Polymer reaction engineering: Modelling considerations for control studies

A. Penlidis, S.R. Ponnuswamy, C. Kiparissides , K.F. O'Driscoll
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引用次数: 35

Abstract

In polymer reaction engineering, mathematical models of varying complexity are employed to describe reactor behaviour and predict process performance under a variety of operating conditions. When process control is the final aim, it is very important to develop and use models that are simple in mathematical structure, yet capable of adequately describing the essential process characteristics.

In this paper we first derive a detailed mechanistic model for a batch solution polymerization of methyl methacrylate. Subsequently, we show how this complex model can be simplified using various assumptions and approximations. Five models of different levels of complexity are presented and examined for their suitability for process optimization and control applications. Model responses are discussed and compared in order to check whether the simplifications degrade the predictive capabilities of the original model.

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聚合物反应工程:控制研究的建模考虑
在聚合物反应工程中,不同复杂性的数学模型被用来描述反应器的行为和预测在各种操作条件下的过程性能。当过程控制是最终目标时,开发和使用数学结构简单,但能够充分描述基本过程特征的模型是非常重要的。本文首先推导了甲基丙烯酸甲酯间歇溶液聚合的详细机理模型。随后,我们展示了如何使用各种假设和近似来简化这个复杂的模型。提出了五种不同复杂程度的模型,并检查了它们对过程优化和控制应用的适用性。模型响应进行了讨论和比较,以检查简化是否降低了原始模型的预测能力。
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