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Modeling, simulation and advanced control of methanol production from variable synthesis gas feed

机译:可变合成气进料甲醇生产的建模,模拟和高级控制

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A process relying on feedstock produced using a non-continuous energy source such as solar energy needs detailed understanding of the dynamics to define procedures for cycling and robust control design. In this work, methanol production from synthesis gas (or syngas) is studied. The syngas is (assumed to be) obtained from an intermittent upstream biomass-gasification process run by solar energy. Development of the methanol synthesis recycle-loop model is described in detail, along with several case studies performed using the steady-state and dynamic models for better understanding of the process behavior. A linear model predictive controller is designed to reject disturbances from a varying upstream syngas production process and track set point changes in the desired variables for methanol synthesis.
机译:依赖于使用非连续能源(例如太阳能)生产的原料的过程需要详细了解动力学,以定义循环程序和鲁棒的控制设计。在这项工作中,研究了由合成气(或合成气)生产甲醇的方法。合成气(假定是)是通过太阳能进行的间歇性上游生物质气化过程获得的。详细描述了甲醇合成再循环回路模型的开发,并使用稳态和动态模型进行了一些案例研究,以更好地了解过程行为。线性模型预测控制器设计用于拒绝来自变化的上游合成气生产工艺的干扰,并跟踪甲醇合成所需变量中的设定点变化。

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