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Passive Suppression of Panel Flutter Using a Nonlinear Energy Sink

机译:使用非线性能量水槽的面板颤动的被动抑制

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A nonlinear energy sink (NES) is used to suppress panel flutter. A nonlinear aeroelastic model for a two-dimensional flat panel with an NES in supersonic flow is established using the Galerkin method. First-order piston aerodynamic theory is adopted to build the aerodynamic load. The effects of NES parameters on flutter boundaries of the panel are investigated using Lyapunov’s indirect method. The mechanism of the NES suppression of panel flutter is studied through energy analysis. Effects of NES parameters on aeroelastic responses of the panel are obtained, and a design technique is adopted to find a suitable combination of parameter values of the NES that suppresses the panel flutter effectively. Results show that the NES can increase or reduce the onset dynamic pressure of the panel flutter and it can reduce the aeroelastic response amplitude effectively within a certain range of dynamic pressure behind the onset dynamic pressure. The installation position of the NES depends on the direction of the airflow. The robust characteristics should be considered to find the suitable combination of parameter values of the NES.
机译:非线性能量水槽(NES)用于抑制面板颤动。采用Galerkin方法建立了超声波流动中具有NE的二维平板的非线性空气弹性模型。采用一流的活塞空气动力学理论来构建空气动力学载荷。使用Lyapunov的间接方法研究了NES参数对面板颤动边界的影响。通过能量分析研究了面板颤动的NES抑制的机制。 NES参数在面板的空气弹性响应上的影响,采用设计技术来找到有效地抑制面板颤动的NE的参数值的合适组合。结果表明,NE可以增加或减小面板颤动的起始动态压力,可以有效地减少空气弹性响应幅度,在发病动态压力后面的一定范围内。 NE的安装位置取决于气流的方向。应考虑强大的特性来找到NE的参数值的合适组合。

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