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首页> 外文期刊>Revista de Chimie >The Reactor Size Influence on the Optimal Operating Setpoint Choice for a Fixed-Bed Multi-Tubular Catalytic Reactor
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The Reactor Size Influence on the Optimal Operating Setpoint Choice for a Fixed-Bed Multi-Tubular Catalytic Reactor

机译:反应器大小对固定床多管催化反应器的最佳操作设定值的选择影响

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Optimal operation of chemical reactors of high thermal sensitivity is a central engineering problem of very high current interest. One elegant alternative to choose the optimal setpoint when at least two contrary (opposite) objectives are considered is based on the so-called Pareto-optimal front technique. This paper exemplifies how to generate Pareto optimal operating policies when reactor productivity and safety objectives (expressed in probabilistic terms) are simultaneously considered in the presence of technological constraints, uncertainty in safety boundaries, and random fluctuations in control variables. Beside the operating control variables, one important design variable is the reactor pipe diameter because it is directly related to the reaction heat removal. This paper exemplifies the influence of this design variable on the setpoint choice when applying the Pareto-optimal front method with computing the runaway-boundaries by using the generalized sensitivity criterion of Morbidelli and Varma (MV-criterion). An example is provided for an industrial fixed-bed tubular reactor used for the catalytic oxidation of benzene to maleic anhydride (MA) in vapour phase.
机译:高热灵敏度的化学反应器的最佳运行是一种非常高的电流兴趣的中央工程问题。当考虑至少两个相反(相反)目标时,选择最佳设定值的一个优雅替代方案基于所谓的帕累托 - 最优前技术。本文举例说明了如何在电抗器生产率和安全目标(以概率术语表达)在存在技术限制,安全界限的不确定性以及控制变量中的随机波动时同时考虑时生成帕累托最佳操作策略。除了操作控制变量旁边,一个重要的设计变量是反应堆直径,因为它与反应热除去直接相关。本文通过使用Morbidelli和Varma(MV标准)的广义敏感标准应用帕累托 - 最佳前进方法在施加帕累托最优前进方法时,在设定点选择时,本文举例说明了这种设计变量的影响。用于工业固定床管式反应器提供了一个例子,用于在气相中催化苯到马来酸酐(MA)的催化氧化。

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