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Robust synthesis of the pressure-swing distillation process under azeotropic feed composition disturbance—Study of the tetrahydrofuran/methanol system

机译:共沸进料组分扰动下变压蒸馏过程的鲁棒合成—四氢呋喃/甲醇体系研究

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摘要

Inferential control strategies on the basis of the temperature measurements in the separation process of the tetrahydrofuran/methanol azeotropic mixture using the pressure-swing distillation cannot guarantee the specification of the products. Accordingly, tetrahydrofuran mol% in the feed stream is assumed to be a Gaussian variable with known mean and standard deviation, and a stochastic mixed-integer nonlinear programming optimization framework is developed that is on the basis of the steady-state model of the plant. Proportional-integral controllers are implemented using the "Design Spec/Vary" utility in Aspen Plus and the optimization problem is formulated taking the set-points of the controllers together with the design parameters as decision variables. This leads to a closed-loop stochastic optimization problem in which unscented transform is used as the uncertainty propagation tool. The optimal solution shows mote robustness against the imposed feed composition disturbances and handles them more effectively while the desired purity of the products can be maintained.
机译:在使用变压蒸馏的四氢呋喃/甲醇共沸混合物的分离过程中,基于温度测量的推论控制策略无法保证产品的规格。因此,假定进料流中的四氢呋喃摩尔%是具有已知均值和标准差的高斯变量,并且在工厂稳态模型的基础上开发了随机混合整数非线性规划优化框架。使用Aspen Plus中的“ Design Spec / Vary”实用程序来实现比例积分控制器,并以控制器的设定点和设计参数作为决策变量来制定优化问题。这导致闭环随机优化问题,其中无味变换用作不确定性传播工具。最佳解决方案显示出对饲料成分造成的干扰的鲁棒性,并能更有效地处理它们,同时可以保持所需的产品纯度。

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