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首页> 外文期刊>Journal of Process Control >Optimal design of dispersive tubular reactors at steady-state using optimal control theory
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Optimal design of dispersive tubular reactors at steady-state using optimal control theory

机译:基于最优控制理论的分散管式反应器稳态优化设计

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This paper studies the design of optimal temperature profiles for a class of exothermic, jacketed dispersive tubular reactors under steady-state conditions and subject to maximum temperature constraints. The studied class ranges from perfectly mixed continuous stirred tank reactors to plug flow reactors. The aim is to derive the Pareto optimal set of temperature profiles for conflicting conversion and energy costs, while extracting generic features from the obtained solutions. Hereto, a four step procedure which is based on a weighted sum of both costs and which combines indirect, analytical and direct, numerical optimal control techniques, is employed. The generic features are studied (i) along the Pareto set by varying the weights and (ii) along the reactor class by adapting the dispersion level.
机译:本文研究了在稳态条件下并受最大温度限制的一类放热夹套式分散管式反应器的最佳温度曲线设计。研究类别包括从完全混合的连续搅拌釜反应器到活塞流反应器。目的是在转换和能源成本相抵触的同时,导出帕累托最优温度曲线集,同时从获得的解决方案中提取通用特征。迄今为止,采用了基于两个成本的加权和并且结合了间接的,分析的和直接的数值最优控制技术的四步过程。 (i)通过改变权重沿着帕累托集研究通用特征,(ii)通过适应分散度沿着反应器类别研究通用特征。

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