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Aerodynamics Power Consumption For Mechanical Flapping Wings Undergoing Flapping And Pitching Motion

机译:机械拍打翅膀拍打动作的空气动力功耗

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Lately, due to the growing interest in Micro Aerial Vehicles (MAV), interest in flapping flight has been rekindled. The reason lies in the improved performance of flapping wing flight at low Reynolds number regime. Many studies involving flapping wing flight focused on the generation of unsteady aerodynamic forces such as lift and thrust. There is one aspect of flapping wing flight that received less attention. The aspect is aerodynamic power consumption. Since most mechanical flapping wing aircraft ever designed are battery powered, power consumption is fundamental in improving flight endurance. This paper reports the results of experiments carried out on mechanical wings under going active root flapping and pitching in the wind tunnel. The objective of the work is to investigate the effect of the pitch angle oscillations and wing profile on the power consumption of flapping wings via generation of unsteady aerodynamic forces. The experiments were repeated for different airspeeds, flapping and pitching kinematics, geometric angle of attack and wing sections with symmetric and cambered airfoils. A specially designed mechanical flapper modelled on large migrating birds was used. It will be shown that, under pitch leading conditions, less power is required to overcome the unsteady aerodnamics forces. The study finds less power requirement for downstroke compared to upstroke motion. Overall results demonstrate power consumption depends directly on the unsteady lift force.
机译:最近,由于对微空中车辆(MAV)的兴趣日益越来越兴趣,重新推出了对拍打飞行的兴趣。原因在于低雷诺斯号码扑振翼飞行的性能提高。许多涉及扑振翼飞行的研究专注于产生不稳定的空气动力,例如升力和推力。拍打翼飞行有一个方面,受到不太关注的。这方面是空气动力功耗。由于大多数机械挥动翼飞机设计的电池供电,功耗是提高飞行耐力的基础。本文报告了在风洞中的主动根拍打和俯仰下的机械翅膀上进行的实验结果。该工作的目的是研究俯仰角振荡和翼轮廓对通过产生不稳定的空气动力的拍打机翼的功耗的影响。针对不同的空速,拍打和俯仰运动学,几何攻角和具有对称和弧形翼型的翼片的几何角度重复实验。使用了在大型迁移鸟类上建模的专门设计的机械挡板。将表明,在俯仰领先条件下,需要较少的功率来克服不稳定的气动动力。与上行程运动相比,该研究发现下行的电源要求。总体结果表明功耗直接取决于不稳定的提升力。

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