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Simultaneous structural and operating optimization of process flowsheets combining process simulators and metaheuristic techniques: The case of solar-grade silicon process

机译:处理流程模拟器和型型技术的过程流程和型化技术的同时结构和运行优化:太阳能级硅工艺的情况

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This paper presents a new optimization approach for the simultaneous structural optimization of process flowsheets with the operating conditions through combining process simulators with metaheuristic techniques. The proposed approach allows optimization of a superstructure in process simulators and reduce the computation time. A superstructure for different configurations for producing solar-grade silicon is considered, which includes three different configurations for solar-grade silicon production (Siemens Process, Intensified FBR Union Carbide Process, and Hybrid Process). The operating conditions with major impact in the performance of each of the proposed configuration were considered as decision variables. The improved multi-objective differential evolution (I-MODE) algorithm was selected as search method from others metaheuristic techniques because its efficiency to solve multi-objective problems in a short central process unit (CPU) time. The optimization algorithm consists in linking the process simulator software Aspen Plus™ with the metaheuristic technique. The results offered attractive options for the considered objective functions in the addressed case study.
机译:本文通过将过程模拟器与成逐技术相结合,提出了一种新的优化方法,用于通过组合过程模拟器与运行条件进行操作条件。所提出的方法允许优化过程模拟器中的超结构并减少计算时间。考虑了用于产生太阳能级硅的不同配置的超结构,包括三种不同的太阳能级硅生产配置(西门子工艺,强化FBR Union碳化物过程和杂合过程)。在每个提出的配置的性能下具有主要影响的操作条件被认为是决策变量。选择改进的多目标差分演进(I-Mode)算法被选择为来自其他成式技术的搜索方法,因为其效率求解短中心过程单元(CPU)时间中的多目标问题。优化算法包括将过程模拟器软件ASPEN PLUS™与成群质技术联系起来。结果为所考虑的案例研究中考虑的目标职能提供了有吸引力的选择。

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