arXiv · 1701.02566
Development of high vorticity in incompressible 3D Euler equations: influence of initial conditions
Abstract
The incompressible three-dimensional ideal flows develop very thin pancake-like regions of increasing vorticity. These regions evolve with the scaling $\omega_{\max}(t)\propto\ell(t)^{-2/3}$ between the vorticity maximum and pancake thickness, and provide the leading contribution to the energy spectrum, where the gradual formation of the Kolmogorov interval $E_{k}\propto k^{-5/3}$ is observed for some initial flows [Agafontsev et. al, Phys. Fluids 27, 085102 (2015)]. With the massive numerical simulations, in the present paper we study the influence of initial conditions on the processes of pancake formation and the Kolmogorov energy spectrum development.
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D. S. Agafontsev, E. A. Kuznetsov, A. A. Mailybaev. 2017-01-10. Development of high vorticity in incompressible 3D Euler equations: influence of initial conditions. https://doi.org/10.1134/s002136401622001x
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