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The frictional resistance induced by bacterial based biofouling in drainage pipelines

机译:细菌基生物污染在排水管道中引起的摩擦阻力

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摘要

This paper aims at improving the current understanding of bacterial-based biofouling in drainage pipelines. Using a purpose built pipeline facility consisting of a high density polyethylene pipe, biofilms were incubated with synthetic wastewater for 20 days at three steady-state flow regimes. The results obtained have shown that the presence of a biofilm can cause a significant increase in frictional resistance. The magnitude of a biofilm’s frictional resistance is a function of the shear conditions under which the biofilm is incubated. In particular, the lower the conditioning shear, the higher the frictional resistance imparted by the biofilm. This is attributed to the thickness and roughness distribution induced by such conditions, and it serves to highlight the problem of characterizing a biofilm’s effective roughness using a single roughness scale. The study has also supported the earlier funding that the von Kármán constant is non-universal, and is dependent on Reynolds number for biofouled pipes.
机译:本文旨在提高当前对排水管道中细菌基生物污损的理解。使用由高密度聚乙烯管组成的专用管道设施,将生物膜与合成废水在三种稳态流态下孵育20天。获得的结果表明,生物膜的存在会引起摩擦阻力的显着增加。生物膜的摩擦阻力大小取决于生物膜被孵育时的剪切条件。特别地,调节剪切越低,生物膜赋予的摩擦阻力越高。这归因于这些条件引起的厚度和粗糙度分布,它突出显示了使用单一粗糙度标度表征生物膜有效粗糙度的问题。该研究还支持了早期的投资,即冯·卡尔曼常数是非通用的,并且取决于生物污染管道的雷诺数。

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