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An equation-oriented approach for handling thermodynamics based on cubic equation of state in process optimization

机译:过程优化中基于立方状态方程的面向方程的热力学处理方法

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摘要

This paper deals with handling of the cubic equation of state (CEOS) in equation-oriented (EO) process optimization. The roots of the CEOS are generally computed by subroutine-based calculations that involve logical if-else conditions. This approach can lead to nonsmoothness and convergence issues when used with gradient-based solvers in an EO framework. In this work, we propose a new general EO approach for selecting the appropriate root of the CEOS by incorporating derivative constraints specific to the desired (vapor or liquid) phase. We prove that these constraints are capable of isolating the liquid, middle and vapor root. The derivative constraints are tested using the EO phase-equilibrium formulation of Copal and Biegler (1999) which is suitably extended for handling CEOS and relaxing the derivative constraints in the event of disappearance of phases. Using numerical examples involving simulation of flash vessels and optimization of distillation column, it is demonstrated that the proposed EO formulation always selects the appropriate roots, handles missing phases on distillation trays and flash units, and is fairly robust to different starting points in the phase envelopes.
机译:本文处理面向方程式(EO)的过程优化中的状态立方方程(CEOS)的处理。 CEOS的根通常通过涉及逻辑if-else条件的基于子例程的计算来计算。在EO框架中与基于梯度的求解器一起使用时,此方法可能导致不平滑和收敛问题。在这项工作中,我们提出了一种新的通用EO方法,通过结合特定于所需(汽相或液相)相的导数约束来选择CEOS的适当根。我们证明了这些约束条件能够隔离液体根,中间根和蒸气根。使用Copal和Biegler(1999)的EO相平衡公式测试了微分约束,该公式适用于扩展CEOS并在相消失时放松微分约束。使用涉及闪蒸容器模拟和蒸馏塔优化的数值示例,证明了所提出的EO配方始终选择合适的根,处理蒸馏塔板和闪蒸装置中缺失的相,并且对于相包络中的不同起点具有相当强的鲁棒性。

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