Willis Ashley P, Kerswell Rich R
Department of Mathematics, University of Bristol, University Walk, Bristol BS8 1TW, United Kingdom.
Phys Rev Lett. 2008 Mar 28;100(12):124501. doi: 10.1103/PhysRevLett.100.124501. Epub 2008 Mar 24.
The recent discovery of unstable traveling waves (TWs) in pipe flow has been hailed as a significant breakthrough with the hope that they populate the turbulent attractor. We confirm the existence of coherent states with internal fast and slow streaks commensurate in both structure and energy with known TWs using numerical simulations in a long pipe. These only occur, however, within less energetic regions of (localized) "puff" turbulence at low Reynolds numbers (Re=2000-2400), and not at all in (homogeneous) "slug" turbulence at Re=2800. This strongly suggests that all currently known TWs sit in an intermediate region of phase space between the laminar and turbulent states rather than being embedded within the turbulent attractor itself. New coherent fast streak states with strongly decelerated cores appear to populate the turbulent attractor instead.
近期在管道流动中发现的不稳定行波(TWs)被誉为一项重大突破,人们希望它们能构成湍流吸引子。我们通过在长管道中的数值模拟,证实了存在具有内部快速和慢速条纹的相干态,其结构和能量与已知的行波相当。然而,这些相干态仅出现在低雷诺数(Re = 2000 - 2400)下(局部化)“脉冲”湍流能量较低的区域,而在Re = 2800的(均匀)“段塞”湍流中根本不会出现。这有力地表明,所有目前已知的行波都位于层流和湍流状态之间的相空间中间区域,而不是嵌入在湍流吸引子本身之中。相反,具有强烈减速核心的新的相干快速条纹态似乎构成了湍流吸引子。