工业汽油加氢脱硫装置的模型预测控制

Berna Haktanir, M. Aygun, Dila Gokce Kuzu
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引用次数: 1

摘要

本研究回顾了土耳其石油精炼厂伊兹米特炼油厂汽油加氢脱硫装置模型预测控制器算法的设计与实现,该装置生产符合欧五标准的汽油。该装置有一个分离塔,其中分离进料的高辛烷值低硫部分和一个反应器部分,其中发生加氢脱硫。该工艺的主要缺点是在加氢脱硫过程中损失辛烷值。提出了一种优化两部分运行的控制方案。主要目标是严格控制产品硫浓度,同时尽量减少辛烷值损失。为了得到机组的经验模型,进行了动态试验。该模型用于控制器的设计。使用MPC实施前后六个月收集的数据进行效益分析。结果表明,降低了产品硫浓度的标准偏差,达到了本规范的高极限运行,并最大限度地减少了过度脱硫造成的辛烷值损失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model predictive control of an industrial gasoline hydrodesulphurization unit
This study reviews design and implementation of a model predictive controller algorithm to a gasoline hydrodesulphurization unit in Izmit Refinery, Turkish Petroleum Refineries Corporation which produce gasoline within Euro V specifications. The unit has a splitter column in which high octane low sulphur part of the feed is separated and a reactor part where hydrodesulphurization occurs. The main disadvantage of the process is to lose octane during hydrodesulphurization. A control scheme to optimize operation in both parts is proposed. The main objective is to control product sulphur concentration strictly while minimizing octane loss. In order to obtain an empirical model of the unit, dynamic tests are performed. The model derived is used in controller design. Benefit analysis is performed with six months of data collected before and after MPC implementation. According to the results, standard deviation in product sulphur concentration is decreased and close to high limit operation is achieved for this specification as well as octane loss due to over desulphurization is minimized.
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