Literature DB >> 31631903

A multifractal model for the momentum transfer process in wall-bounded flows.

X I A Yang1, A Lozano-Durán1.   

Abstract

The cascading process of turbulent kinetic energy from large-scale fluid motions to small-scale and lesser-scale fluid motions in isotropic turbulence may be modelled as a hierarchical random multiplicative process according to the multifractal formalism. In this work, we show that the same formalism might also be used to model the cascading process of momentum in wall-bounded turbulent flows. However, instead of being a multiplicative process, the momentum cascade process is additive. The proposed multifractal model is used for describing the flow kinematics of the low-pass filtered streamwise wall-shear stress fluctuation τ l ' , where l is the filtering length scale. According to the multifractal formalism, 〈 τ ' 2 〉 ~ log ( R e τ ) and 〈 exp ( p τ l ' ) 〉 ~ ( L / l ) ζ p in the log-region, where Re τ is the friction Reynolds number, p is a real number, L is an outer length scale and ζ p is the anomalous exponent of the momentum cascade. These scalings are supported by the data from a direct numerical simulation of channel flow at Re τ = 4200.

Keywords:  turbulence theory; turbulent boundary layers; turbulent flows

Year:  2017        PMID: 31631903      PMCID: PMC6800688          DOI: 10.1017/jfm.2017.406

Source DB:  PubMed          Journal:  J Fluid Mech        ISSN: 0022-1120            Impact factor:   3.627


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