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Article
Thermal fluctuations in the dissipation range of homogeneous isotropic turbulence
Journal of Fluid Mechanics
  • John B. Bell, Lawrence Berkeley National Laboratory
  • Andrew Nonaka, Lawrence Berkeley National Laboratory
  • Alejandro L. Garcia, San Jose State University
  • Gregory Eyink, Johns Hopkins University
Publication Date
5-25-2022
Document Type
Article
DOI
10.1017/jfm.2022.188
Abstract

Using fluctuating hydrodynamics we investigate the effect of thermal fluctuations in the dissipation range of homogeneous isotropic turbulence. Simulations confirm theoretical predictions that the energy spectrum is dominated by these fluctuations at length scales comparable to the Kolmogorov length. We also find that the extreme intermittency in the far-dissipation range predicted by Kraichnan is replaced by Gaussian thermal equipartition.

Funding Number
MPS-663054
Funding Sponsor
U.S. Department of Energy
Keywords
  • homogeneous turbulence,
  • isotropic turbulence,
  • turbulence simulation
Citation Information
John B. Bell, Andrew Nonaka, Alejandro L. Garcia and Gregory Eyink. "Thermal fluctuations in the dissipation range of homogeneous isotropic turbulence" Journal of Fluid Mechanics Vol. 939 (2022)
Available at: http://works.bepress.com/alejandro_garcia1/114/