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HALE wing experiments and computational models to predict nonlinear flutter and dynamic response

机译:HALE机翼实验和计算模型可预测非线性颤动和动态响应

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摘要

Experimental and numerical investigations into the linear and nonlinear aeroelastic behaviour of very flexible High Altitude Long Endurance (HALE) wings are conducted to assess the effect of geometrical nonlinearities on wings displaying moderate-to-large displacement. The study shows that the dynamic behaviour of wings under large deflection, and specifically the edgewise and torsion natural frequencies and modal characteristics, are largely affected by the presence of geometrical nonlinearities. A modular wing structure has been manufactured by rapid prototyping and it has been tested to characterise its dynamic and aeroelastic behaviour. At first, several simple isotropic cantilever beams with selected cross-sections are numerically investigated to extract their modal characteristics. Experiments are subsequently conducted to validate the geometrically nonlinear dynamics behaviour due to high tip displacement and to understand the influence of the beam cross-section geometry. The structural dynamics and aeroelastic analysis of a very flexible modular selected wing is then investigated. Clean-wing wind-tunnel tests are carried out to assess flutter and dynamic response. The wind-tunnel model display interesting aeroelastic features including the substantial influence of the wing large deformation on its natural frequencies and modal characteristics.
机译:进行了非常灵活的高海拔长期耐力(HALE)机翼的线性和非线性气动弹性行为的实验和数值研究,以评估几何非线性对机翼显示中到大位移的影响。研究表明,机翼在大挠度下的动态行为,特别是沿边和扭转的固有频率和模态特性,在很大程度上受几何非线性的影响。模块化机翼结构是通过快速原型制造而成,并且已经过测试以表征其动态和气动弹性特性。首先,对具有选定横截面的几个简单的各向同性悬臂梁进行了数值研究,以提取其模态特征。随后进行实验,以验证由于高尖端位移引起的几何非线性动力学行为,并了解光束横截面几何形状的影响。然后研究了非常灵活的模块化所选机翼的结构动力学和气动弹性分析。进行了清洁翼风洞测试,以评估颤振和动态响应。风洞模型显示出有趣的气动弹性特征,包括机翼大变形对其固有频率和模态特性的实质影响。

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