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The investigation of aeroelastic effects on the elastic wave propagation and radiated noise of periodic structures

机译:气动弹性对周期性结构弹性波传播和辐射噪声的影响研究

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In classic aeroelastic and flutter studies the natural modes of the structures are analysed with and without flow coupling. The study of travelling elastic waves in presence of flow, or travelling flutter waves, even though being suggested in many works in the literature, never had a deep and practical application. Here, within a finite element framework, a wave-based approach is coupled with supersonic and subsonic aerodynamic theories to analyse the effect of one-sided mean flow on the structural dispersion curves. Different polynomial eigenvalue problems arise, depending on the aeroelastic model used, as for the observed effects on the elastic wave propagation. The method is here applied both on homogeneous and complex-shaped periodic cells. The sound transmission is also computed and compared to the case in which aeroelastic effects are included.
机译:在经典的空气弹性和颤振研究中,在有和没有流动耦合的情况下,都对结构的自然模式进行了分析。尽管在文献中有很多著作提出了对存在流动的行进弹性波或行进扑动波的研究,但从未有过深入而实际的应用。在此,在有限元框架内,将基于波的方法与超音速和亚音速空气动力学理论相结合,以分析单侧平均流量对结构弥散曲线的影响。对于所观察到的对弹性波传播的影响,取决于所使用的气动弹性模型,会出现不同的多项式特征值问题。该方法在此同时应用于均质和复杂形状的周期单元。还计算了声音传输,并将其与包含空气弹性效应的情况进行比较。

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