approach affords simpler for mulation, more explicit integration of mixing characteristics, particle growth and initial size distribution, and easier extension to unsteady-state conditions and complex kinetics. The evolution of a non-uniformly sized feed of catalyst particles in a polymer reactor system is simu lated. While the two approaches yield identical predictions of the particle size distribution, in terms of computation time the Segregation model (0.09-1.7 s) far outperforms the PBM (1.8-6.2 s). This is because the sets of differential equations required by the PBM are avoided by the Segregation Approach. Based on this result, the Segregation model is described in the context of developing a model which can be used for the real-time model-based control and grade transition trajectory optimisation of olefin polymerisation processes.
机译:分离法是人口平衡模型(PBM)的替代方法,用于预测烯烃聚合反应器中的粒度分布。分离法提供了更简单的模拟,混合特性,颗粒生长和初始尺寸分布的更明确集成,以及更容易扩展到非稳态条件和复杂的动力学。模拟了聚合物反应器系统中催化剂颗粒进料不均匀的情况。尽管两种方法对粒度分布的预测相同,但在计算时间方面,偏析模型(0.09-1.7 s)远远优于PBM(1.8-6.2 s)。这是因为隔离方法避免了PBM所需的微分方程组。基于此结果,在开发模型的上下文中描述了分离模型,该模型可用于烯烃聚合过程的基于实时模型的控制和梯度过渡轨迹优化。

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