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Structural changes of laminar separation bubbles induced by global linear instability

机译:整体线性不稳定性引起的层流分离气泡的结构变化

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摘要

The topology of the composite flow fields reconstructed by linear superposition of a two-dimensional boundary layer flow with an embedded laminar separation bubble and its leading three-dimensional global eigenmodes has been studied. According to critical point theory, the basic flow is structurally unstable; it is shown that in the presence of three-dimensional disturbances the degenerate basic flow topology is replaced by a fully three-dimensional pattern, regardless of the amplitude of the superposed linear perturbations. Attention has been focused on the leading stationary eigenmode of the laminar separation bubble discovered by Theofilis et al. (Phil. Trans. R. Soc. Lond. A, vol. 358, 2000, pp. 3229-3324); the composite flow fields have been fully characterized with respect to the generation and evolution of their critical points. The stationary global mode is shown to give rise to a three-dimensional flow field which is equivalent to the classical U-shaped separation, defined by Hornung & Perry (Z. Flugwiss. Weltraumforsch., vol. 8, 1984, pp. 77-87), and induces topologies on the surface streamlines that are resemblant to the characteristic stall cells observed experimentally.
机译:研究了通过二维边界层流与层状分离气泡的线性叠加及其主导的三维整体本征模的线性叠加重建的复合流场的拓扑结构。根据临界点理论,基本流动在结构上是不稳定的。结果表明,在存在三维扰动的情况下,退化的基本流动拓扑被完全的三维模式所取代,而与叠加线性扰动的幅度无关。 Theofilis等人发现了层状分离气泡的领先静止本征模态。 (Phil.Trans.R.Soc.Lond.A,第358卷,2000,第3229-3324页);复合流场已就其临界点的生成和演化得到充分表征。静态全局模式显示产生了一个三维流场,该流场等效于Hornung&Perry(Z. Flugwiss。Weltraumforsch。,vol。8,1984,pp。77- 87),并在表面流线上产生与实验观察到的特征性失速细胞相似的拓扑。

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