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Airfoil shape and thickness effects on transonic airloads and flutter

机译:翼型和厚度对跨音速空气载荷和颤振的影响

摘要

A transient pulse technique is used to obtain harmonic forces from a time-marching solution of the complete unsteady transonic small perturbation potential equation. The unsteady pressures and forces acting on a model of the NACA 64A010 conventional airfoil and the MBB A-3 supercritical airfoil over a range of Mach numbers are examined in detail. Flutter calculations at constant angle of attack show a similar flutter behavior for both airfoils, except for a boundary shift in Mach number associated with corresponding Mach number shift in the unsteady aerodynamic forces. Differences in the static aeroelastic twist behavior for the two airfoils are significant.
机译:瞬态脉冲技术用于从完整的非稳态跨音速小扰动势方程的时间步长解中获得谐波力。详细研究了在一系列马赫数范围内作用于NACA 64A010传统机翼和MBB A-3超临界机翼的模型上的非定常压力和力。在恒定攻角下的颤振计算表明,两种翼型都具有类似的颤振行为,只是马赫数的边界位移与非定常空气动力的相应马赫数位移相关。这两种机翼在静态气动弹性扭曲行为方面的差异非常明显。

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  • 作者

    Bland S. R.; Edwards J. W.;

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  • 年度 1983
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