IDAES过程建模框架和模型库——过程模拟和优化的灵活性

Andrew Lee, Jaffer H. Ghouse, John C. Eslick, Carl D. Laird, John D. Siirola, Miguel A. Zamarripa, Dan Gunter, John H. Shinn, Alexander W. Dowling, Debangsu Bhattacharyya, Lorenz T. Biegler, Anthony P. Burgard, David C. Miller
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引用次数: 26

摘要

21世纪的能源系统和制造过程正变得越来越动态和相互关联,这需要新的能力来有效地建模和优化其设计和运营。这样的下一代计算工具必须利用最先进的优化技术,并能够快速融入新的进步。为了满足这些需求,我们开发了高级能源系统设计研究所(IDAES)集成平台,该平台建立在过程模拟器(模型库)和代数建模语言(高级求解器)的优势之上。本文具体介绍了IDAES核心建模框架(IDAES-CMF),并通过实例研究证明了该框架在解决过程优化问题中的应用。该框架提供的功能包括一个灵活、可修改、开源的平台,用于利用最先进的求解器和解决方案技术优化工艺流程图,动态单元运行模型和热物性模型的完全开放和可扩展库,以及在不确定性下对基于上层结构的概念设计和优化的集成支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The IDAES process modeling framework and model library—Flexibility for process simulation and optimization

Energy systems and manufacturing processes of the 21st century are becoming increasingly dynamic and interconnected, which require new capabilities to effectively model and optimize their design and operations. Such next generation computational tools must leverage state-of-the-art techniques in optimization and be able to rapidly incorporate new advances. To address these requirements, we have developed the Institute for the Design of Advanced Energy Systems (IDAES) Integrated Platform, which builds on the strengths of both process simulators (model libraries) and algebraic modeling languages (advanced solvers). This paper specifically presents the IDAES Core Modeling Framework (IDAES-CMF), along with a case study demonstrating the application of the framework to solve process optimization problems. Capabilities provided by this framework include a flexible, modifiable, open-source platform for optimization of process flowsheets utilizing state-of-the-art solvers and solution techniques, fully open and extensible libraries of dynamic unit operations models and thermophysical property models, and integrated support for superstructure-based conceptual design and optimization under uncertainty.

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