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首页> 外文期刊>Journal of Sound and Vibration >Non-modal dynamics before flow-induced instability in fluid-structure interactions
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Non-modal dynamics before flow-induced instability in fluid-structure interactions

机译:流体-结构相互作用中流致不稳定性之前的非模态动力学

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摘要

A theoretical investigation of the subcritical dynamics of typical fluid-structure interactions is carried out by applying the linear non-modal operators theory combined with direct numerical simulations. The cases of thin panel exposed to subsonic and supersonic fluid flows and pipe conveying a fluid are considered. In order to make the problem tractable for the rather wide range of cases, simple pressure models are employed, where the relevant instability is essentially of modal-coalescence type. Transient energy amplifications, here termed optimal and global, are found, which exhibit low-frequency oscillations corresponding to the continuous extraction/release of energy from/to the fluid. The low frequency is always related to the spacing between the imaginary parts of the coupling eigenvalues, which represent essentially the non-normal part of the spectrum. This suggests that the periodic transfers of energy along the route to the instability can be predicted by a simple model of damped forced vibrations. Although the major findings are obtained with crude pressure models, the authors' opinion is that most of the effects discussed in the paper should survive to the use of flow dynamics modeling based on full Navier-Stokes equations, at least at high Reynolds number flows.
机译:通过应用线性非模态算子理论与直接数值模拟相结合的方法,对典型的流体-结构相互作用的亚临界动力学进行了理论研究。考虑了薄板暴露于亚音速和超音速流体流以及输送流体的管道的情况。为了使问题在相当广泛的情况下都可以解决,采用了简单的压力模型,其中相关的不稳定性基本上是模态凝聚型的。发现了瞬态能量放大,这里称为最佳和全局,其表现出低频振荡,对应于从/向流体的连续提取/释放能量。低频始终与耦合特征值虚部之间的间隔有关,本质上代表频谱的非正常部分。这表明,可以通过简单的阻尼强迫振动模型来预测能量沿着路线到不稳定性的周期性传递。尽管主要的发现是通过原油压力模型获得的,但作者的观点是,本文中讨论的大多数效果都应能够幸免于使用基于完整Navier-Stokes方程的流体动力学建模,至少在高雷诺数流的情况下如此。

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