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Particle-induced flow reattachment in a diffuser

机译:扩散器中的颗粒诱导的流重新附着

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In this work, a numerical investigation on the gas-particle flow in a vertical diffuser is carried out. This study was motivated by the experimental work of Kale and Eaton, who noticed that the fully attached flow in a diffuser in the freeboard region of a particle bed would become detached if no particles were present. It was concluded at the time that this effect was not caused by the high inlet turbulence levels, but rather by the particles. With the goal to better understand the interactions between the particles and the fluid in a diffuser, simulations of a dilute particle-laden gas flow in a vertical diffuser are run using the Euler/Lagrange approach. The model, which includes interparticle collisions, the particle influence on the gas phase and wall roughness effects, is first validated based on experimental results from a horizontal channel and a vertical diffuser for both the continuous and dispersed phases at different mass loadings. Investigations on the effects of particles at different mass loadings and wall roughness on the diffuser flow are then carried out. It has been found that, even at moderate mass loadings, particles can significantly affect the diffuser flow pattern, and actually reattach the otherwise separated flow under some conditions. It has also been found that wall roughness plays a very important role in homogenizing the particle distribution at the diffuser section. The resulting more uniform concentration and velocity profiles can then reenergize the otherwise separated boundary layer and reattach it to the wall. The mechanism for the flow reattachment owing to the particle flow and the high wall roughness is investigated and an explanation is proposed.
机译:在这项工作中,对垂直扩散器中的气体颗粒流进行了数值研究。这项研究是由Kale和Eaton的实验工作推动的,他们注意到,如果不存在任何颗粒,则在颗粒床的干舷区域中的扩散器中完全附着的流动会分离。当时得出的结论是,这种影响不是由高入口湍流水平引起的,而是由颗粒引起的。为了更好地了解扩散器中的粒子与流体之间的相互作用,使用欧拉/拉格朗日方法对垂直扩散器中的载有稀粒子的气流进行了模拟。该模型包括颗粒间的碰撞,颗粒对气相的影响和壁面粗糙度的影响,首先基于水平通道和垂直扩散器在不同质量负载下连续相和分散相的实验结果进行了验证。然后,研究了不同质量负载下的颗粒和壁粗糙度对扩散器流量的影响。已经发现,即使在中等质量负载下,颗粒也可以显着影响扩散器的流型,并在某些条件下实际上重新附着否则分离的流。还发现壁粗糙度在使扩散器部分的颗粒分布均匀化中起着非常重要的作用。然后,所产生的更均匀的浓度和速度分布可以使原本分开的边界层重新通电,并将其重新附着到壁上。研究了由于颗粒流和高壁面粗糙度而引起的流重新附着的机理,并提出了解释。

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