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Ginzburg-Landau description of laminar-turbulent oblique band formation in transitional plane Couette flow

机译:Ginzburg-Landau对过渡平面Couette流中层流湍流倾斜带形成的描述

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摘要

Plane Couette flow, the flow between two parallel planes moving in opposite directions, is an example of wall-bounded flow experiencing a transition to turbulence with an ordered coexistence of turbulent and laminar domains in some range of Reynolds numbers [R _g, R _t]. When the aspect-ratio is sufficiently large, this coexistence occurs in the form of alternately turbulent and laminar oblique bands. As R goes up trough the upper threshold R _t, the bands disappear progressively to leave room to a uniform regime of featureless turbulence. This continuous transition is studied here by means of under-resolved numerical simulations understood as a modelling approach adapted to the long time, large aspect-ratio limit. The state of the system is quantitatively characterised using standard observables (turbulent fraction and turbulence intensity inside the bands). A pair of complex order parameters is defined for the pattern which is further analysed within a standard Ginzburg-Landau formalism. Coefficients of the model turn out to be comparable to those experimentally determined for cylindrical Couette flow.
机译:平面Couette流是两个平行的平面之间沿相反方向移动的流,它是壁边界流的一个实例,该流经历了湍流过渡,在一定范围的雷诺数[R _g,R _t]中湍流和层流域有序共存。当纵横比足够大时,这种共存以湍流和层状倾斜带交替出现的形式发生。随着R上升通过上限R _t,谱带逐渐消失,为均匀的无特征湍流状态留出空间。在此,通过未解决的数值模拟来研究这种连续过渡,这些数值模拟被理解为适用于长时间,宽高比限制的建模方法。使用标准可观察物(带内的湍流分数和湍流强度)对系统状态进行定量表征。为该模式定义了一对复杂的顺序参数,并在标准的Ginzburg-Landau形式主义中进行了进一步分析。结果表明,该模型的系数可与实验得出的圆柱库埃特流量的系数相媲美。

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