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首页> 外文期刊>The Journal of Experimental Biology >Hummingbird feather sounds are produced by aeroelastic flutter, not vortex-induced vibration
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Hummingbird feather sounds are produced by aeroelastic flutter, not vortex-induced vibration

机译:蜂鸟的羽毛声音是由气动弹性颤动产生的,而不是涡流引起的振动

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Males in the 'bee' hummingbird clade produce distinctive, species-specific sounds with fluttering tail feathers during courtship displays. Flutter may be the result of vortex shedding or aeroelastic interactions. We investigated the underlying mechanics of flutter and sound production of a series of different feathers in a wind tunnel. All feathers tested were capable of fluttering at frequencies varying from 0.3 to 10. kHz. At low airspeeds (U-air) feather flutter was highly damped, but at a threshold airspeed (U*) the feathers abruptly entered a limit-cycle vibration and produced sound. Loudness increased with airspeed in most but not all feathers. Reduced frequency of flutter varied by an order of magnitude, and declined with increasing U-air in all feathers. This, along with the presence of strong harmonics, multiple modes of flutter and several other non-linear effects indicates that flutter is not simply a vortex-induced vibration, and that the accompanying sounds are not vortex whistles. Flutter is instead aeroelastic, in which structural (inertial/elastic) properties of the feather interact variably with aerodynamic forces, producing diverse acoustic results.
机译:在求爱展示期间,“蜂”蜂鸟进化枝中的雄性产生独特的,特定于物种的声音,尾羽飘动。颤动可能是涡旋脱落或气动弹性相互作用的结果。我们研究了风洞中一系列不同羽毛的颤振和声音产生的潜在机理。所有测试的羽毛都能够以0.3到10 kHz的频率扑动。在低空速(U空气)下,羽毛颤振被高度阻尼,但是在阈值空速(U *)时,羽毛突然进入极限循环振动并产生声音。在大多数而非全部羽毛中,响度随空速而增加。颤振的减少频率变化一个数量级,并且随着所有羽毛中U空气的增加而减少。这以及强谐波的存在,颤振的多种模式和其他几种非线性效应表明,颤振不仅是涡流引起的振动,伴随的声音也不是涡流哨子。相反,颤振是空气弹性的,其中羽毛的结构(惯性/弹性)特性与空气动力相互作用,从而产生不同的声学效果。

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