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CPFD simulation of solids residence time and back-mixing in CFB risers

机译:CFFD立管中固体停留时间和返混的CPFD模拟

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A Computational Particle Fluid Dynamics (CPFD) approach was applied to investigate the solids residence time distribution (RID) and back-mixing behavior in a circulating fluidized bed (CFB) riser. The comparison between the simulation results and the experimental data indicates that the CPFD method was capable to predict the hydrodynamics and solids mean residence time. It was found that the solids residence time exhibited a non-uniform distribution both in the axial and in the radial directions of the riser. Even in the dilute phase transport (DPT) regime, the predicted solids RTD curves had the feature of an early peak and an extended tail, indicating that the solids flow deviates from plug flow and exhibits back-mixing. The solids back-mixing mainly occurred in the lower part of the riser, which provided significant implications for the industrial applications of the CFB reactors since most of the chemical reactions and heat/mass transport processes occur at the lower part of the riser. It is important to minimize the solids back-mixing at the lower part of the riser for the industrial CFB applications like the FCC. (C) 2014 Elsevier B.V. All rights reserved.
机译:应用计算颗粒流体动力学(CPFD)方法研究循环流化床(CFB)立管中的固体停留时间分布(RID)和返混行为。仿真结果与实验数据的比较表明,CPFD方法能够预测流体动力学和固体平均停留时间。发现固体停留时间在立管的轴向和径向上均表现出不均匀的分布。即使在稀相输运(DPT)方案中,预测的固体RTD曲线也具有早期峰和尾部延长的特征,表明固体流偏离活塞流并表现出回混。固体返混主要发生在立管的下部,这对CFB反应器的工业应用产生了重要影响,因为大多数化学反应和热/质传输过程都发生在立管的下部。对于工业CFB应用(如FCC),最小化提升管下部的固体返混非常重要。 (C)2014 Elsevier B.V.保留所有权利。

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