Modeling of the Hydrocracking Reactor by the CESE Method

Armin Hadianifar, A. Hallajisani, S. Zahedi
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Abstract

In this article, the improved space-time conservation element and solution element (CESE) method are used to simulate the dynamic treatment of the hydrocracking reactor. The dynamic model consists of four lumps: vacuum gas oil (VGO), middle distillate, naphtha, and gas which is dissolved by this method. The offered method can solve the partial differential equations caused by the reactions inside the hydrocracking reactor. In this study, both temperature and mole fraction variables are solved explicitly and simultaneously. In the CESE method, to obtain a suitable answer to the dynamic model, a CFL insensitive scheme was used which, for the CESE method to be stable, the CFL number should be less than 1. In this work, obtained results from the CESE method, in good agreement with the data industry. Outcomes illustrate that AAD% of the yield forecast for the middle distillate, naphtha, and gas are 3.33%, 2.56 %, and 6.47%, respectively. This method unlike other contractual numerical methods treats with space and time coordinates Similar.
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加氢裂化反应器的CESE方法建模
本文采用改进的时空守恒元和求解元(CESE)方法对加氢裂化反应器的动态处理过程进行了模拟。动态模型由真空气油、中间馏分油、石脑油和通过该方法溶解的气四大块组成。该方法可以求解由加氢裂化反应器内部反应引起的偏微分方程。在本研究中,温度变量和摩尔分数变量同时显式求解。在CESE方法中,为了得到动态模型的合适答案,采用了CFL不敏感方案,为了使CESE方法稳定,CFL数应小于1。在本工作中,得到了CESE方法的结果,与数据行业的结果一致。结果表明,中间馏分、石脑油和天然气的AAD预测产率分别为3.33%、2.56%和6.47%。该方法不同于其他契约式数值方法处理空间和时间坐标相似的问题。
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CiteScore
1.20
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0.00%
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0
审稿时长
8 weeks
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