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A parametric study on supersonic/hypersonic flutter behavior of aero-thermo-elastic geometrically imperfect curved skin panel

机译:空气-热弹性几何不完美弯曲皮肤面板的超音速/超人为扑动特性的参数研究

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摘要

In this paper, the effect of the system parameters on the flutter of a curved skin panel forced by a supersonic/hypersonic unsteady flow is numerically investigated. The aeroelastic model investigated includes the third-order piston theory aerodynamics for modeling the flow-induced forces and the Von Kármán nonlinear strain-displacement relation in conjunction with the Kirchhoff plate hypothesis for the panel structural modeling. Structural non-linearities are considered and are due to the non-linear coupling between out-of-plane bending and in-plane stretching. The effects of thermal degradation and Kelvin’s model of structural damping independent on time and temperature are also considered. The aero-thermo-elastic governing equations are developed from the geometrically imperfect non-linear theory of infinitely long two-dimensional curved panels. Computational analysis and discussion of the finding along with pertinent conclusions are presented.
机译:在本文中,系统地研究了系统参数对超音速/超人为非定常流动迫使曲面蒙皮面板颤动的影响。所研究的空气弹性模型包括三阶活塞理论空气动力学模型,用于对流动引起的力进行建模,以及冯·卡尔曼非线性应变-位移关系以及基尔霍夫板假设,用于面板结构建模。考虑了结构非线性,这是由于平面外弯曲和平面内拉伸之间的非线性耦合引起的。还考虑了热降解的影响以及与时间和温度无关的开尔文结构阻尼模型。空气-热弹性控制方程是从无限长的二维曲面板的几何不完美非线性理论发展而来的。介绍了计算结果的分析和讨论以及相关的结论。

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