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首页> 外文期刊>The Journal of Experimental Biology >The aerodynamics of avian take-off from direct pressure measurements in Canada geese (Branta canadensis)
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The aerodynamics of avian take-off from direct pressure measurements in Canada geese (Branta canadensis)

机译:从加拿大大雁(加拿大黑雁)直接压力测量中得出的鸟类起飞的空气动力学

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Direct pressure measurements using electronic differential pressure transducers along bird wings provide insight into the aerodynamics of these dynamically varying aerofoils. Acceleration-compensated pressures were measured at five sites distributed proximally to distally from the tertials to the primaries along the wings of Canada geese. During take-off flight, ventral-to-dorsal pressure is maintained at the proximal wing section throughout the wingstroke cycle, whereas pressure sense is reversed at the primaries during upstroke. The distal sites experience double pressure peaks during the downstroke. These observations suggest that tertials; provide weight-support throughout the wingbeat, that the wingtip provides thrust during upstroke and that the kinetic energy of the rapidly flapping wings may be dissipated via retarding aerodynamic forces (resulting in aerodynamic work) at the end of downstroke.
机译:使用沿鸟翼的电子差压传感器进行直接压力测量,可以深入了解这些动态变化的翼型的空气动力学特性。在沿加拿大大雁的翅膀从原发地到原发地的近端到远端分布的五个位置上测量了加速度补偿压力。在起飞飞行期间,整个机翼冲程周期中,近端机翼部分的腹背压力保持不变,而在上冲程期间,初级时压力感相反。在下行冲程中,远端部位会出现双重压力峰值。这些发现表明三位一体;在整个机翼搏击过程中提供重量支撑,翼尖在上冲程期间提供推力,并且在下冲程结束时,可以通过阻止空气动力(导致空气动力作用)来消散快速拍打的机翼的动能。

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