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On the mixing length eddies and logarithmic mean velocity profile in wall turbulence

Authors :
Heisel, Michael
de Silva, Charitha M.
Hutchins, Nicholas
Marusic, Ivan
Guala, Michele
Source :
J. Fluid Mech. 887 (2020) R1
Publication Year :
2019

Abstract

Since the introduction of the logarithmic law of the wall more than 80 years ago, the equation for the mean velocity profile in turbulent boundary layers has been widely applied to model near-surface processes and parameterise surface drag. Yet the hypothetical turbulent eddies proposed in the original logarithmic law derivation and mixing length theory of Prandtl have never been conclusively linked to physical features in the flow. Here, we present evidence that suggests these eddies correspond to regions of coherent streamwise momentum known as uniform momentum zones (UMZs). The arrangement of UMZs results in a step-like shape for the instantaneous velocity profile, and the smooth mean profile results from the average UMZ properties, which are shown to scale with the friction velocity and wall-normal distance in the logarithmic region. These findings are confirmed across a wide range of Reynolds number and surface roughness conditions from the laboratory scale to the atmospheric surface layer.<br />Comment: Version 2 includes a new title and minor edits for clarification based on peer review. No changes were made to the primary results and conclusions. Version 3 corrected two important typos in the text related to the results

Subjects

Subjects :
Physics - Fluid Dynamics

Details

Database :
arXiv
Journal :
J. Fluid Mech. 887 (2020) R1
Publication Type :
Report
Accession number :
edsarx.1912.02208
Document Type :
Working Paper
Full Text :
https://doi.org/10.1017/jfm.2020.23