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首页> 外文期刊>Chaos, Solitons and Fractals: Applications in Science and Engineering: An Interdisciplinary Journal of Nonlinear Science >On using extreme values to detect global stability thresholds in multi-stable systems: The case of transitional plane Couette flow
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On using extreme values to detect global stability thresholds in multi-stable systems: The case of transitional plane Couette flow

机译:关于使用极限值检测多稳定系统中的整体稳定性阈值:过渡平面Couette流的情况

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Extreme Value Theory (EVT) is exploited to determine the global stability threshold Rg of plane Couette flow – the flow of a viscous fluid in the space between two parallel plates – whose laminar or turbulent behavior depends on the Reynolds number R. Even if the existence of a global stability threshold has been detected in simulations and experiments, its numerical value has not been unequivocally defined. Rg is the value such that for R > R_g, turbulence is sustained, whereas for R < R_g it is transient and eventually decays. We address the problem of determining R_g by using the extremes – maxima and minima – of the perturbation energy fluctuations. When R R_g, both the positive and negative extremes are bounded. As the critical Reynolds number is approached from above, the probability of observing a very low minimum increases causing asymmetries in the distributions of maxima and minima. On the other hand, the maxima distribution is unaffected as the fluctuations towards higher values of the perturbation energy remain bounded. This tipping point can be detected by fitting the data to the Generalized Extreme Value (GEV) distribution and by identifying R_g as the value of R such that the shape parameter of the GEV for the minima changes sign from negative to positive. The results are supported by the analysis of theoretical models which feature a bistable behavior.
机译:利用极值理论(EVT)确定平面Couette流(两个平行板之间空间中的粘性流体的流动)的整体稳定性阈值Rg,其层流或湍流行为取决于雷诺数R。即使存在在模拟和实验中已检测到整体稳定性阈值,其数值尚未明确定义。 Rg是这样的值:对于R> R_g,持续湍流,而对于R

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