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首页> 外文期刊>Chemical engineering journal >Influence of tube configuration on the gas-solid hydrodynamics of an internally circulating fluidized bed: A discrete element study
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Influence of tube configuration on the gas-solid hydrodynamics of an internally circulating fluidized bed: A discrete element study

机译:管结构对内部循环流化床气固流体动力学的影响:离散元素研究

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摘要

Three-dimensional modeling of the gas-solid flow in an internally circulating fluidized bed is conducted by means of the computational fluid dynamics combined with the discrete element method to explore the effect of the tube bundle on the gas-solid hydrodynamics of the system. Gas motion is resolved at the computational grid level, while solid motion is obtained in the Lagrangian view. The influences of tube bundle on the interaction of two chambers, the circulating and resident behaviors of solid phase are evaluated. Moreover, solid mixing behavior and tube erosion are discussed. The results show that the immersed tubes obviously enlarge the gas/solid velocity in the vicinity of the partition plate and lower the interaction intensity of the two chambers. Solid cycle time of the system with or without tubes processes a log-normal distribution. Furthermore, different resident behaviors of the solid phase can be obtained in the two chambers, and inserting the tube bundle in the reactor chamber enlarges the solid residence times of the two chambers. More tubes inserted into the bed enlarge both the cycle time and residence time of the solid phase. On the other hand, the presence of tube bundle enhances the solid mixing intensity. Finally, different erosion distributions appear around the circumferential positions of each tube, and the latent erosion pattern can be identified from the distribution of the time-averaged solid flux.
机译:通过计算流体动力学与离散元方法相结合,对内部循环流化床中的气固流动进行了三维建模,以探讨管束对系统气固流体动力学的影响。气体运动在计算网格级别解析,而固体运动在拉格朗日视图中获得。评估了管束对两个腔室相互作用,固相循环和驻留行为的影响。此外,讨论了固体混合行为和管腐蚀。结果表明,沉管显着增大了隔板附近的气固速度,降低了两个腔室的相互作用强度。带或不带管的系统的实心循环时间均呈对数正态分布。此外,可以在两个腔室中获得固相的不同停留行为,并且将管束插入反应器腔室中会增加两个腔室的固体停留时间。插入床中的更多管会增加固相的循环时间和停留时间。另一方面,管束的存在增强了固体混合强度。最后,在每个管的圆周位置周围会出现不同的腐蚀分布,并且可以从时间平均固体通量的分布中识别出潜在的腐蚀模式。

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