Optimization of Delayed Coker Unit Process Variables for Enhancement of Product Yields

Samy Mohamed, Mohamed Hassan
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引用次数: 0

Abstract

This study has been constructed using Aspen HYSYS ver.12.1 and regression analysis had been performed by MICROSOFT EXCEL 2010 to obtain a new correlations to predict the product yields from delayed coker unit with a wide applicable range of operating variables which is more reliable with refineries data and a simulation molding of delayed coker unit has been accomplished to maximize the gas oil yield for a refinery data by optimization of process variables. The findings from optimization by linear programming performed by MICROSFT OFFICE EXCEL 2010 indicated that gas oil yield could be increased by 4 wt% instead of coke byproduct by lowering the recycle ratio to 5% wt from fresh feed and increasing the heater outlet temperature to 510°C.Also the results showed that the change in coke drum pressure has a minimal effect in product yield. The outcome from the modified process conditions studied and a profit estimated at approximately 40 million dollar yearly.
优化延迟焦化装置工艺变量以提高产品产量
本研究使用 Aspen HYSYS ver.12.1 进行构建,并使用 MICROSOFT EXCEL 2010 进行回归分析,以获得新的相关性,从而预测延迟焦化装置的产品产量,其操作变量的适用范围很广,与炼油厂的数据相比更加可靠。使用 MICROSFT OFFICE EXCEL 2010 进行线性编程优化的结果表明,通过将新鲜进料的回收率降低到 5%,并将加热器出口温度提高到 510°C,气体油产量可提高 4%,而不是焦炭副产品。研究结果表明,修改工艺条件后,每年的利润估计约为 4000 万美元。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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