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Process analysis and optimization mapping through design of experiments and its application to a polymerization process

机译:通过实验设计进行过程分析和优化映射,并将其应用于聚合过程

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The technique of experimental design is used on an ethylene polymerization process model in order to map the feasible optimal region as preliminary information for process optimization. Through the use of this statistical tool, together with a detailed deterministic model validated with industrial data, it is possible to identify the most relevant variables to be considered as degrees of freedom for the optimization and also to acquire significant process knowledge, which is valuable not only for future explicit optimization but also for current operational practice. The responses evaluated by the experimental design approach include the objective function and the constraints of the optimization, which also consider the polymer properties. A Plackett-Burman design with 16 trials is first carried out in order to identify the most important inlet variables. This reduces the number of decision variables, hence the complexity of the optimization model. In order to carry out a deeper investigation of the process, complete factorial designs are further implemented. They provide valuable process knowledge because interaction effects, including highly non-linear interactions between the variables, are treated methodically and are easily observed.
机译:为了将可行的最佳区域作为工艺优化的初步信息,将实验设计技术用于乙烯聚合工艺模型。通过使用此统计工具,以及通过工业数据验证的详细确定性模型,可以确定最相关的变量,将其视为优化的自由度,并且还可以获得重要的过程知识,这对于不进行有价值的设计仅用于将来的显式优化,还用于当前的操作实践。通过实验设计方法评估的响应包括目标函数和优化约束,它们还考虑了聚合物的性能。首先进行Plackett-Burman设计并进行16次试验,以识别最重要的入口变量。这减少了决策变量的数量,因此减少了优化模型的复杂性。为了对过程进行更深入的研究,进一步实施了完整的析因设计。它们提供了有价值的过程知识,因为相互作用的影响(包括变量之间的高度非线性的相互作用)得到了系统地处理,很容易观察到。

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