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空气动力学分支中罕见事件触发的转变

Rare Event-Triggered Transitions in Aerodynamic Bifurcation.

作者信息

Gayout Ariane, Bourgoin Mickaël, Plihon Nicolas

机构信息

Univ Lyon, ENS de Lyon, Univ Claude Bernard Lyon 1, CNRS, Laboratoire de Physique, F-69342 Lyon, France.

出版信息

Phys Rev Lett. 2021 Mar 12;126(10):104501. doi: 10.1103/PhysRevLett.126.104501.

Abstract

The transitions between two states of a bistable system are investigated experimentally and analyzed in the framework of rare-event statistics. Considering a disk pendulum swept by a flow in a wind tunnel, bistability between two aerodynamic branches is observed, with spontaneous transitions from one branch to the other. The waiting times before spontaneous transition are distributed following a double exponential as a function of the control parameter, spanning 4 orders of magnitude in time, for both transitions. Inspired by a model originally applied to the transition to turbulence, we show that, for the disk pendulum, both transitions are controlled by rare events of the aerodynamic forces acting on the disk which we propose to link in particular to the vortex shedding-induced fluctuations. Beyond the aerodynamic aspects, this work has interesting fundamental outcomes regarding the broad field of rare events in out-of-equilibrium systems.

摘要

在罕见事件统计框架下,对双稳态系统两个状态之间的转变进行了实验研究和分析。考虑一个在风洞中被气流吹拂的圆盘摆,观察到两个气动分支之间的双稳态,以及从一个分支到另一个分支的自发转变。自发转变前的等待时间作为控制参数的函数呈双指数分布,两种转变的时间跨度均为4个数量级。受最初应用于向湍流转变的模型启发,我们表明,对于圆盘摆,两种转变均由作用在圆盘上的气动力的罕见事件控制,我们认为这些事件尤其与涡旋脱落引起的波动有关。除了气动方面,这项工作在非平衡系统中罕见事件的广泛领域也有有趣的基础成果。

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