三元系统中凝聚相平衡数据回归的GE模型和算法:限制和建议

A. M. Gomis, J. A. Reyes-Labarta, María Dolores Serrano Cayuelas, M. López
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引用次数: 35

摘要

相平衡数据回归是一项不可避免的任务,对于任何用于化工过程模拟和优化分离设备设计的模型,都必须获得适当的值。该过程的准确性取决于实验数据质量、选择的模型和计算算法等不同因素。本文总结了我们对现有ge模型的能力和局限性的研究结果和结论,以及相关算法中可以包含的提高收敛性和避免不一致性的策略。选择NRTL模型作为具有代表性的局部组合模型。本文指出了该模型的新功能,但也指出了一些相关的局限性,并讨论了一些应用修改后的NRTL方程的例子。此外,已经开发了一种回归算法,允许在恒定的T和p下对三元系统中存在的所有凝聚相平衡区域进行可取的同时回归。它包括旨在避免在相平衡计算的商业回归工具中经常发现的一些陷阱的特定策略。大多数提出的策略都是基于最低共切平面平衡准则的几何解释,这使得对混合物的行为有了明确的理解。本文的目的是将所有的工作作为一个整体来展示,以揭示为克服相平衡数据回归问题中仍然存在的困难而必须作出的必要努力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GE models and algorithms for condensed phase equilibrium data regression in ternary systems: limitations and proposals
Phase equilibrium data regression is an unavoidable task necessary to obtain the appropriate values for any model to be used in separation equipment design for chemical process simulation and optimization. The accuracy of this process depends on different factors such as the experimental data quality, the selected model and the calculation algorithm. The present paper summarizes the results and conclusions achieved in our research on the capabilities and limitations of the existing G E models and about strategies that can be included in the correlation algorithms to improve the convergence and avoid inconsistencies. The NRTL model has been selected as a representative local composition model. New capabilities of this model, but also several relevant limitations, have been identified and some examples of the application of a modified NRTL equation have been discussed. Furthermore, a regression algorithm has been developed that allows for the advisable simultaneous regression of all the condensed phase equilibrium regions that are present in ternary systems at constant T and P. It includes specific strategies designed to avoid some of the pitfalls frequently found in commercial regression tools for phase equilibrium calculations. Most of the proposed strategies are based on the geometrical interpretation of the lowest common tangent plane equilibrium criterion, which allows an unambiguous comprehension of the behavior of the mixtures. The paper aims to show all the work as a whole in order to reveal the necessary efforts that must be devoted to overcome the difficulties that still exist in the phase equilibrium data regression problem.
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