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首页> 外文期刊>The Journal of the Acoustical Society of America >Aeroelastic structural acoustic coupling: Implications on the control of turbulent boundary-layer noise transmission
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Aeroelastic structural acoustic coupling: Implications on the control of turbulent boundary-layer noise transmission

机译:气动弹性结构声耦合:对湍流边界层噪声传输的控制意义

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摘要

A method of formulating a model to evaluate the aeroelastic structural acoustic response of a panel subjected to turbulent boundary layer (TBL) noise sources and coupled with full potential flow aerodynamics is presented. Reduced-order models of both the aerodynamics and the structural acoustic coupling are presented such that a state-variable realization of the entire system dynamics can be developed for future active control system design and synthesis with modern and robust control theory. Results from this study demonstrate the importance of including aeroelastic coupling in modeling the structural acoustic response of panels for interior noise control on modern aircraft. At subsonic flow conditions, the aeroelastic coupling serves to increase the transmission loss across the panel with increasing Mach number; however, the power spectrum of the TBL noise source increases with increasing Mach number as well and thus offsets this benefit to some degree. Results from this study also serve to demonstrate that for future analysis of robust stability and performance, variations in the plant dynamics due to variations in flow conditions must be considered in the design of broadband, feedback, active structural acoustic control systems.
机译:提出了一种建立模型的方法,以评估面板的气动弹性结构声学响应,该面板受到湍流边界层(TBL)噪声源并与全势能流动空气动力学耦合。提出了空气动力学和结构声耦合的降阶模型,从而可以开发出用于整个系统动力学的状态变量实现,以用于未来的主动控制系统设计和现代和鲁棒控制理论的综合。这项研究的结果表明,在对现代飞机内部噪声控制的面板结构声学响应进行建模时,必须包括气动弹性耦合。在亚音速流动条件下,随着马赫数的增加,气动弹性耦合会增加跨面板的传输损耗;但是,TBL噪声源的功率谱也随着马赫数的增加而增加,因此在某种程度上抵消了这种好处。这项研究的结果还表明,对于未来的稳健性和性能分析,在设计宽带,反馈,有源结构声学控制系统时,必须考虑由于流动条件的变化而引起的工厂动态变化。

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