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首页> 外文期刊>Journal of Environmental Engineering >Improving fluid flow in clarifiers using a highly porous media
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Improving fluid flow in clarifiers using a highly porous media

机译:使用高度多孔的介质改善澄清池中的流体流动

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The theory behind ideal sedimentation tanks assumes that the fluid moves in uniform flow. Numerous studies have shown numerous nonuniform flow patterns, which explains why the solids removal efficiency of real clarifiers does not match theory predictions. This problem gets worse when the influent flow rate exceeds what the clarifier was designed to handle. This research shows that introducing a highly porous bed of "dendrite" fibers into clarifiers designed for the pulp and paper industry removed some of the nonuniformities as shown in a residence time distribution (RTD). These clarifiers have RTDs that are similar to their waste treatment counterparts. So, it is expected that the new technology will have similar effects in waste treatment systems. The bed acts as a resistor to nonaxial flow, reducing radial and angular components of velocity. It is also shown that the greatest effect on the bulk flow patterns occurs when the bed is positioned such that all of the overflow passes through it. Increasing the bed thickness also increases the effect. Analysis of these results was performed with a new model for RTDs based on the Weibull distribution, which is mathematically similar to the equation for a mixed flow RTD.
机译:理想沉淀池背后的理论假设流体以均匀流动运动。大量研究表明,存在许多不均匀的流动模式,这解释了为什么真实澄清池的固体去除效率与理论预测不符。当进水流速超过澄清器的设计要求时,此问题会变得更加严重。这项研究表明,向纸浆和造纸工业设计的澄清池中引入高度多孔的“树枝状”纤维床,可以消除停留时间分布(RTD)中显示的某些不均匀性。这些澄清池的RTD与废物处理的类似物相似。因此,预计新技术将在废物处理系统中产生类似的效果。该床层充当非轴向流动的阻力,减少了速度的径向和角向分量。还显示出,当床被放置成使得所有溢流都通过时,对整体流动模式的影响最大。增加床的厚度也会增加效果。使用基于Weibull分布的RTD新模型对这些结果进行分析,该模型在数学上类似于混合流RTD的方程式。

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