Efficiency of energy and enstrophy transfers in periodical flows
Efficiency of energy and enstrophy transfers in periodical flows
复制标题
周期性流动中的能量和熵转移效率
DOI:
10.1063/5.0142848
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发表时间:
2023
影响因子:
4.6
通讯作者:
A. Stocchino
中科院分区:
文献类型:
--
作者:
A. De Leo;A. Stocchino
We apply coarse-graining technique to understand the efficiency of the scale-to-scale transport of energy and enstrophy in quasi-two-dimensional weakly turbulent periodic flow. The investigated periodic flow resembles the propagation of a monochromatic tide in a tidal channel, connected to open sea through an inlet. The interaction of the periodic flow with the inlet mouth generates vortical structures in a wide spectrum of scales and recently has been shown how the corresponding energy and enstrophy fluxes change their signs depending on tidal phase. In the present study, we are interested to extend the analysis to the efficiency of the nonlinear transfer rates by analyzing the geometric alignment between the turbulent stresses and the strain rates for the energy, and the vorticity stress and large scale vorticity gradient for the enstrophy. Our results suggest that, depending on the phase of the period, energy is efficiently transferred to larger scales (inverse cascade) in a finite range of scales, whereas the observed direct energy cascade for very small and very large scales is much less efficient. Enstrophy shows similar behaviors in terms of transitions between direct and inverse cascading, however, all transfers seem to be relatively inefficient.