Quadrant analysis of a transitional boundary layer subject to free-stream turbulence

This paper presents analyses of particle image velocimetry measurements from a boundary layer on a flat plate subject to grid-generated free-stream turbulence. The pre-transition region and early stages of breakdown to turbulent spots are explored by means of quadrant analysis and quadrant hole anal...

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Published inJournal of fluid mechanics Vol. 658; pp. 310 - 335
Main Authors NOLAN, K. P., WALSH, E. J., McELIGOT, D. M.
Format Journal Article
LanguageEnglish
Published Cambridge, UK Cambridge University Press 10.09.2010
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ISSN0022-1120
1469-7645
DOI10.1017/S0022112010001758

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Abstract This paper presents analyses of particle image velocimetry measurements from a boundary layer on a flat plate subject to grid-generated free-stream turbulence. The pre-transition region and early stages of breakdown to turbulent spots are explored by means of quadrant analysis and quadrant hole analysis. By isolating the contributors to the Reynolds shear stresses, it is possible to identify coherent structures within the flow that are responsible for the production of TKE. It is found that so called ‘ejection’ events are the most significant form of disturbance, exhibiting the largest amplitude behaviour with increased negative spanwise vorticity. Sweep events become increasingly large close to the wall with increased Reynolds number and intermittency.
AbstractList This paper presents analyses of particle image velocimetry measurements from a boundary layer on a flat plate subject to grid-generated free-stream turbulence. The pre-transition region and early stages of breakdown to turbulent spots are explored by means of quadrant analysis and quadrant hole analysis. By isolating the contributors to the Reynolds shear stresses, it is possible to identify coherent structures within the flow that are responsible for the production of TKE. It is found that so called 'ejection' events are the most significant form of disturbance, exhibiting the largest amplitude behaviour with increased negative spanwise vorticity. Sweep events become increasingly large close to the wall with increased Reynolds number and intermittency.
This paper presents analyses of particle image velocimetry measurements from a boundary layer on a flat plate subject to grid-generated free-stream turbulence. The pre-transition region and early stages of breakdown to turbulent spots are explored by means of quadrant analysis and quadrant hole analysis. By isolating the contributors to the Reynolds shear stresses, it is possible to identify coherent structures within the flow that are responsible for the production of TKE. It is found that so called 'ejection' events are the most significant form of disturbance, exhibiting the largest amplitude behaviour with increased negative spanwise vorticity. Sweep events become increasingly large close to the wall with increased Reynolds number and intermittency. [PUBLICATION ABSTRACT]
Author WALSH, E. J.
McELIGOT, D. M.
NOLAN, K. P.
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  surname: NOLAN
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  surname: WALSH
  fullname: WALSH, E. J.
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  givenname: D. M.
  surname: McELIGOT
  fullname: McELIGOT, D. M.
  organization: 2Idaho National Laboratory (INL), Idaho Falls, ID 83415-3885, USA
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Keywords streaks
turbulent spots
boundary-layer transition
instability
Test facilities
Wind tunnel test
Turbulent bursting
Particle image velocimetry
Transition flow
Experimental study
Velocity measurement
Boundary layers
Turbulent laminar transition
Flat plate
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Snippet This paper presents analyses of particle image velocimetry measurements from a boundary layer on a flat plate subject to grid-generated free-stream turbulence....
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SubjectTerms Boundary layer
Boundary layers
boundary-layer transition
Exact sciences and technology
Flow velocity
Fluid dynamics
Fluid flow
Fluid mechanics
Fundamental areas of phenomenology (including applications)
instability
Instrumentation for fluid dynamics
Physics
Quadrants
Reynolds number
streaks
Transition to turbulence
Turbulence
Turbulent flow
Turbulent flows, convection, and heat transfer
turbulent spots
Vorticity
Walls
Title Quadrant analysis of a transitional boundary layer subject to free-stream turbulence
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