Statistical structure of self-sustaining attached eddies in turbulent channel flow
File(s)20141223 JFM_YH_R2.pdf (2.83 MB)
Accepted version
Author(s)
Hwang, Y
Type
Journal Article
Abstract
The linear growth of the spanwise correlation length scale with the distance from the wall in the logarithmic region of wall-bounded turbulent flows has been understood as a reflection of Townsend’s attached eddies. Based on this observation, in the present study, we perform a numerical experiment, which simulates energy-containing motions only at a given spanwise length scale in the logarithmic region, using their self-sustaining nature found recently. The self-sustaining energy-containing motions at each of the spanwise length scales are found to be self-similar with respect to the given spanwise length. Furthermore, their statistical structures are consistent with those of the attached eddies in the original theory, providing direct evidence on the existence of Townsend’s attached eddies. It is shown that a single self-sustaining attached eddy is composed of two distinct elements, one of which is a long streaky motion reaching the near-wall region, and the other is a relatively short vortical structure carrying all the velocity components. For the given spanwise length
Date Issued
2015-02-12
Date Acceptance
2015-01-08
Citation
Journal of Fluid Mechanics, 2015, 767, pp.254-289
ISSN
1469-7645
Publisher
Cambridge University Press (CUP)
Start Page
254
End Page
289
Journal / Book Title
Journal of Fluid Mechanics
Volume
767
Copyright Statement
© 2015 Cambridge University Press. This paper has been accepted for publication and will appear in a revised form, subsequent to peer-review and/or editorial input by Cambridge University Press.
Identifier
https://www.cambridge.org/core/journals/journal-of-fluid-mechanics/article/statistical-structure-of-selfsustaining-attached-eddies-in-turbulent-channel-flow/9BCC29294F777AD6A47B3E9DD8AFC734
Subjects
Science & Technology
Technology
Physical Sciences
Mechanics
Physics, Fluids & Plasmas
Physics
turbulence simulation
turbulence theory
turbulent boundary layers
NEAR-WALL TURBULENCE
EXACT COHERENT STRUCTURES
LOW-REYNOLDS-NUMBER
SCALE 3-DIMENSIONAL STRUCTURES
BOUNDARY-LAYER-FLOWS
PLANE COUETTE-FLOW
SHEAR FLOWS
LOGARITHMIC REGION
EDDY HYPOTHESIS
OUTER-LAYER
Fluids & Plasmas
01 Mathematical Sciences
09 Engineering
Publication Status
Published
Date Publish Online
2015-02-12