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Nonlinear global resonance analysis of an embedded plate interacting with outside subsonic airflow

机译:与外部亚音速气流相互作用的嵌入式板的非线性全局共振分析

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摘要

The nonlinear global resonances of a viscous damper supported embedded plate interacting with outside axial subsonic potential airflow are investigated. The nonlinear equation of motion of the plate is derived based on the Burger's nonlinear plate model and discretized into nonlinear ordinary differential equations with multiple degrees of freedom by using the assumed mode method. The perturbation aerodynamic pressure caused by the coupling of the plate and the outside subsonic airflow is modeled by the linear potential flow theory. The amplitude-frequency curves of the steady state responses of the plate are obtained by numerical computations. The global nonlinear primary resonance properties of the plate are analyzed. The effects of the flow velocity, the excitation amplitude and the viscous damping coefficient on the steady state response properties of the plate are discussed. From the numerical simulations, some novel nonlinear dynamic phenomena of the vibration modes are observed and some dynamic properties of the plate are drawn. (C) 2018 Elsevier B.V. All rights reserved.
机译:研究了粘性阻尼器支撑的嵌板与外部轴向亚音速潜在气流相互作用的非线性全局共振。板块的非线性运动方程是基于Burger的非线性板块模型导出的,并使用假定模式方法离散为具有多个自由度的非线性常微分方程。由板和外部亚音速气流的耦合引起的摄动空气动力压力通过线性势流理论建模。通过数值计算获得了板稳态响应的幅频曲线。分析了板的整体非线性初级共振特性。讨论了流速,激励幅度和粘性阻尼系数对板稳态响应特性的影响。通过数值模拟,观察到了一些新颖的振动模式非线性动力学现象,并得出了板的一些动力学特性。 (C)2018 Elsevier B.V.保留所有权利。

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