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Integrated Design of Power- and Resource-Saving Chemical Processes and Process Control Systems:Strategy, Methods, and Application

机译:节省能源和资源的化学过程和过程控制系统的集成设计:策略,方法和应用

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摘要

A strategy for the integrated design of power- and resource-saving chemical processes and the systems controlling their operating conditions with uncertain input data on physicochemical and process parameters is formulated. A multistep iterative procedure for solving integrated design problems is developed. The procedure includes the generation of alternative chemical processes meeting the "rigid" and/or "soft" flexibility constraints and the choice of operating (control) actions, the synthesis of alternative systems for the automatic control of the operating conditions of the chemical process and the choice of the best control system, the pair-wise comparison of feasible automated integrated systems consisting of the chemical engineering process and its control system and the choice of the best integrated system using the criterion based on the power and resource savings and control quality by solving one- and/or two-stage stochastic optimization problems with rigid and/or soft constraints. An example integrated design of the flexible continuous synthesis of azo pigments with an automatic-control system for stabilizing the optimal static conditions is discussed.
机译:制定了一种省电和节约资源的化学过程的集成设计策略,以及用不确定的物理化学和过程参数输入数据控制其运行条件的系统。开发了解决集成设计问题的多步骤迭代过程。该程序包括满足“刚性”和/或“软”灵活性约束条件的替代化学过程的生成以及操作(控制)动作的选择,用于化学过程的操作条件自动控制的替代系统的综合和最佳控制系统的选择,由化学工程过程及其控制系统组成的可行的自动化集成系统的成对比较,以及基于功率和资源节省以及控制质量的标准,选择最佳集成系统解决具有刚性和/或软约束的一阶段和/或两阶段随机优化问题。讨论了使用稳定稳定的最佳静态条件的自动控制系统灵活连续合成偶氮颜料的示例集成设计。

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