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 in | Journal of fluid mechanics Vol. 658; pp. 310 - 335 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Cambridge, UK
Cambridge University Press
10.09.2010
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Subjects | |
Online Access | Get full text |
ISSN | 0022-1120 1469-7645 |
DOI | 10.1017/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. |
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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. |
Author_xml | – sequence: 1 givenname: K. P. surname: NOLAN fullname: NOLAN, K. P. email: kevin.nolan@ul.ie organization: 1Stokes Institute, Department of Mechanical and Aeronautical Engineering, University of Limerick, Ireland – sequence: 2 givenname: E. J. surname: WALSH fullname: WALSH, E. J. organization: 1Stokes Institute, Department of Mechanical and Aeronautical Engineering, University of Limerick, Ireland – sequence: 3 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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References | S0022112010001758_ref13 S0022112010001758_ref11 S0022112010001758_ref10 S0022112010001758_ref1 S0022112010001758_ref2 S0022112010001758_ref3 S0022112010001758_ref4 Schlichting (S0022112010001758_ref19) 1979 S0022112010001758_ref9 Klebanoff (S0022112010001758_ref12) 1971; 10 S0022112010001758_ref18 S0022112010001758_ref5 S0022112010001758_ref17 S0022112010001758_ref16 S0022112010001758_ref6 S0022112010001758_ref7 S0022112010001758_ref15 S0022112010001758_ref14 S0022112010001758_ref8 S0022112010001758_ref24 S0022112010001758_ref23 S0022112010001758_ref21 S0022112010001758_ref20 Walsh (S0022112010001758_ref22) 2005 S0022112010001758_ref28 S0022112010001758_ref27 S0022112010001758_ref26 S0022112010001758_ref25 |
References_xml | – ident: S0022112010001758_ref17 doi: 10.1007/s00348-002-0455-2 – volume-title: Sixth European Turbomachinery Conference: Fluid Dynamics and Thermodynamics year: 2005 ident: S0022112010001758_ref22 – ident: S0022112010001758_ref7 doi: 10.1115/1.1928286 – ident: S0022112010001758_ref18 doi: 10.1007/978-3-540-72604-3_56 – ident: S0022112010001758_ref24 doi: 10.1115/1.2717622 – ident: S0022112010001758_ref14 doi: 10.1007/s00348-005-0040-6 – ident: S0022112010001758_ref6 doi: 10.1017/S0022112078001809 – ident: S0022112010001758_ref28 doi: 10.1175/JAS3990.1 – ident: S0022112010001758_ref9 doi: 10.1103/PhysRevLett.96.064501 – ident: S0022112010001758_ref27 doi: 10.1017/S0022112005003800 – ident: S0022112010001758_ref8 doi: 10.1146/annurev.fluid.39.050905.110135 – ident: S0022112010001758_ref3 doi: 10.1115/1.1860379 – ident: S0022112010001758_ref16 doi: 10.1016/0142-727X(87)90001-4 – ident: S0022112010001758_ref5 doi: 10.1017/S0022112004000941 – volume: 10 start-page: 1323 year: 1971 ident: S0022112010001758_ref12 article-title: Effect of free-stream turbulence on the laminar boundary layer publication-title: Bull. Am. Phys. Soc. – ident: S0022112010001758_ref10 doi: 10.1017/S0022112007008336 – ident: S0022112010001758_ref20 doi: 10.1007/s00348-003-0644-7 – ident: S0022112010001758_ref13 doi: 10.1017/S0022112073000315 – ident: S0022112010001758_ref26 doi: 10.1115/1.2717608 – ident: S0022112010001758_ref2 doi: 10.1017/S0022112084000380 – ident: S0022112010001758_ref1 doi: 10.1017/S0022112000001580 – ident: S0022112010001758_ref23 – ident: S0022112010001758_ref4 doi: 10.1063/1.2838594 – ident: S0022112010001758_ref21 doi: 10.1115/1.1521957 – ident: S0022112010001758_ref25 doi: 10.1017/S002211207200165X – ident: S0022112010001758_ref11 doi: 10.1017/S0022112000002469 – volume-title: Boundary Layer Theory year: 1979 ident: S0022112010001758_ref19 – ident: S0022112010001758_ref15 doi: 10.1017/S0022112006001893 |
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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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