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首页> 外文期刊>Royal Society Open Science >Modulating yaw with an unstable rigid body and a course-stabilizing or steering caudal fin in the yellow boxfish (Ostracion cubicus)
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Modulating yaw with an unstable rigid body and a course-stabilizing or steering caudal fin in the yellow boxfish (Ostracion cubicus)

机译:用一个不稳定的刚体和尾部稳定或转向尾鳍在黄色扁圆形鱼(Ostracion Cubicus)中调制偏航

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摘要

Despite that boxfishes have a rigid carapace that restricts body undulation, they are highly manoeuvrable and manage to swim with remarkably dynamic stability. Recent research has indicated that the rigid body shape of boxfishes shows an inherently unstable response in its rotations caused by course-disturbing flows. Hence, any net stabilizing effect should come from the fishes' fins. The aim of the current study was to determine the effect of the surface area and orientation of the caudal fin on the yaw torque exerted on the yellow boxfish, Ostracion cubicus , a square cross-sectional shaped species of boxfish. Yaw torques quantified in a flow tank using a physical model with an attachable closed or open caudal fin at different body and tail angles and at different water flow speeds showed that the caudal fin is crucial for controlling yaw. These flow tank results were confirmed by computational fluid dynamics simulations. The caudal fin acts as both a course-stabilizer and rudder for the naturally unstable rigid body with regard to yaw. Boxfishes seem to use the interaction of the unstable body and active changes in the shape and orientation of the caudal fin to modulate manoeuvrability and stability.
机译:尽管Boxfishes具有限制身体波动的刚性甲状腺,但它们是高度保证的并且可以使用显着的动态稳定性游泳。最近的研究表明,扁面包鱼的刚体形状在令人不安的流动引起的轮换中显示出固有的不稳定反应。因此,任何净稳定效果都应该来自鱼类的鳍。目前的研究的目的是确定尾鳍表面积和取向对黄色扁豆鱼,滴漏立方体,平方横截面形状的扁圆形扁面包形状的横截面形状的偏航扭矩的影响。使用具有可连接的闭合或打开尾部的物理模型在流动箱中定量的偏航扭矩,在不同的身体和尾部角度,并且在不同的水流速度下表明尾鳍对于控制偏航是至关重要的。通过计算流体动力学模拟确认这些流动罐结果。尾鳍作为偏航的自然不稳定刚体的轨道稳定器和方向舵。 Boxfishes似乎使用不稳定的身体的相互作用和尾鳍形状和方向的主动变化,以调节机动性和稳定性。

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