在流体弹球中通往混乱的路线

Nan Deng, L. Pastur, M. Morzynski, B. R. Noack
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引用次数: 8

摘要

流体弹球是最近提出的一种有吸引力和有效的流动配置,用于探索机器学习流体流动控制。在这篇文章中,我们关注的是在没有驱动的情况下,随着雷诺数的平稳增加,系统走向混沌的路径。发现它属于Newhouse-Ruelle-Takens类型,具有次级干草叉分叉,在通往准周期性的路线上打破了平均流场的对称性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Route to Chaos in the Fluidic Pinball
The fluidic pinball has been recently proposed as an attractive and effective flow configuration for exploring machine learning fluid flow control. In this contribution, we focus on the route to chaos in this system without actuation, as the Reynolds number is smoothly increased. It was found to be of the Newhouse-Ruelle-Takens kind, with a secondary pitchfork bifurcation that breaks the symmetry of the mean flow field on the route to quasi-periodicity.
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