Computational Fluid Dynamics Simulation of a Fluid Catalytic Cracking Regenerator

Nazik Abdullahi M. Ahmed, Mustafa A. Mustafa, Ali M. Ali Seory
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Abstract

The aim of this study is to simulate a Fluid Catalytic Cracking (FCC) Regenerator, of a local refinery, using the Fluent Ansys.13 program and subsequently to investigate the impact of the change in geometry on the unit’s performance. Three different geometrical models of FCC Regenerator were simulated. The Solid Works program was used to build up the computational domain and the commercial CFD code Ansys-Fluent 13 was used for meshing, models setup and solving. Three cases were examined: base case with a single air inlet, case one with five air inlets, and case two with five air inlets, however with the catalyst inlet axis raised by 100%. The results showed that the carbon solid mass content (used to represent the coke) decreases from 0.39 to 0.23 in the base case and to 0.12 in case one and to 0.19 in case two for the regenerated catalyst. Case one resulted in a decrease in carbon content by 100%, with a carbon monoxide emission of 10ppm (the base case at a value of 200ppm) which increased in case two to 100ppm. Furthermore the impact of air mass flow rate in case one (best case) was investigated starting with a mass flow rate of 29.5kg/s. The flow rate was further increased by 100% and 200% which resulted in a carbon mass content of 0.092 and 0.08 respectively.
流体催化裂化再生器的计算流体动力学模拟
本研究的目的是使用Fluent Ansys.13程序模拟当地炼油厂的流体催化裂化(FCC)再生器,随后研究几何形状变化对装置性能的影响。对三种不同的FCC蓄热器几何模型进行了仿真。使用Solid Works程序建立计算域,使用商业CFD代码Ansys-Fluent 13进行网格划分、模型建立和求解。研究了三种情况:基本情况下有一个进气口,情况一有五个进气口,情况二有五个进气口,但催化剂进气口轴提高了100%。结果表明,再生催化剂的碳固体质量含量(用来表示焦炭)在基本情况下从0.39降至0.23,在情况一和情况二中分别降至0.12和0.19。情况一导致碳含量减少100%,一氧化碳排放量为10ppm(值为200ppm的基本情况),在情况二增加到100ppm。此外,从29.5kg/s的质量流量开始,研究了情况一(最佳情况)中空气质量流量的影响。进一步提高流量100%和200%,碳质量含量分别为0.092和0.08。
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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