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Global Stability Analysis of Blasius Boundary-Layer Flow over a Compliant Panel Accounting for Axial and Vertical Displacements

机译:柔顺板占轴向和垂直位移的蓝色边界层流动的全局稳定性分析

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摘要

A state-space method is deployed in order to investigate the global stability of the Blasius base flow over a finite compliant panel embedded between rigid upstream and downstream wall sections accounting both for axial and vertical structural displacements. It is shown that global temporal instability can occur through the resonance between the Travelling-Wave Flutter (TWF) or Tollmien-Schlichting Wave (TSW) instability and the structural modes due to the vertical motion of the compliant section, while the axial structural modes remain stable in time. Local spatial stability of the least stable global temporal TSW mode reveals that a downstream amplified axial structural mode coexists with the downstream amplified TSW mode and it is stabilized by increasing the panel stiffness and destabilized as the Reynolds number decreases.
机译:展开了一种状态空间方法,以便在嵌入刚性上游和下游墙壁部分之间的有限兼容的面板上探讨蓝色底座流动的全局稳定性,用于轴向和垂直结构位移。结果表明,由于柔顺部分的垂直运动,通过行进波颤振(TWF)或TOLLMIEN-SCHLICHTICE波(TSW)不稳定性和结构模式之间的共振发生全局时间不稳定性,而轴向结构模式仍然存在及时稳定。最小稳定的全局时间TSW模式的局部空间稳定性揭示了下游放大的轴向结构模式与下游放大的TSW模式共存,并且通过增加面板刚度并且由于雷诺数减小而稳定而稳定。

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