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Integration of modular process simulators under the Generalized Disjunctive Programming framework for the structural flowsheet optimization

机译:在通用分离编程框架下集成模块化过程仿真器,以优化结构流程图

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摘要

The optimization of chemical processes where the flowsheet topology is not kept fixed is a challenging discrete-continuous optimization problem. Usually, this task has been performed through equation based models. This approach presents several problems, as tedious and complicated component properties estimation or the handling of huge problems (with thousands of equations and variables). We propose a GDP approach as an alternative to the MINLP models coupled with a flowsheet program. The novelty of this approach relies on using a commercial modular process simulator where the superstructure is drawn directly on the graphical use interface of the simulator. This methodology takes advantage of modular process simulators (specially tailored numerical methods, reliability, and robustness) and the flexibility of the GDP formulation for the modeling and solution. The optimization tool proposed is successfully applied to the synthesis of a methanol plant where different alternatives are available for the streams, equipment and process conditions.
机译:流程拓扑不固定的化学过程的优化是一个挑战性的离散连续优化问题。通常,此任务已通过基于方程的模型执行。这种方法存在一些问题,例如繁琐而复杂的组件属性估计或处理巨大问题(具有成千上万的方程式和变量)。我们建议采用GDP方法替代MINLP模型并结合流程图程序。这种方法的新颖性在于使用商业模块化过程模拟器,其中上部结构直接绘制在模拟器的图形使用界面上。这种方法论利用了模块化过程仿真器(特别定制的数值方法,可靠性和鲁棒性)以及GDP公式化和建模方法的灵活性。所提出的优化工具已成功应用于甲醇工厂的合成,在甲醇工厂中,对于物流,设备和工艺条件有不同的替代方案。

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