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Modeling and simulation of high-pressure industrial autoclave polyethylene reactor

机译:高压工业高压聚乙烯反应器的建模与仿真

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摘要

High-pressure technology for polyethylene production has been widely used by industries around the world. A good model for the reactor fluid dynamics is essential to set the operating conditions of an autoclave reactor. The high-pressure autoclave reactor model developed in this work was based on a non-isothermal dynamic model, where PID control equations are used to maintain the operation at the unstable steady state. The kinetic mechanism to describe the polymerization rate and molecular weight averages are presented. The model is capable of computing temperature, concentration gradients and polymer characteristics. The model was validated for an existing industrial reactor and data for production of homopolymer polyethylene and has represented well the behavior of the autoclave reactor used in ethylene homopolymerization.
机译:用于聚乙烯生产的高压技术已被世界各地的工业广泛使用。一个好的反应堆流体动力学模型对于设定高压釜反应器的运行条件至关重要。在这项工作中开发的高压釜反应器模型是基于非等温动力学模型的,其中使用PID控制方程将操作维持在不稳定的稳态下。提出了描述聚合速率和分子量平均值的动力学机理。该模型能够计算温度,浓度梯度和聚合物特性。该模型已针对现有的工业反应器和用于生产均聚物聚乙烯的数据进行了验证,并且很好地体现了用于乙烯均聚的高压釜反应器的性能。

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