基于现象的构建模块和以结构筛选为特征的MINLP框架的基于优化的过程综合

IF 4.9 2区 工程技术 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS Computers & Chemical Engineering Pub Date : 2025-03-01 Epub Date: 2024-12-03 DOI:10.1016/j.compchemeng.2024.108955
David Krone , Erik Esche , Mirko Skiborowski , Jens-Uwe Repke
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引用次数: 0

摘要

将现有的基于优化的过程综合方法与基于抽象现象的构建块(PBB)进行了扩展,将其实现为具有结构筛选的新型MINLP框架。通过创建MathML/XML数据模型并随后将代码导出到不同的程序部分,可以保证多层MINLP框架之间的一致性。新框架通过实现热力学健全模型来关注保真度,并通过采用跨越大搜索空间的状态空间上层结构来关注通用性。为了保持可追溯性,我们插入了一个结构筛选层,该层通过基于图和规则的分析,基于上层结构的二元决策变量进行预筛选,惩罚没有底层MINLP解的非物理实例。MINLP框架成功地应用于两个具有挑战性的合成任务,以确定苯和甲苯的进料流的分离,以及利用两个(分别为四个)PBB的上部结构分离正戊烷、正己烷和正庚烷。
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Optimization-based process synthesis by phenomena-based building blocks and an MINLP framework featuring structural screening
An existing approach for optimization-based process synthesis with abstracted phenomena-based building blocks (PBB) is extended by implementing it into a novel MINLP framework with structural screening. Consistency across the multilayer MINLP framework is guaranteed by creating a MathML/XML data model and subsequently exporting the code to the different program parts. The novel framework focuses both on fidelity by implementing thermodynamically sound models and on generality by employing a state-space superstructure that spans a large search space. In order to retain tractability, we insert a structural screening layer which pre-screens based on binary decision variables of the superstructure by graph- and rule-based analyses, penalizing non-physical instances without solution of the underlying MINLP. The MINLP framework is successfully applied on two challenging synthesis tasks to determine the separation of the feed streams of benzene and toluene, as well as of n-pentane, n-hexane, and n-heptane utilizing superstructures with two, respectively four PBB.
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来源期刊
Computers & Chemical Engineering
Computers & Chemical Engineering 工程技术-工程:化工
CiteScore
8.70
自引率
14.00%
发文量
374
审稿时长
70 days
期刊介绍: Computers & Chemical Engineering is primarily a journal of record for new developments in the application of computing and systems technology to chemical engineering problems.
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