Journal article
Application of the stochastic closure theory to the Townsend-Perry constants
John Kaminsky, Joe Klewicki, Bjorn Birnir
Physical Review E | American Physical Society | Published : 2019
Abstract
We compare the stochastic closure theory (SCT) to the Townsend-Perry constants as estimated from measurements in the Flow Physic Facility (FPF) at the University of New Hampshire. First, we explain the derivation of the Townsend-Perry constants, which were originally formulated by Meneveau and Marusic, in analogy with a Gaussian distribution. However, this was not supported by the data. Instead, the data show a sub-Gaussian relation that was explained by Birnir and Chen. We show herein how the SCT can be used to compute the constants, which explains their sub-Gaussian relations. We then compare the SCT theory predictions, including Reynolds-number-dependent corrections, with the data, showin..
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Awarded by UC Santa Barbara Academic Senate - Australian Research Council (ARC)
Funding Acknowledgements
The authors would like to thank X. Chen for invaluable conversation. The research was supported by a grant from the UC Santa Barbara Academic Senate and partially funded by Australian Research Council (ARC) Grant No. DP170103464, whose support is gratefully acknowledged.