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首页> 外文期刊>The Journal of Experimental Biology >Air-flow sensitive hairs: boundary layers in oscillatory flows around arthropod appendages
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Air-flow sensitive hairs: boundary layers in oscillatory flows around arthropod appendages

机译:气流敏感型毛发:节肢动物附肢周围振荡流动的边界层

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The aim of this work is to characterize the boundary layer over small appendages in insects in longitudinal and transverse oscillatory flows. The problem of immediate interest is the early warning system in crickets perceiving flying predators using air-flow-sensitive hairs on cerci, two long appendages at their rear. We studied both types of oscillatory flows around small cylinders using stroboscopic micro-particle image velocimetry as a function of flow velocity and frequency. Theoretical predictions are well fulfilled for both longitudinal and transverse flows. Transverse flow leads to higher velocities than longitudinal flow in the boundary layer over a large range of angles between flow and cylinder. The strong spatial heterogeneity of flow velocities around filiform-shaped appendages is a rich source of information for different flow-sensing animals. Our results suggest that crickets could perceive the direction of incoming danger by having air-flow-sensitive hairs positioned around their entire cerci. Implications for biomimetic flow-sensing MEMS are also presented.
机译:这项工作的目的是表征昆虫在纵向和横向振荡流中小附件上的边界层。迫在眉睫的问题是using的早期预警系统,它利用尾纤上的气流敏感型毛发感知flying翔的食肉动物,它们的尾部有两个长附件。我们使用频闪显微镜的微粒图像测速技术研究了小圆柱体周围的两种振荡流,它们是流速和频率的函数。对于纵向和横向流动,理论上的预测都可以很好地实现。在流动与圆柱之间的较大角度范围内,横向流动比边界层中的纵向流动产生更高的速度。丝状附肢周围流速的强烈空间异质性为不同的流敏动物提供了丰富的信息来源。我们的研究结果表明,通过将气流敏感的毛发放在整个骨周围,可以感知到即将来临的危险的方向。还介绍了仿生流量传感MEMS的含义。

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