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首页> 外文期刊>Journal of Fluids and Structures >Effect of pre-strain and excess length on unsteady fluid - structure interactions of membrane airfoils
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Effect of pre-strain and excess length on unsteady fluid - structure interactions of membrane airfoils

机译:预应变和过长长度对膜型翼型非稳态流固耦合的影响

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Aerodynamic characteristics of two-dimensional membrane airfoils were experimentally investigated in a wind tunnel. The effects of the membrane pre-strain and excess length on the unsteady aspects of the fluid-structure interaction were studied. The deformation of the membrane as a function of angle of attack and free-stream velocity was measured using a high-speed camera. These measurements were complemented by the measurements of unsteady velocity field with a high frame-rate Particle Image Velocimetry (PIV) system as well as smoke visualization. Membrane airfoils with excess length exhibit higher vibration modes, earlier roll-up of vortices, and smaller separated flow regions, whereas the membranes with pre-strain generally behave more similarly to a rigid airfoil. Measured frequencies of the membrane vibrations suggest a possible coupling with the wake instabilities at high incidences for all airfoils.
机译:在风洞中对二维膜型翼的气动特性进行了实验研究。研究了膜的预应变和过长的长度对流体-结构相互作用的不稳定方面的影响。使用高速相机测量膜的变形与迎角和自由流速度的关系。这些测量通过使用高帧速粒子图像测速(PIV)系统进行非定常速度场的测量以及烟雾可视化来补充。长度过长的膜翼型表现出更高的振动模式,更早的涡旋卷起以及更小的分离流动区域,而具有预应变的膜的行为通常与刚性翼型更相似。测得的膜振动频率表明,对于所有翼型而言,在高发生率时可能与尾流不稳定性有关。

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