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A non-equilibrium approach to model flash dynamics with interface transport

机译:用界面传输模拟闪存动力学的非平衡方法

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摘要

In this paper, we present a modeling framework for a class of multiphase chemical systems based on non-equilibrium thermodynamics. Compartmental modeling is used to establish the dynamic properties of liquid-vapor systems operating far from thermodynamic equilibrium. In addition to the bulk-phase molar/energetic dynamics, interface transport processes yield to algebraic constraints in the model description. The irreversible system is thus written as a system of differential-algebraic equations (DAEs). The non-equilibrium liquid-vapor DAE system is shown to be of index one. A local stability analysis for the model shows that the equilibrium state is unstable for non-isobaric operation regimes, whereas numerical evidence shows that isobaric operation regimes are stable. To extend the stability analysis, internal entropy production for the irreversible flash-drum is presented as a Lyapunov function candidate. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文介绍了基于非平衡热力学的一类多相化学系统的建模框架。 隔室建模用于建立远离热力学平衡的液体蒸汽系统的动态特性。 除了散装相摩尔/精力充沛的动态之外,在模型描述中,界面传输过程将在代数约束中加工到代数约束。 因此,不可逆系统被写为差分代数方程(DAES)的系统。 非平衡液 - 蒸汽DAE系统被示出为指数。 该模型的局部稳定性分析表明,对于非不同级操作制度,平衡状态对不稳定的状态不稳定,而数值证据表明同样的操作系统是稳定的。 为了扩展稳定性分析,不可逆闪光鼓的内部熵产生作为Lyapunov功能候选者。 (c)2019年elestvier有限公司保留所有权利。

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