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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 >Effects of the riser exit geometries on the hydrodynamics and solids back-mixing in CFB risers: 3D simulation using CPFD approach
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Effects of the riser exit geometries on the hydrodynamics and solids back-mixing in CFB risers: 3D simulation using CPFD approach

机译:立管出口几何形状对CFB立管中流体动力学和固体回混的影响:使用CPFD方法的3D模拟

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摘要

With the Computational Particle Fluid Dynamic (CPFD), which is based on the scheme of Multi-Phase Particle-In-Cell (MP-PIC), the present work studied the flow hydrodynamics and solids back-mixing behaviors in the riser with smooth and abrupt exit geometries. It was found that the flow hydrodynamics and solids back-mixing behaviors are quite different in the riser with different exit geometries. While particles can uniformly flow out of the riser with smooth exits with relatively lower residence time, part of the particles tend to be reflected back into the riser with abrupt exits. Different mechanisms were proposed to explain the distinct solids back-mixing behaviors in the riser with smooth and abrupt exit geometries. The moderate solids back-mixing in the riser with smooth exits is mainly due to the dynamic formation and dissolution of particle meso-scale structures/particle-clusters at the bottom part of the riser, while the intense solids back-mixing in the riser with abrupt exit geometries is the combined results of the particle downward flow from the riser top and the dynamic formation and dissolution of particle meso-scale structures at the riser bottom. The present work implied that the riser exit geometry should be carefully specified in the modeling study of the CFB riser. (C) 2015 Elsevier B.V. All rights reserved.
机译:借助基于多相单元格内颗粒计算(MP-PIC)方案的计算颗粒流体动力学(CPFD),本研究研究了具有光滑且均匀的立管中的流动流体动力学和固体反混特性。突然的出口几何形状。结果发现,在具有不同出口几何形状的立管中,流动流体动力学和固体反混行为是完全不同的。尽管颗粒可以以相对较短的停留时间以平滑的出口均匀地流出提升管,但部分颗粒倾向于以突然的出口反射回到提升管中。提出了不同的机制来解释立管中具有平滑突然出口几何形状的独特固体回混行为。提升管中有适度出口的中等固体回混主要是由于在提升管底部动态形成和溶解了颗粒中尺度结构/颗粒团,而提升管中强烈的固体回混则是由于突然的出口几何形状是颗粒从立管顶部向下流动以及立管底部颗粒中尺度结构动态形成和溶解的综合结果。本工作暗示在CFB立管的建模研究中应仔细指定立管出口的几何形状。 (C)2015 Elsevier B.V.保留所有权利。

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