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ELASTO-STATIC AND MODAL MODELING OF FLEXIBLE WINGS CARRYING MULTIPLE EXTERNAL STORES

机译:带有多个外部门的柔性翼的静静态和模态建模

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The design of highly flexible aircraft involves several critical phenomena which are not considered in traditional aircraft design. Large structural deflections under nominal loads and flight conditions, point out that a linear structural model is often inadequate in the accurate flutter prediction. In place of a linear Euler-Bernoulli theory, usually sufficient in the evaluation of natural frequencies of slender structures when deflections are lower than transversal dimensions, a nonlinear analysis is required as there is strong dependency between natural frequencies and beam deflections which could lead to flutter instability at lower flight speeds. The model complexities increase when one or more stores are placed under the wing. In this study numerical and experimental investigations are carried out to better understand the nonlinear behaviour of highly flexible wings with external stores positioned at selected spanwise, chordwise, and flapwise stations, when both geometrical and aerodynamic nonlinearities are not negligible. Good correlation between numerical and experimental investigations was found, showing strong edge and torsion frequencies and associated mode shapes dependency on the initial deformation.
机译:高度灵活的飞机设计涉及几种关键现象,而传统飞机设计中并未考虑这些现象。在额定载荷和飞行条件下的大结构挠度指出,线性结构模型通常不足以进行准确的颤振预测。代替线性Euler-Bernoulli理论,当挠度小于横向尺寸时,通常足以评估细长结构的固有频率,因此需要非线性分析,因为固有频率与梁挠度之间存在很强的相关性,这可能会导致颤动在较低的飞行速度下不稳定。当在翼下放置一个或多个商店时,模型的复杂性会增加。在这项研究中,进行了数值和实验研究,以更好地理解高度柔性机翼的非线性行为,这些外部存储器位于选定的翼展方向,弦向和襟翼位置,而几何和空气动力学非线性均不可忽略。发现数值研究与实验研究之间具有良好的相关性,显示出强烈的边缘和扭转频率以及相关的模态形状对初始变形的依赖性。

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