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Effect of air agitation on the flow phenomena of draft tube precipitator

机译:空气搅拌对引流管除尘器流动现象的影响

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Industry scale draft tube precipitators (Agglomerators and Growth tanks), especially the taller aspect ratio (H/T ≥ 2) precipitator in alumina Bayer process have the task to uniformly suspend alumina hydrate particles with minimum power consumption.It is important to note that the overflow particle concentration will be uniform if particles are uniformly suspended in the entire precipitator volume else gradients in particle concentration may prevail in alumina precipitators.In industrial operational practice, it is supposed that the injected air from the bottom of the draft tube precipitator assists and enhances the hydrate particle suspension.In the present work, investigation has been made to analyze the flow phenomena in the taller aspect ratio design with and without air agitation.Also, the work depicts the role of draft tube slots on the overall flow pattern and hydrate particle suspension.In order to analyze and characterize the flow phenomena, computational fluid dynamics (CFD) modeling study has been used to investigate the flow and hydrate suspension behaviour.
机译:工业规模的引流管式除尘器(附聚器和生长罐),特别是氧化铝拜耳法中较高的长径比(H / T≥2)除尘器,其任务是以最小的功率消耗均匀地悬浮氧化铝水合物颗粒。如果颗粒均匀地悬浮在整个除尘器体积中,溢流的颗粒浓度将是均匀的,否则在氧化铝除尘器中颗粒浓度的梯度可能会占主导地位。在工业操作实践中,假定从尾水管除尘器底部注入的空气有助于并增强在目前的工作中,已经进行了研究以分析在有空气搅拌和没有空气搅拌的情况下较高长宽比设计中的流动现象。此外,该工作还描绘了引流管缝隙在整体流动模式和水合物颗粒中的作用。为了分析和表征流动现象,计算流体动力学(CFD)建模研究已用于调查流动和水合物悬浮行为。

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