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Rotating helical turbulence. II. Intermittency, scale invariance, and structures

机译:旋转螺旋湍流。二。间歇性,尺度不变性和结构

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摘要

We study the intermittency properties of the energy and helicity cascades in two 1536(3) direct numerical simulations of helical rotating turbulence. Symmetric and antisymmetric velocity increments are examined, as well as probability density functions of the velocity field and of the helicity density. It is found that the direct cascade of energy to small scales is scale invariant and nonintermittent, whereas the direct cascade of helicity is highly intermittent. Furthermore, the study of structure functions of different orders allows us to identify a recovery of isotropy of strong events at very small scales in the flow. Finally, we observe the juxtaposition in space of strong laminar and persistent helical columns next to time-varying vortex tangles, the former being associated with the self-similarity of energy and the latter with the intermittency of helicity.
机译:我们在两个螺旋旋转湍流的1536(3)直接数值模拟中研究了能量和螺旋级联的间歇性。检查对称和反对称的速度增量,以及速度场和螺旋度密度的概率密度函数。发现小尺度能量的直接级联是尺度不变且非间歇的,而螺旋度的直接级联则是高度间歇的。此外,对不同阶的结构函数的研究使我们能够确定流动中很小规模的强事件各向同性的恢复。最后,我们观察到时变涡旋缠结旁边的强层流和持久螺旋柱空间并置,前者与能量的自相似性相关,后者与螺旋的间歇性相关。

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