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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >CFD simulation of gas-solid two-phase flow and mixing in a FCC riser with feedstock injection
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CFD simulation of gas-solid two-phase flow and mixing in a FCC riser with feedstock injection

机译:注入原料的FCC立管中气固两相流动和混合的CFD模拟

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摘要

The feedstock injection zone is a key section for Fluid Catalytic Cracking riser reactor. A 3-D Computational Fluid Dynamics simulation is performed by coupling the two-fluid model and the energy-minimization multi-scale (EMMS) drag. The prediction agrees well with the available data and the secondary flow phenomenon is captured. The simulation reveals that the M-shape distributed feed sprays interact with the W-shape distributed solid particles and then cause the undesirable W-shape distribution of the matching ratio of catalysts to feed. The transformation of such uneven distribution to the finally core-annular distribution heavily depends on the secondary flow, whereas its mechanism can be explained by using the Kutta-joukowski lift theorem. The increase of the feed spray velocity facilitates the feed diffusion and reduces the transition region. However, excessively high jet velocity may intensify the back-mixing near the wall and causes intense attrition or breakage of catalysts and thereby an increase of costs. (C) 2015 Elsevier B.V. All rights reserved.
机译:原料注入区是流化催化裂化提升管反应器的关键部分。通过将双流体模型和能量最小化多尺度(EMMS)阻力耦合来执行3-D计算流体动力学仿真。该预测与可用数据非常吻合,并捕获了二次流动现象。模拟显示,M形分布的进料喷雾与W形分布的固体颗粒相互作用,然后导致催化剂与进料的匹配率出现不良的W形分布。这种不均匀分布到最终核心-环形分布的转换在很大程度上取决于二次流,而其机理可以通过使用Kutta-joukowski提升定理来解释。进料喷雾速度的增加促进了进料的扩散并减小了过渡区域。然而,过高的射流速度会加剧壁附近的返混,并引起催化剂的严重磨损或破裂,从而增加成本。 (C)2015 Elsevier B.V.保留所有权利。

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