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Fish mouths as engineering structures for vortical cross-step filtration

机译:鱼嘴作为旋涡式阶梯过滤的工程结构

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摘要

Suspension-feeding fishes such as goldfish and whale sharks retain prey without clogging their oral filters, whereas clogging is a major expense in industrial crossflow filtration of beer, dairy foods and biotechnology products. Fishes' abilities to retain particles that are smaller than the pore size of the gill-raker filter, including extraction of particles despite large holes in the filter, also remain unexplained. Here we show that unexplored combinations of engineering structures (backward-facing steps forming d-type ribs on the porous surface of a cone) cause fluid dynamic phenomena distinct from current biological and industrial filter operations. This vortical cross-step filtration model prevents clogging and explains the transport of tiny concentrated particles to the oesophagus using a hydrodynamic tongue. Mass transfer caused by vortices along d-type ribs in crossflow is applicable to filter-feeding duck beak lamellae and whale baleen plates, as well as the fluid mechanics of ventilation at fish gill filaments.
机译:诸如金鱼和鲸鲨这样的悬浮饲料鱼类保留了猎物而不会堵塞其口腔过滤器,而堵塞是啤酒,乳制品和生物技术产品的工业错流过滤的主要费用。鱼类保留小于the耙过滤器孔径的颗粒的能力,包括尽管在过滤器中有大孔也能提取颗粒的能力,仍然无法解释。在这里,我们显示工程结构的未经探索的组合(向后的台阶在圆锥体的多孔表面上形成d型肋)导致流体动力学现象不同于当前的生物学和工业过滤器操作。这种涡流式跨步过滤模型可防止堵塞,并使用流体动力舌片解释了微小的浓缩颗粒向食道的运输。由涡流沿横流中的d型肋引起的传质适用于过滤器喂食鸭嘴薄片和鲸鱼baleen板,以及鱼g细丝通风的流体力学。

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