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A weakly nonlinear amplitude equation approach to the bypass transition in the two-dimensional Lamb-Oseen vortex
被引:0
作者:
Ducimetiere, Yves-Marie
[1
]
Gallaire, Francois
[1
]
机构:
[1] Ecole Polytech Fed Lausanne, Lab Fluid Mech & Instabil, CH-1015 Lausanne, Switzerland
基金:
芬兰科学院;
瑞士国家科学基金会;
关键词:
instability;
nonlinear dynamical systems;
vortex flows;
TRANSIENT GROWTH;
PERTURBATION GROWTH;
VORTICES;
STABILITY;
EVOLUTION;
TRIPOLES;
D O I:
10.1017/jfm.2023.856
中图分类号:
O3 [力学];
学科分类号:
08 ;
0801 ;
摘要:
We analytically derive an amplitude equation for the weakly nonlinear evolution of the linearly most amplified response of a non-normal dynamical system. The development generalizes the method proposed in Ducimetiere et al. (J. Fluid Mech., vol. 947, 2022, A43), in that the base flow now arbitrarily depends on time, and the operator exponential formalism for the evolution of the perturbation is not used. Applied to the two-dimensional Lamb-Oseen vortex, the amplitude equation successfully predicts the nonlinearities to weaken or reinforce the transient gain in the weakly nonlinear regime. In particular, the minimum amplitude of the linear optimal initial perturbation required for the amplitude equation to lose a solution, interpreted as the flow experiencing a bypass (subcritical) transition, is found to decay as a power law with the Reynolds number. Although with a different exponent, this is recovered in direct numerical simulations, showing a transition towards a tripolar state. The simplicity of the amplitude equation and the link made with the sensitivity formula permits a physical interpretation of nonlinear effects, in light of existing work on Landau damping and on shear instabilities. The amplitude equation also quantifies the respective contributions of the second harmonic and the spatial mean flow distortion in the nonlinear modification of the gain.
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