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Oral cavity hydrodynamics and drag production in Balaenid whale suspension feeding

机译:巴拉尼德鲸悬浮饲料的口腔流体力学与阻力产生。

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摘要

Balaenid whales feed on large aggregates of small and slow-moving prey (predominantly copepods) through a filtration process enabled by baleen. These whales exhibit continuous filtration, namely, with the mouth kept partially opened and the baleen exposed to oncoming prey-laden waters while fluking. The process is an example of crossflow filtration (CFF) in which most of the particulates (prey) are separated from the substrate (water) without ever coming into contact with the filtering surface (baleen). This paper discusses the simulation of baleen filtration hydrodynamics based on a type of hydraulic circuit modeling commonly used in microfluidics, but adapted to the much higher Reynolds number flows typical of whale hydrodynamics. This so-called Baleen Hydraulic Circuit (BHC) model uses as input the basic characteristics of the flows moving through a section of baleen observed in a previous flume study by the authors. The model has low-spatial resolution but incorporates the effects of fluid viscosity, which doubles or more a whale’s total body drag in comparison to non-feeding travel. Modeling viscous friction is crucial here since exposing the baleen system to the open ocean ends up tripling a whale’s total wetted surface area. Among other findings, the BHC shows how CFF is enhanced by a large filtration surface and hence large body size; how it is carried out via the establishment of rapid anteroposterior flows transporting most of the prey-water slurry towards the oropharyngeal wall; how slower intra-baleen flows manage to transfer most of the substrate out of the mouth, all the while contributing only a fraction to overall oral cavity drag; and how these anteroposterior and intra-baleen flows lose speed as they approach the oropharyngeal wall.
机译:鲸鱼通过鲸鱼的过滤过程,以大团聚的小且运动缓慢的猎物(主要是co足类)为食。这些鲸鱼表现出连续的过滤作用,即,嘴巴保持部分张开,并且须鲸在打时将其暴露在迎面而来的猎物中。该过程是错流过滤(CFF)的一个示例,其中大多数颗粒(猎物)与基质(水)分离,而从未与过滤表面(baleen)接触。本文基于微流体中常用的一种液压回路模型,讨论了巴利恩过滤流体动力学的仿真,但是该模型适用于鲸鱼流体动力学中典型的更高的雷诺数流。作者在先前的水槽研究中观察到,这种所谓的Baleen液压回路(BHC)模型使用流经一段Baleen的流动的基本特征作为输入。该模型具有较低的空间分辨率,但结合了流体粘度的影响,与非喂食行程相比,鲸鱼的全身阻力增加了一倍或更多。在这里,对粘性摩擦进行建模非常重要,因为将巴利恩系统暴露在公海中最终会使鲸鱼的总湿润表面积增加两倍。在其他发现中,BHC展示了如何通过较大的过滤表面以及较大的体形来增强CFF。如何通过建立快速前后流将大部分猎物稀浆向口咽壁输送来进行;较慢的内部baleen流如何设法将大部分底物从口腔中转移出来,而同时仅对整体口腔阻力产生很小的贡献;以及这些前后和巴里内流如何接近口咽壁而失去速度。

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  • 期刊名称 other
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  • 年(卷),期 -1(12),4
  • 年度 -1
  • 页码 e0175220
  • 总页数 37
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