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Effect of Angle on Flow-Induced Vibrations of Pinniped Vibrissae

机译:夹角对夹式触角流致振动的影响

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摘要

Two types of vibrissal surface structures, undulated and smooth, exist among pinnipeds. Most Phocidae have vibrissae with undulated surfaces, while Otariidae, Odobenidae, and a few phocid species possess vibrissae with smooth surfaces. Variations in cross-sectional profile and orientation of the vibrissae also exist between pinniped species. These factors may influence the way that the vibrissae behave when exposed to water flow. This study investigated the effect that vibrissal surface structure and orientation have on flow-induced vibrations of pinniped vibrissae. Laser vibrometry was used to record vibrations along the whisker shaft from the undulated vibrissae of harbor seals (Phoca vitulina) and northern elephant seals (Mirounga angustirostris) and the smooth vibrissae of California sea lions (Zalophus californianus). Vibrations along the whisker shaft were measured in a flume tank, at three orientations (0°, 45°, 90°) to the water flow. The results show that vibration frequency and velocity ranges were similar for both undulated and smooth vibrissae. Angle of orientation, rather than surface structure, had the greatest effect on flow-induced vibrations. Vibration velocity was up to 60 times higher when the wide, flat aspect of the whisker faced into the flow (90°), compared to when the thin edge faced into the flow (0°). Vibration frequency was also dependent on angle of orientation. Peak frequencies were measured up to 270 Hz and were highest at the 0° orientation for all whiskers. Furthermore, CT scanning was used to quantify the three-dimensional structure of pinniped vibrissae that may influence flow interactions. The CT data provide evidence that all vibrissae are flattened in cross-section to some extent and that differences exist in the orientation of this profile with respect to the major curvature of the hair shaft. These data support the hypothesis that a compressed cross-sectional profile may play a key role in reducing self-noise of the vibrissae.
机译:夹缝中存在两种类型的起伏和光滑的振动表面结构。多数飞虱科的触须具有起伏的表面,而O科,O虫科和一些phocid物种的触须则具有光滑的表面。针刺物种之间也存在着触须横截面轮廓和取向的变化。这些因素可能会影响触须在暴露于水流时的行为方式。这项研究调查了可塑性表面结构和取向对夹缝式可塑性触头的流动引起的振动的影响。激光振动测量法用于记录海豹(Phoca vitulina)和北象海豹(Mirounga angustirostris)以及加利福尼亚海狮(Zalophus californianus)的光滑弧线的起伏的触须沿晶须轴的振动。在水槽中沿水流的三个方向(0°,45°,90°)测量了沿晶须轴的振动。结果表明,起伏的和光滑的触须的振动频率和速度范围相似。取向角而不是表面结构对流动引起的振动影响最大。当晶须的宽而平坦的面朝向流(90°)时,与薄边缘面向流(0°)相比,振动速度高60倍。振动频率还取决于取向角。测得的峰值频率高达270 Hz,并且在所有晶须的0°方向上都最高。此外,CT扫描被用来量化可能影响流动相互作用的夹缝触角的三维结构。 CT数据提供了证据,表明所有触须的横截面都在一定程度上变平,并且相对于毛干的主要曲率,该轮廓的方向存在差异。这些数据支持这样的假设,即压缩的横截面轮廓可能在降低触须的自噪声中起关键作用。

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