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Physical modeling of vortical cross-step flow in the American paddlefish, Polyodon spathula

机译:美国Paddlefish,Polyodon Spathula的志性跨步流的物理建模

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Vortical cross-step filtration in suspension-feeding fish has been reported recently as a novel mechanism, distinct from other biological and industrial filtration processes. Although crossflow passing over backward-facing steps generates vortices that can suspend, concentrate, and transport particles, the morphological factors affecting this vortical flow have not been identified previously. In our 3D-printed models of the oral cavity for ram suspension -feeding fish, the angle of the backward-facing step with respect to the model's dorsal midline affected vortex parameters significantly, including rotational, tangential, and axial speed. These vortices were comparable to those quantified downstream of the backward facing steps that were formed by the branchial arches of preserved American paddlefish in a recirculating flow tank. Our data indicate that vortices in cross-step filtration have the characteristics of forced vortices, as the flow of water inside the oral cavity provides the external torque required to sustain forced vortices. Additionally, we quantified a new variable for ram suspension feeding termed the fluid exit ratio. This is defined as the ratio of the total open pore area for water leaving the oral cavity via spaces between branchial arches that are not blocked by gill rakers, divided by the total area for water entering through the gape during ram suspension feeding. Our experiments demonstrated that the fluid exit ratio in preserved paddlefish was a significant predictor of the flow speeds that were quantified anterior of the rostrum, at the gape, directly dorsal of the first ceratobranchial, and in the forced vortex generated by the first ceratobranchial. Physical modeling of vortical cross-step filtration offers future opportunities to explore the complex interactions between structural features of the oral cavity, vortex parameters, motile particle behavior, and particle morphology that determine the suspension, concentration, and transport of particles within the oral cavity of ram suspension-feeding fish.
机译:最近报道了悬浮喂料鱼中的涡流横步过滤作为一种新的机制,与其他生物和工业过滤过程不同。尽管通过背面的步骤的横向流出,但是先前尚未确定影响这种涡流的形态因素的涡流。在我们的3D印刷型号的ram悬架 - eeding鱼的口腔中,对面向后的步骤相对于模型的背部中线的角度显着影响涡流参数,包括旋转,切向和轴向速度。这些涡流与在侧向面对面的下游量化的那些相当,这些步骤由循环流动箱中保存的美国波纹皿的鳃拱形成。我们的数据表明,横步过滤中的涡流具有强制涡流的特点,因为口腔内的水流提供了维持强制涡流所需的外部扭矩。另外,我们量化了用于RAM悬架喂养的新变量,称为流体出口比。这被定义为水的总开放孔面积的比例,通过鳃rakers没有阻挡的鳃拱之间的空间离开口腔,除以在ram悬浮送料期间通过整合的水的总面积除以。我们的实验表明,保存的Paddlefish中的流体出口比是流动速度的显着预测因子,该流量速度被定量讲台的前部,在第一个Ceratobrancranchial的直接背侧,以及由第一个Ceratobranchial产生的强制涡流。志性交叉过滤的物理建模提供了未来的机会探讨口腔,涡旋参数,动机颗粒行为和颗粒形态的结构特征与确定悬浮液内的悬浮液,浓度和输送口腔内的颗粒之间的复杂相互作用RAM悬浮喂养鱼。

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