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Fish Swimming in a Karman Vortex Street: Kinematics, Sensory Biology and Energetics

机译:卡门涡街上的鱼游:运动学,感官生物学和能量学

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摘要

Fishes often live in environments characterized by complex flows. To study the mechanisms of how fishes interact with unsteady flows, the periodic shedding of vortices behind cylinders has been employed to great effect. In particular, fishes that hold station in a vortex street (i.e., Karman gaiting) show swimming kinematics that are distinct from their patterns of motion during freestream swimming in uniform flows, although both behaviors can be modeled as an undulatory body wave. Karman gait kinematics are largely preserved across flow velocities. Larger fish have a shorter body wavelength and slower body wave speed than smaller fish, in contrast to freestream swimming where body wavelength and wave speed increases with size. The opportunity for Karman gaiting only occurs under specific conditions of flow velocity and depends on the length of the fish; this is reflected in the highest probability of Karman gaiting at intermediate flow velocities. Fish typically Karman gait in a region of the cylinder wake where the velocity deficit is about 40% of the nominal flow. The lateral line plays a role in tuning the kinematics of the Karman gait, since blocking it leads to aberrant kinematics. Vision allows fish to maintain a consistent position relative to the cylinder. In the dark, fish do not show the same preference to hold station behind a cylinder though Karman gait kinematics are the same. When, oxygen consumption level is measured, it reveals that Karman gaiting represents about half of the cost of swimming in the freestream.
机译:鱼类通常生活在以复杂流动为特征的环境中。为了研究鱼类如何与非恒定流相互作用的机制,采用了圆柱后面的周期性涡旋脱落效果非常好。尤其是,在涡街上停留的鱼类(即Karman步态)表现出的游泳运动学与在均匀流动的自由流游泳过程中的运动方式不同,尽管两种行为都可以建模为波动的体波。 Karman步态运动学在各种流速下都得到了很大的保留。与小鱼相比,大鱼的体波长短,体波速度慢,而自由流游泳的体波长和波速随大小增加而增加。卡曼步态的机会仅在特定的流速条件下发生,并取决于鱼的长度。这在中等流速下卡曼步态的最高概率中得到反映。鱼类通常在圆柱状尾流区域中的卡曼步态,在该区域中,速度赤字约为标称流量的40%。侧线在调整Karman步态的运动学中起着重要作用,因为阻塞它会导致异常的运动学。视觉使鱼相对于鱼缸保持一致的位置。在黑暗中,尽管卡曼步态运动学是相同的,但鱼并没有​​显示出将其保持在圆柱体后面的偏好。当测量氧气消耗量时,表明卡曼步态运动约占自由流游泳成本的一半。

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