热耦合精馏塔的建模、仿真和热优化

F. Safari, A. Mehrabani-Zeinabad
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引用次数: 0

摘要

精馏是化工、石化工业中应用最广泛、能耗最大的分离装置之一。热耦合精馏塔的热集成是降低能耗的方法之一。从能耗的角度比较了两种直接配置的简单精馏塔和直接顺序后向积分配置的热耦合精馏塔对三元混合物分离的影响。利用质能守恒定律和气泡点法,建立数学模型,研究了一、二塔塔板数量变化对各塔加热和冷却速率的影响。某些托盘的计算温度与工业温度的平均相对误差约为0.74%。高压塔的冷凝器负荷约为9.73×109 kJ/h,为低压塔提供加热。仿真结果表明,采用热耦合结构可节能50%左右。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling, Simulation, and Thermally Optimization of Thermally-Coupled Distillation Columns
Distillation is one of the most widely used separation units that consumes the largest amount of energy in chemical and petrochemical industries. Heat integration of thermally coupled distillation column is one of the methods to reduce energy-consumption. This paper provides a comparison between two simple columns with direct configuration and thermally coupled distillation column with direct sequence backward integration arrangement for separation of a ternary mixture based on energy-consumption. The influence of changing numbers of first and second column trays on heating and cooling rate of each column are investigated based on a developed mathematical model using conservation law of mass and energy and bubble-point method. The average relative error between calculated and industrial temperatures in some trays is about 0.74%. The condenser duty of high pressure column is about 9.73×109 kJ/h to provide heating of low pressure column. According to the simulation results, the thermally coupled construction saves energy about 50% more.
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