盘间流第一分叉的性质

Nathalie Cousin-Rittemard, Olivier Daube, Patrick Le Quéré
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引用次数: 15

摘要

通过直接数值模拟研究了非定常过渡。当雷诺数高于阈值1%时,观察到从稳定行为到混沌行为的直接转变。定子边界层的对流不稳定性似乎与向混沌的直接过渡有关。低空间分辨率会引发边界层径向对流不稳定。结果表明,曲率会产生尖锐的梯度,这需要高空间分辨率。然而,负责向周期解过渡的Hopf分岔的定位独立于网格的细化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sur la nature de la première bifurcation des écoulements interdisques

The transition to unsteadiness is studied by direct numerical simulation. A direct transition from steady to chaotic behavior is observed for a Reynolds number 1 % above threshold. The convective instability of the stator boundary layer seems to be related to the direct transition to chaos. Low spatial resolution can trigger the radial convective instability of the boundary layer. It is shown that the curvature induces sharp gradients which require high spatial resolution. Nevertheless, the Hopf bifurcation responsible for the transition to periodic solutions has been located independently of mesh refinement.

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