Low-dimensional representations of exact coherent states of the Navier-Stokes equations from the resolvent model of wall turbulence

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Abstract

We report that many exact invariant solutions of the Navier-Stokes equations for both pipe and channel flows are well represented by just a few modes of the model of McKeon and Sharma [J. Fluid Mech. 658, 336 (2010)JFLSA70022-112010.1017/S002211201000176X]. This model provides modes that act as a basis to decompose the velocity field, ordered by their amplitude of response to forcing arising from the interaction between scales. The model was originally derived from the Navier-Stokes equations to represent turbulent flows and has been used to explain coherent structure and to predict turbulent statistics. This establishes a surprising new link between the two distinct approaches to understanding turbulence.

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Sharma, A. S., Moarref, R., McKeon, B. J., Park, J. S., Graham, M. D., & Willis, A. P. (2016). Low-dimensional representations of exact coherent states of the Navier-Stokes equations from the resolvent model of wall turbulence. Physical Review E, 93(2). https://doi.org/10.1103/PhysRevE.93.021102

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