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A new approach to entropy production minimization in diabatic distillation column with trays

机译:带塔盘的非绝热精馏塔中减少熵产的新方法

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摘要

Previous approach to direct numerical minimization of entropy production in diabatic distillation column in order to determine heat quantity to be exchanged at trays was based on temperatures on trays as control variables and it was applied only to simple binary columns. Also, previously developed theoretical models for determining optimal exchanged heat profile were determined only at such columns and while they were approximated they produced worse results than numerical minimum of entropy production. In this paper, as control variables for minimization, exchanged heat on the trays is used. It enables application to complex multicomponent diabatic columns. Ishii-Otto global method, based on model linearization and iterative solution by Newton-Raphson technique, is applied for solving column mathematical model. Needed thermodynamical properties for ideal systems are calculated using Lewis-Randall ideal solution model, and for non-ideal slightly polar systems they are calculated using Soave equation of state. Five direct methods are used for numerical optimization. Applied approach is successfully demonstrated at frequently used example of distillation of benzene and toluol mixture by using for these purposes specially written program. Simplex method appeared to be the most convenient optimization method for the considered problem.
机译:为了确定要在塔盘处交换的热量,直接控制非绝热蒸馏塔中熵产的数值最小化的先前方法是基于塔盘上的温度作为控制变量,并且仅应用于简单的二元塔。同样,先前开发的用于确定最佳交换热曲线的理论模型仅在此类色谱柱上确定,尽管近似,但产生的结果比熵产生的数值最小值差。在本文中,作为最小化的控制变量,使用了塔盘上的热交换。它可以应用于复杂的多组分非绝热色谱柱。基于模型线性化和牛顿-拉夫森技术迭代求解的Ishii-Otto全局方法用于求解列数学模型。使用Lewis-Randall理想解模型可以计算出理想系统所需的热力学性质,对于非理想的弱极性系统,则可以使用Soave状态方程来计算所需的热力学性质。有五种直接方法用于数值优化。为此目的,通过使用专门编写的程序,在常用的苯和甲苯混合物蒸馏实例中成功地证明了应用方法。单纯形法似乎是所考虑问题的最方便的优化方法。

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