A low-dimensional model for turbulent shear flows

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Abstract

We analyse a low-dimensional model for turbulent shear flows. The model is based on Fourier modes and describes sinusoidal shear flow, in which the fluid between two free-slip walls experiences a sinusoidal body force. The model contains a total of nine modes, including modes describing the basic mean velocity profile and its modification, downstream vortices, streaks, and instabilities of streaks, with other modes being a consequence of the non-linear interactions. The transition to turbulence for the model is subcritical and intermittent, and the distributions of turbulent lifetimes are exponential, in agreement with observations in many shear flows.

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Moehlis, J., Faisst, H., & Eckhardt, B. (2004). A low-dimensional model for turbulent shear flows. New Journal of Physics, 6. https://doi.org/10.1088/1367-2630/6/1/056

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