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University of Illinois at Urbana-Champaign

Experimental Investigation of Acceleration and Velocity Fields in Turbulent Channel Flow

Abstract

dc:description

The velocity time derivatives are associated predominantly with small scales in both space and time. Examination of instantaneous and estimates of the conditionally averaged velocity time-derivative fields indicates that the smaller-scale vortices leave a convective imprint upon the time derivatives. Further, the streamwise spectra of the velocity time-derivative support the notion that convective effects dominate the smaller scales of the flow. Comparison between the bulk convective-derivative and time-derivative spectra illustrate this behavior. At low wavenumbers, the bulk convective-derivative and time-derivative spectra coincide with one another, implying that the larger scales are dominated by evolution. At moderate wavenumbers (coincident with the streamwise spacing of the vortices associated with the outer-layer vortex organization noted earlier), the energy associated with convection reaches a maximum. With increasing Reynolds number, the influence of convective effects diminishes at all wavenumbers in terms of its contribution to the energy of the velocity time derivative. This behavior is quite encouraging from the LES-modeling viewpoint, where capturing the true evolution of the flow is the main goal.

Degree

thesis:*
Name thesis:degree_name
Ph.D.
Level thesis:degree_level
Dissertation
Discipline thesis:degree_discipline
Theoretical and Applied Mechanics
Grantor
University of Illinois at Urbana-Champaign
Year dc:date
2015

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Christensen, Kenneth Thor
Contributors dc:contributor
  • Adrian, Ronald J.

Subjects

dc:subject × 1

Rights

Language dc:language
eng

Identifiers

dc:identifier.*
Identifier
(MiAaPQ)AAI3017051
OAI identifier oai:identifier
oai:www.ideals.illinois.edu:2142/87693

Chain of custody

source
Harvested from
University of Illinois - Urbana-Champaign
Base URL
www.ideals.illinois.edu/oai-pmh
Last updated
2026-07-22
Source record
OAI-PMH GetRecord
citation

Christensen, Kenneth Thor. Experimental Investigation of Acceleration and Velocity Fields in Turbulent Channel Flow. Dissertation thesis, University of Illinois at Urbana-Champaign, 2015. http://hdl.handle.net/2142/87693