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TRANSITION THRESHOLD AND THE SELF-SUSTAINING PROCESS

机译:过渡阈值和自我维持过程

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摘要

The self-sustaining process is a fundamental and generic three-dimensional non?linear process in shear flows. It is responsible for the existence of non-trivial traveling wave and time-periodic states. These states come in pairs, an upper branch and a lower branch. The limited data available to date suggest that the upper branch states provide a good first approximation to the statistics of tur?bulent flows. The upper branches may thus be understood as the "backbone" of the turbulent attractor while the lower branches might form the backbone of the boundary separating the basin of attraction of the laminar state from that of the turbulent state. Evidence is presented that the lower branch states tend to purely streaky flows, in which the streamwise velocity has an essential spanwise modulation, as the Reynolds number R tends to infinity. The streamwise rolls sustaining the streaks and the streamwise undulation sustaining the rolls, both scale like jR"1 in amplitude, just enough to overcome viscous dissipation. It is argued that this scaling is directly related to the observed R~l transition thresh?old. These results also indicate that the exact coherent structures never bifurcate from the laminar flow, not even at infinity. The scale of the key elements, streaks, rolls and streamwise undulation, remain of the order of the channel size. How?ever, the higher jc-harmonics show a slower decay with R than naively expected. The results indicate the presence of a warped critical layer.
机译:自我维持过程是剪切流量的基本和通用的三维非?线性过程。它负责存在非琐碎的旅行波和时间周期性状态。这些状态成对,一个上部分支和下部分支。迄今为止可用的有限数据表明,上部分支州为TUR的统计数据提供了良好的第一个近似值。因此,上分支可以被理解为湍流吸引子的“骨架”,而下部分支可以形成与湍流状态的骨架的边界的骨干分离。提出了下部分支状态倾向于纯粹的流动流动,其中流动速度具有必要的枝条调制,因为雷诺数R趋于无穷大。流动辊保持条纹和可流动的波动维持辊,两个尺寸,如幅度,幅度为幅度,足以克服粘性耗散。有人认为这种缩放与观察到的R〜L转换阈值直接相关?旧。这些结果还表明,确切的相干结构从未从层流中分叉,即使在无限远处也不会分叉。关键元素,条纹,卷和流动波动的比例仍然是通道尺寸的顺序。怎么样?较高的JC-Harmbors显示出较慢的衰减,而不是天真地预期。结果表明存在翘曲的关键层。

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