Journal article

Multiscale geometry and scaling of the turbulent-nonturbulent interface in high reynolds number boundary layers

CM De Silva, J Philip, K Chauhan, C Meneveau, I Marusic

Physical Review Letters | Published : 2013

Abstract

The scaling and surface area properties of the wrinkled surface separating turbulent from nonturbulent regions in open shear flows are important to our understanding of entrainment mechanisms at the boundaries of turbulent flows. Particle image velocimetry data from high Reynolds number turbulent boundary layers covering three decades in scale are used to resolve the turbulent-nonturbulent interface experimentally and, for the first time, determine unambiguously whether such surfaces exhibit fractal scaling. Box counting of the interface intersection with the measurement plane exhibits power-law scaling, with an exponent between -1.3 and -1.4. A complementary analysis based on spatial filter..

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Grants

Funding Acknowledgements

The authors thank the Australian Research Council for the financial support. C. M.'s visit to the University of Melbourne was supported by the Australian-American Fulbright Commission Senior Scholar Fellowship and a University of Melbourne MERIT Visiting Scholarship.