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Nonlinear Dynamics of Prestressed Panels in Low Supersonic Turbulent Flow

机译:低超音速湍流中预应力板的非线性动力学

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摘要

It is known that the aeroelastic stability of elastic plates significantly decreases in low supersonic flow. A further reduction may arise due to compressive in-plane loads, which can be caused by deformations of the adjacent structure. Thus, this is an important subject in the design of supersonic aircraft or rockets. Encouraged by recent studies that have shown an increase in aerodynamic damping due to a turbulent boundary layer, the present study applies three different aerodynamic models coupled with the von Karman plate equation to show that there is as well a significant enlargement of the static stability regions of a flat plate subjected to quasi-static in-plane loads at Mach 1.2. However, it has also been found that, despite a turbulent boundary layer, the critical dynamic pressure for flutter almost drops to zero if the in-plane load approaches the critical load for Euler buckling. Further analysis on postcritical flutter revealed that a flexible panel subjected to a boundary layer behaves similarly to a panel in inviscid flow at a lower dynamic pressure, leading to the conclusion that the turbulent boundary layer scales down the effective dynamic load. This result further shows that the aeroelastic design of flexible plates based on inviscid flow models is a conservative approach. Representative results have been discussed by means of bifurcation curves, modal participation analysis, frequency spectra, phase plots, and Poincare maps.
机译:众所周知,在低超声速流动中,弹性板的气动弹性稳定性显着降低。可能由于相邻结构的变形而引起的平面内压缩载荷会进一步降低。因此,这是超音速飞机或火箭设计中的重要课题。在最近的研究表明由于湍流边界层而增加了空气动力学阻尼的鼓舞下,本研究应用了三种不同的空气动力学模型以及von Karman板方程,表明该模型的静态稳定性区域也有显着扩大。在1.2马赫的准静态平面内载荷作用下的平板。然而,还发现,尽管边界层湍流,但如果面内载荷接近欧拉屈曲的临界载荷,则颤动的临界动压力几乎降至零。对后临界颤动的进一步分析表明,在较低的动压力下,经受边界层作用的柔性面板在无粘性流中的行为与面板类似,从而得出结论:湍流边界层减小了有效动载荷。该结果进一步表明,基于无粘性流模型的柔性板的气动弹性设计是一种保守的方法。通过分叉曲线,模态参与分析,频谱,相位图和庞加莱图对代表性结果进行了讨论。

著录项

  • 来源
    《AIAA Journal》 |2016年第11期|3632-3646|共15页
  • 作者

    Alder Marko;

  • 作者单位

    German Aerosp Ctr, DLR, Inst Aerodynam & Flow Technol, Lilienthalpl 7, D-38108 Braunschweig, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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