Ramírez Juan, de Munck Martijn, Liu Zhitao, Rieder David Raphael, Baltussen Maike, Buist Kay, Kuipers Johannes A M Hans
Multiphase Reactors Group, Department of Chemical Engineering & Chemistry, Eindhoven University of Technology, Eindhoven, 5600 MB, The Netherlands.
Ind Eng Chem Res. 2023 May 30;62(45):18960-18972. doi: 10.1021/acs.iecr.3c00853. eCollection 2023 Nov 15.
Riser reactors are frequently applied in catalytic processes involving rapid catalyst deactivation. Typically heterogeneous flow structures prevail because of the clustering of particles, which impacts the quality of the gas-solid contact. This phenomenon results as a competition between fluid-particle interaction (i.e., drag) and particle-particle interaction (i.e., collisions). In this study, five drag force correlations were used in a combined computational fluid dynamics-discrete element method Immersed Boundary Model to predict the clustering. The simulation results were compared with experimental data obtained from a pseudo-2D riser in the fast fluidization regime. The clusters were detected on the basis of a core-wake approach using constant thresholds. Although good predictions for the global (solids volume fraction and mass flux) variables and cluster (spatial distribution, size, and number of clusters) variables were obtained with two of the approaches in most of the simulations, all the correlations show significant deviations in the onset of a pneumatic transport regime. However, the correlations of Felice (Int. J. Multiphase Flow1994, 20, 153-159) and Tang et al. [AIChE J.2015, 61 ( (2), ), 688-698] show the closest correspondence for the time-averaged quantities and the clustering behavior in the fast fluidization regime.
提升管反应器经常应用于涉及催化剂快速失活的催化过程。由于颗粒的聚集,通常存在非均相流动结构,这会影响气固接触的质量。这种现象是流体 - 颗粒相互作用(即曳力)和颗粒 - 颗粒相互作用(即碰撞)之间竞争的结果。在本研究中,在计算流体动力学 - 离散元法浸没边界模型中使用了五种曳力关联式来预测颗粒聚集。将模拟结果与在快速流化状态下从二维提升管获得的实验数据进行了比较。基于使用恒定阈值的核心 - 尾流方法检测团簇。尽管在大多数模拟中,其中两种方法对全局变量(固体体积分数和质量通量)和团簇变量(空间分布、尺寸和团簇数量)都有较好的预测,但所有关联式在气力输送状态开始时都显示出显著偏差。然而,费利斯(《国际多相流杂志》1994年,第20卷,第153 - 159页)和唐等人[《美国化学工程师学会杂志》2015年,第61卷(第2期),第688 - 698页]的关联式在快速流化状态下的时间平均量和聚集行为方面显示出最接近的对应关系。