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Pipe Flow Of Highly Concentrated Sludge

机译:高浓度污泥的管道流量

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摘要

Industries that pump sludges experience pressure to operate at higher concentrations with sludges that have high mechanical strength properties. The viscous character of the sludge becomes increasingly non-Newtonian and yield stress in nature. The two principal problems are regime determination and laminar flow settling, which ultimately results in pipe blockage. In facing the diversities that sludge management currently presents, it is important to resolve these issues and develop solutions for engineering practice. The approaches developed at the Flow Process Research Centre to deal with these problems are introduced. The objectives of this paper are to introduce experimental data of the phenomena associated with the pipe flow of highly concentrated sludge, and use these to develop and evaluate predictive modeling approaches suitable for engineering design purposes. For the prediction of transitional flow, a new general approach for visco-plastic fluids in industrially relevant pipe sizes is presented, based on dimensional analysis of the flow problem Settled bed behavior is modeled using an adapted two-layer model approach, in all flow regimes. The modeling approaches are evaluated using the experimental results obtained. The analysis shows that the present work provides a workable solution for the prediction of the pipe flow of highly concentrated sludges, for engineering design purposes.
机译:泵送污泥的行业承受压力,要求具有较高机械强度特性的污泥在较高浓度下运行。污泥的粘性变得越来越非牛顿性,并且自然产生屈服应力。两个主要问题是状态确定和层流沉降,最终导致管道堵塞。在面对目前污泥管理所呈现的多样性时,解决这些问题并为工程实践开发解决方案非常重要。介绍了在流程研究中心开发的解决这些问题的方法。本文的目的是介绍与高浓度污泥的管道流动有关的现象的实验数据,并使用它们来开发和评估适用于工程设计目的的预测建模方法。为了预测过渡流动,基于流动问题的尺寸分析,提出了一种适用于工业上相关管道尺寸的粘塑性流体的通用新方法,该方法在所有流动状态下均采用适应性的两层模型方法对沉降床行为进行了建模。 。使用获得的实验结果评估建模方法。分析表明,目前的工作为工程设计目的提供了一种可行的解决方案,用于预测高浓度污泥的管道流量。

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