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Computational Fluid Dynamics Modeling and Control of Phthalic Anhydride Synthesis in a Fixed-Bed Catalytic Reactor

机译:固定床催化反应器中邻苯二甲酸酐合成的计算流体动力学建模和控制

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This work focuses on computational fluid dynamics (CFD) modeling and control of a phthalic anhydride (PA) synthesis in a fixed-bed catalytic reactor. Specifically, a CFD model of a two-dimensional in space fixed-bed catalytic reactor is first developed in ANSYS Fluent with appropriate geometry characteristics and catalyst packing. Subsequently, to regulate the product yield of phthalic anhydride in the reactor outlet and avoid the formation of a hot-spot inside the reactor due to the exothermicity of the PA synthesis reaction, model predictive control is utilized to optimize the outer jacket temperature (manipulated variable) via a data-driven model of the reactor constructed using CFD model data. To implement MPC in real-time within the dynamic CFD simulation of the fixed-bed catalytic reactor, a user-defined function (UDF) of ANSYS Fluent is employed to invoke an MPC solver outside of the CFD modeling environment to obtain the optimized manipulated inputs. The CFD simulation results demonstrate that under MPC, the outlet concentration of phthalic anhydride can be driven to its set-point while the temperature of inner reactor fluid remains below the maximum allowable temperature.
机译:这项工作的重点是在固定床催化反应器中计算流体动力学(CFD)建模和邻苯二甲酸酐(PA)合成的控制。具体而言,首先在ANSYS Fluent中开发了二维空间固定床催化反应器的CFD模型,该模型具有适当的几何特征和催化剂堆积。随后,为了调节反应器出口中邻苯二甲酸酐的产物收率,并避免由于PA合成反应放热而在反应器内部形成热点,利用模型预测控制来优化外套温度(控制变量)。 )通过使用CFD模型数据构建的反应堆的数据驱动模型进行分析。为了在固定床催化反应器的动态CFD模拟中实时实施MPC,ANSYS Fluent的用户定义函数(UDF)用于在CFD建模环境之外调用MPC求解器,以获得优化的操纵输入。 CFD仿真结果表明,在MPC下,邻苯二甲酸酐的出口浓度可以控制在其设定点,同时内部反应器流体的温度保持在最高允许温度以下。

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