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Dynamic simulation and control of two-series industrial reactors producing linear low-density polyethylene

机译:生产线性低密度聚乙烯的两系列工业反应器的动态模拟和控制

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One of the leading routes for producing polyolefins is through gas-phase catalytic fluidized bed reactors. In this study, the industrial gas-phase ethylene polymerization reactor series of Jam Petrochemical Company has been dynamically analyzed, modeled and controlled. The copolymerization of ethylene with 1-butene is defined on Zeigler–Natta catalyst, assuming a double active site mechanism. To serve this purpose, pseudo-kinetic rate constants and the method of moments have been employed. The proposed model is capable of predicting the unsteady-state behavior of each reactor in addition to the properties of the product such as melt flow index (MFI), dispersion index, and molecular weight distribution (MWD). The verification of the model has been conducted with plant data to prove the accuracy of the model-estimated MWD and MFI. The controllability of the process control configuration has been examined through analyzing the dynamic behavior of the process under conventional feedback PID controllers. It has been observed that the control structure delivers a convincing performance for disturbance rejection.
机译:生产聚烯烃的主要途径之一是通过气相催化流化床反应器。在这项研究中,对Jam石油化工公司的工业气相乙烯聚合反应器系列进行了动态分析,建模和控制。假设双重活性中心机制,则在Zeigler-Natta催化剂上定义了乙烯与1-丁烯的共聚。为了达到这个目的,已经采用了准运动速率常数和力矩方法。除了产物的特性(例如熔体流动指数(MFI),分散指数和分子量分布(MWD))之外,所提出的模型还能够预测每个反应器的非稳态行为。已使用工厂数据对模型进行了验证,以证明模型估计的MWD和MFI的准确性。通过分析常规反馈PID控制器下过程的动态行为,检查了过程控制配置的可控制性。已经观察到,控制结构具有令人信服的抗干扰性能。

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