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Simultaneous measurement of aerodynamic forces and kinematics in flapping wings of tethered locust

机译:蝗虫拍打翅膀同时测量空气动力和运动学

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摘要

Aerodynamic and inertial forces and corresponding kinematics of flapping wings of locusts, Schistocerca americana, were investigated in a low-speed wind tunnel. The experimental setup included live locusts mounted on microbalance synchronized with a high-speed video system. Simultaneous measurements of wing kinematics and forces were carried out on three locusts at 7 degrees angle of attack and velocities of 0 m s(-1) and 4 m s(-1). Time variations of flapping and pitching angles exhibit similar patterns in fore-and hindwings and among the animals. Significant tip to root variations in pitching angle are found in both wings. The locusts have much larger flapping and pitching amplitudes in still air causing larger oscillations in inertial forces. Inertial forces are added to the lift and thrust on one part of the stroke, resulting in higher reaction forces and subtracted on the other part. Plots of the lift demonstrate similar trends with and without the wind. The global maxima and peak-to-peak amplitudes in lift are about the same in both tests. However, local minima are significantly lower in still air, resulting in much smaller stroke-averaged lift. Amplitudes of thrust force oscillations are much higher in still air; consequently, the stroke-averaged thrust is higher compared to the non-zero freestream velocity case.
机译:在低速风洞中研究了蝗虫拍打翅膀的空气动力和惯性力以及相应的运动学。实验装置包括将蝗虫安装在与高速视频系统同步的微量天平上的蝗虫。在三个蝗虫的迎角为7度且速度为0 m s(-1)和4 m s(-1)的情况下,对机翼运动学和力进行了同时测量。拍打和俯仰角的时间变化在前翅和后翅以及动物之间表现出相似的模式。在两个机翼中均发现俯仰角的从尖到根的显着变化。蝗虫在静止空气中的拍打和俯仰幅度要大得多,从而导致惯性力产生较大的振荡。惯性力在行程的一部分上被施加到升力和推力上,从而导致更高的反作用力,而在另一部分上被减去。在有风和无风的情况下,升降机图都显示出类似的趋势。在两个测试中,提升的整体最大值和峰峰幅度大致相同。但是,静止空气中的局部最小值明显较低,因此平均行程的扬程要小得多。在静止的空气中,推力振荡的幅度要高得多。因此,与非零自由流速度情况相比,平均冲程推力更高。

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