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Secondary Flow as a Mechanism for the Formation of Biofilm Streamers

机译:二次流作为生物膜流光形成的一种机制

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摘要

In most environments, such as natural aquatic systems, bacteria are found predominantly in self-organized sessile communities known as biofilms. In the presence of a significant flow, mature multispecies biofilms often develop into long filamentous structures called streamers, which can greatly influence ecosystem processes by increasing transient storage and cycling of nutrients. However, the interplay between hydrodynamic stresses and streamer formation is still unclear. Here, we show that suspended thread-like biofilms steadily develop in zigzag microchannels with different radii of curvature. Numerical simulations of a low-Reynolds-number flow around these corners indicate the presence of a secondary vortical motion whose intensity is related to the bending angle of the turn. We demonstrate that the formation of streamers is directly proportional to the intensity of the secondary flow around the corners. In addition, we show that a model of an elastic filament in a two-dimensional corner flow is able to explain how the streamers can cross fluid streamlines and connect corners located at the opposite sides of the channel.
机译:在大多数环境中,例如自然水生系统中,细菌主要存在于被称为生物膜的自组织无柄群落中。在大量流动的情况下,成熟的多物种生物膜通常会发展成长丝状结构,称为流光,这可以通过增加营养物质的瞬时存储和循环来极大地影响生态系统过程。然而,流体动力应力与拖缆形成之间的相互作用仍然不清楚。在这里,我们显示出悬浮的线状生物膜在曲折半径不同的曲折微通道中稳定发展。这些角附近的低雷诺数流的数值模拟表明存在次级涡旋运动,其强度与转弯的弯曲角度有关。我们证明了彩带的形成与拐角处二次流的强度成正比。此外,我们显示了二维角流中的弹性细丝模型能够解释拖缆如何穿越流体流线并连接位于通道相对侧的拐角。

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