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Feasibility Study on Rotorcraft Blade Morphing in Hovering

机译:旋翼桨叶悬停变形的可行性研究

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The study of acoustic noise generated by helicopter main rotors is the object of many theoretical and experimental investigations because of the complexity of the related physical phenomena and its strong influence on the vehicle performance. One of the main targets of the FriendCopter European Project is to define technical solutions aimed at improving the helicopter acoustic performance. In this work some related activities are described The extremely complex operating environment of a helicopter rotor contributes to noise generation through several distinct mechanisms: among them, blade vortex interaction noise (BVI) results extremely annoying when it occurs One method for BVI alleviation is to increase the separation of the tip vortex from the rotor plane using an adaptive blade tip (anhedral configuration) to diffuse the tip vortex or to displace it. In this work, as a first step of the investigation, a feasibility study on blade tip morphing will be addressed neplectins any aeroacoustic estimation; a specific flight condition will be considered to evaluate the efficiency of a particular smart system based on the coupled action of shape memory alloys (SMAs) and magneto-rheological fluids (MRFs) Such a kind of actuation system has to realise an on-off mechanism through which the tip blade displacement is maximised: the properties of the MR fluid will be exploited to selectively reduce the bending stiffness spanwise so that the SMA actuation is increased. A theoretical model and numerical investigations will be shown to evaluate the reliability and the effectiveness of the integrated system.
机译:由于相关物理现象的复杂性及其对车辆性能的强烈影响,对直升机主旋翼产生的噪声的研究是许多理论和实验研究的目标。 FriendCopter欧洲项目的主要目标之一是确定旨在改善直升机声学性能的技术解决方案。在这项工作中,描述了一些相关的活动。直升机旋翼的极其复杂的运行环境通过几种不同的机制导致了噪声的产生:其中,叶片涡旋相互作用噪声(BVI)发生时会非常烦人,减轻BVI的一种方法是增加使用自适应叶片尖端(无角形配置)将尖端涡旋与转子平面分开,以扩散尖端涡旋或使其移位。在这项工作中,作为研究的第一步,将在任何空气声估计中解决neplectin中有关叶尖变形的可行性研究。基于形状记忆合金(SMA)和磁流变流体(MRF)的耦合作用,将考虑特定的飞行条件来评估特定智能系统的效率。这种致动系统必须实现开关机制通过其最大程度地增加了尖端刀片的位移:将利用MR流体的特性来选择性地沿翼展方向减小弯曲刚度,从而增加SMA致动。将显示一个理论模型和数值研究来评估集成系统的可靠性和有效性。

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