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Computational study of particle packing process and fluid flow inside Polydisperse cylindrical particles fixed beds

机译:多分散圆柱颗粒内颗粒包装工艺和流体流动的计算研究固定床

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Cylindrical particles have been widely used in fixed bed reactors for their better mechanical strength by extrusion granulation. The size of cylindrical particle often varies each other in industrial application. How size distributions and packing rates of particles influence the packing structures and flow behaviors in fixed bed are still not clear. In present study, Discrete Element Method (DEM) was employed to simulate packing processes of cylindrical particles. The influences of particle size distributions and packing rates of particles on packing structures of fixed bed were investigated. Subsequently, local fluid flow behaviors and overall pressure drops inside fixed bed were studied in detail by Computational Fluid Dynamic (CFD). It can be found that the wider the size distributions are, the bigger the bed porosities are. Smaller packing rate of particles is beneficial to obtain denser packing beds. The radial porosity distribution is not uniform only near the wall region for wide size distributions. The local non-uniform flow exists and the average axial velocity shows similar distribution tendency with the local porosity. Pressure drops along the bed were obtained based on detailed flow simulations and compared with empirical correlations. The equation parameters were modified for smaller deviations based on the CFD results. The present study gives a detailed understanding of packing process for polydisperse cylindrical particles and the fluid behaviors inside fixed bed, which is very useful for guiding industrial reactor installation and reactor design. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过挤出造粒,圆柱形颗粒已广泛用于固定床反应器中的良好机械强度。圆柱形颗粒的尺寸通常在工业应用中彼此变化。粒子的尺寸分布和填充率如何影响固定床中的填料结构和流动性仍然不清楚。在本研究中,采用离散元法(DEM)来模拟圆柱形颗粒的包装过程。研究了粒度分布和颗粒包装率对固定床包装结构的影响。随后,通过计算流体动力学(CFD)详细研究了固定床内部的局部流体流动和整体压降。可以发现,宽大的分布较宽,床孔隙率越大。粒子的较小包装速率有利于获得更密集的包装床。径向孔隙率分布仅在宽尺寸分布附近靠近壁区域而均匀。存在局部不均匀流动,并且平均轴向速度显示出与局部孔隙率类似的分布趋势。基于详细的流量模拟获得沿床的压降,并与经验相关性相比。基于CFD结果修改了等式参数以进行较小的偏差。本研究详细了解多分散圆柱形颗粒的包装过程和固定床内的流体行为,这对于引导工业反应堆安装和反应堆设计非常有用。 (c)2019年Elsevier B.V.保留所有权利。

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