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A Computational fluid dynamics (CFD) comparison of 3-Lump and 4-Lump kinetic models for predicting gasoline, light gases and coke yield in fluid catalytic cracking (FCC) riser

机译:3块和4块动力学模型的计算流体动力学(CFD)比较,用于预测流化催化裂化(FCC)立管中的汽油,轻质气体和焦炭收率

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In this study a comparison of 3-lump and 4-lump kinetic models predicting the yield of gasoline, light gases and coke in FCC riser has been done. Commercial CFD software with K-epsilon turbulence model is used to investigate the reactions occurrence between fluid and solids in a fluidized bed. An important feature of this model is that its kinetics includes partial differential equations. This provides accurate predictions of product yields in the FCC riser. In this simulation different process variables such as temperature and feed rate are changed to investigate the effect on product yields. Time accurate transient problem is solved with the prediction of yield profiles of gas oil, gasoline, light gas and coke. The output curves demonstrate the breaking of heavy hydrocarbon in the presence of catalyst. An approach proposed in this study shows good agreement with the experimental and numerical data available in literature.
机译:在这项研究中,对3块和4块动力学模型进行了比较,预测了FCC立管中汽油,轻质气体和焦炭的收率。使用具有K-ε湍流模型的商业CFD软件来研究流化床中流体与固体之间的反应发生。该模型的重要特征是其动力学包括偏微分方程。这提供了FCC提升管中产品产量的准确预测。在此仿真中,更改了诸如温度和进料速度之类的不同过程变量,以研究对产品产量的影响。通过预测瓦斯油,汽油,轻汽油和焦炭的屈服曲线可以解决时间精确的瞬态问题。输出曲线表明在催化剂存在下重烃的分解。本研究中提出的方法与文献中提供的实验和数值数据显示出良好的一致性。

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