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Nonlinear static aeroelastic analysis of high aspect ratio wing

机译:高长宽比机翼的非线性静态气动弹性分析

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摘要

Geometrical nonlinearity of high aspect ratio wing arises from large tip deflection. This deflection then can no more be modeled by linear theories because of the geometric stiffening effect This large tip deflection not only effects the static characteristics like tip bending, tip twist, lift distribution over wing span but also on the dynamic characteristics like flutter, limit cycle oscillation and stability of aircraft. Static as well dynamic aeroelastic analyses need nonlinear structure and nonlinear aerodynamic modeling for high aspect ratio wing. In present work, strip theory has been used to model aerodynamic force while commercial FE package ANSYS has been used to model structure. Any structure can be modeled by considering its important mode shapes. Patil's high aspect ratio wing has been selected and modeled using shell and mass elements. In this model first three bending and 1st torsion modes are sufficient to simulate structure. Results are compared with published work and are in close agreement in tip deflection, tip twist.
机译:高长宽比的机翼的几何非线性是由大的叶尖挠度引起的。由于存在几何刚度效应,因此无法再通过线性理论对这种挠度进行建模。这种较大的尖端挠度不仅会影响静态特征(如尖端弯曲,尖端扭曲,机翼跨度的升力分布),而且还会影响动态特征(如颤动,极限循环)飞机的振荡和稳定性。对于高长宽比的机翼,静态和动态气动弹性分析都需要非线性结构和非线性气动模型。在目前的工作中,条形理论已被用于对空气动力进行建模,而商用有限元软件包ANSYS已被用于对结构进行建模。任何结构都可以通过考虑其重要的模式形状来建模。 Patil的高长宽比机翼已通过壳体和质量元素进行了选择和建模。在该模型中,前三个弯曲模式和1 st 扭转模式足以模拟结构。将结果与已发表的研究结果进行比较,并且在针尖偏转,针尖扭曲方面非常一致。

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