English

Tracer density discontinuities in turbulent flows: simple model and scaling laws

Fluid Dynamics 2007-10-29 v1 Atmospheric and Oceanic Physics

Abstract

Mixing in fully developed incompressible turbulent flows is known to lead to a cascade of discontinuity fronts of passive scalar fields. A one-dimensional (1D) variant of Baker's map is developed, capturing the main mechanism responsible for the emergence of these discontinuities. For this 1D model, expressions for the height-distribution function of the discontinuity fronts and structure function scaling exponents ζp\zeta_p are derived [for Kolmogorov turbulence, ζp=23log3(p+1)\zeta_p=\frac 23\log_3(p+1)]. These analytic findings are in a good agreement with both our 1D simulations, and the results of earlier numerical and experimental studies.

Keywords

Cite

@article{arxiv.0710.5003,
  title  = {Tracer density discontinuities in turbulent flows: simple model and scaling laws},
  author = {Jaan Kalda and Aleksandr Morozenko},
  journal= {arXiv preprint arXiv:0710.5003},
  year   = {2007}
}

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4 pages