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Model based simulation and optimization of industrial tubular reactors for high pressure low density polyethylene production

机译:基于模型的高压低密度聚乙烯生产工业管式反应器的仿真与优化

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In this study, a comprehensive model of an industrial low-density polyethylene (LDPE) tubular reactor is presented. Parameter values used in this model are tuned using industrial data on the reactor temperature profile, the monomer conversion and the molecular characteristics at the end of the reactor. A good agreement between the model and industrial data is obtained. In the later section, a systematic procedure is developed to perform optimization study using the model that has been developed. The objective function used in the present study is the minimization of the reactor length. The reactor temperature is constrained to lie below a safe value and an equal end-point constraint is implemented in the outlet of each cooling zone. The results of this research show that, in principle, the overall length of LDPE's can be minimized without disrupting the profile temperature through a proper manipulation of the control variable.
机译:在该研究中,提出了一种工业低密度聚乙烯(LDPE)管式反应器的综合模型。使用在反应器温度曲线上的工业数据,单体转化和反应器末端的分子特性进行调整该模型中使用的参数值。获得模型与工业数据之间的良好一致性。在后面的部分中,开发了一种系统的程序,以使用已经开发的模型进行了优化研究。本研究中使用的目标函数是反应器长度的最小化。反应器温度被约束以低于安全值,并且在每个冷却区的出口中实现了相等的终点约束。本研究结果表明,原则上,LDPE的总长度可以通过通过对照变量的适当操纵来最小化而不会破坏轮廓温度。

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