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Residence Time Distribution and the Investigation of Bed Movement in a Continuously Operated Upflow Filter (COUF) for Tertiary Wastewater Treatment

机译:停留时间分布和用于第三级废水处理的连续操作上流式过滤器(COUF)的床运动研究

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This paper describes an investigation to define the liquid phase flow regime in a continuously operated upflow filter (COUF) together with an assessment of the relative motion of the solid (filter media) phase. The importance of such measurements in the development of a model for these systems, including aerated biological filtration versions is discussed. Initial work was carried out on a model-scale demonstrator unit using Rhodamine WT fluorescent dye tracing for liquid phase studies. Initial outputs show that the liquid phase residence time distribution (RTD) is well approximated by a plug flow assumption.The pattern in which individual particles of the bed move during the operation of the COUF was also investigated on the demonstrator using colored beads as a tracer. The gross movement of the bed and the internal mixing regime described can be regarded as analogous to RTD. Techniques were developed whereby bed movement in the cleaning process could be measured and assessed over time, leading to the generation of 3D bed movement visualisation plots. This work could potentially lead to developments of technologies that could better clean the media and lead to a more even bed movement allowing the filter to operate more efficiently.
机译:本文介绍了一项研究,以定义连续运行的上流式过滤器(COUF)中的液相流态,并评估固相(过滤器介质)的相对运动。讨论了此类测量在这些系统模型(包括充气生物过滤版本)的开发中的重要性。最初的工作是在模型规模的演示器单元上进行的,使用了若丹明WT荧光染料示踪技术进行了液相研究。初始输出表明,液相流停留时间分布(RTD)可以通过推流假设很好地估算。 还在演示器上使用彩色珠粒作为示踪剂研究了在COUF操作过程中床的单个颗粒移动的模式。床的总体运动和所述的内部混合方式可以被认为类似于RTD。已开发出可以测量和评估清洁过程中床移动的技术,从而生成3D床移动可视化图。这项工作可能会导致技术的发展,该技术可以更好地清洁介质,并使床运动更均匀,从而使过滤器更有效地运行。

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