English

Folding dynamics and its intermittency in turbulence

Fluid Dynamics 2023-04-13 v1

Abstract

Fluid elements deform in turbulence by stretching and folding. In this work, by projecting the material deformation tensor onto the largest stretching direction, the dynamics of folding is depicted through the evolution of the material curvature. Results from direct numerical simulation (DNS) show that the curvature growth exhibits two regimes, first a linear stage dominated by folding fluid elements through a persistent velocity Hessian which then transitions to an exponential growth driven by the stretching of already strongly bent fluid elements. This transition leads to strong curvature intermittency at later stages, which can be explained by a proposed curvature-evolution model. The link between velocity Hessian to folding provides a new way to understand the crucial steps in energy cascade and mixing in turbulence beyond the classical linear description.

Keywords

Cite

@article{arxiv.2301.10341,
  title  = {Folding dynamics and its intermittency in turbulence},
  author = {Yinghe Qi and Charles Meneveau and Greg Voth and Rui Ni},
  journal= {arXiv preprint arXiv:2301.10341},
  year   = {2023}
}
R2 v1 2026-06-28T08:19:12.088Z