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Scaling of the bursting frequency in turbulent boundary layers

Published online by Cambridge University Press:  20 April 2006

R. F. Blackwelder
Affiliation:
Department of Aerospace Engineering, University of Southern California, Los Angeles, California
J. H. Haritonidis
Affiliation:
Department of Aerospace Engineering, University of Southern California, Los Angeles, California Present address: Massachusetts Institute of Technology, Dept of Aeronautics and Astronautics, 37-461, Cambridge, MA 02139.

Abstract

The bursting frequency in turbulent boundary layers has been measured over the Reynolds-number range 103 < U/ν < 104. When scaled with the variables appropriate for the wall region, the non-dimensional frequency was constant independent of Reynolds number. A strong effect of the sensor size was noted on the measured bursting frequency. Only sensors having a spatial scale less than twenty viscous lengthscales were free from spatial-averaging effects and yielded consistent results. The spatial-resolution problem was apparently the reason for erroneous results reported in the past.

Type
Research Article
Copyright
© 1983 Cambridge University Press

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References

Achia, B. U. & Thompson, D. W. 1977 J. Fluid Mech. 81, 439.
Alfredsson, P. H. & Johansson, A. V. 1982 Timescales for turbulent channel flow. Royal Inst. Tech., Stockholm, Rep. TRITA-MEK-82-11.Google Scholar
Bakewell, H. P. & Lumley, J. L. 1967 Phys. Fluids 10, 1880.
Black, T. J. 1966 In Proc. Heat Transfer and Fluid Mechanics Institute, p. 366. Stanford University Press.
Blackwelder, R. F. 1979 In Coherent Structures of Turbulent Boundary Layers (ed. C. R. Smith & D. E. Abbott), p. 211. Lehigh University.
Blackwelder, R. F. & Eckelmann, H. 1978 In Structure and Mechanism of Turbulence (ed. H. Fiedler). Lecture Notes in Physics, p. 190. Springer.
Blackwelder, R. F. & Kaplan, R. E. 1972 Intermittent Structures in Turbulent Boundary Layers, NATO-AGARD CP 93. London: Technical Editing and Reproduction.
Blackwelder, R. F. & Kaplan, R. E. 1976 J. Fluid Mech. 76, 89.
Brown, G. L. & Thomas, A. S. W. 1977 Phys. Fluids Suppl. 20, S 243.
Chambers, F. W., Murphy, H. D. & McELIGOT, D. M. 1983 J. Fluid Mech. 127, 403.
Chen, C. H. P. & Blackwelder, R. F. 1978 J. Fluid Mech. 89, 1.
Coles, D. 1979 In Coherent Structures of Turbulent Boundary Layers (ed. C. R. Smith & D. E. Abbott), p. 462. Lehigh University.
Corino, E. R. & Brodkey, R. S. 1969 J. Fluid Mech. 37, 1.
Donohhue, G. L., Tiederman, W. G. & Reischman, M. M. 1972 J. Fluid Mech. 56, 559.
Falco, R. 1980 Production of Turbulence Near a Wall, AIAA-80-1356.
Johansson, A. V. & Alfredsson, P. H. 1982 J. Fluid Mech. 122, 295.
Kim, H. T., Kline, S. J. & Reynolds, W. D. 1971 J. Fluid Mech. 50, 733.
Kline, S. J., Reynolds, W. C., Schraub, J. A. & Runstadler, P. W. 1967 J. Fluid Mech. 30, 741.
Laufer, J. & BADRI NARAYANAN, M. A. 1971 Phys. Fluids 14, 182.
Lee, M. K., Eckelmann, L. D. & Hanratty, T. J. 1974 J. Fluid Mech. 66, 17.
Oldakeer, D. & Tiederman, W. G. 1977 Phys. Fluids Suppl. 20, S133.
Rao, K., Narasimha, R. & BADRI NARAYANAN, M. A. 1969 Ind. Inst. Sci. Rep. 69FM8.
Rao, K., Narasimha, R. & BADRI NARAYANAN, M. A. 1971 J. Fluid Mech. 48, 339.
Schraub, F. A. & Kline, S. J. 1965 Stanford University Rep. MD-12.
Smith, C. R. & ABBOTT, D. E. (eds) 1979 Coherent Structures of Turbulent Boundary Layers. Lehigl. University.
Ueda, H. & Hinze, J. O. 1975 J. Fluid Mech. 67, 125.
Van Maanen, H. R. E. 1980 In Turbulent Boundary Layers – Experiments, Theory and Modelling, AGARD CP 271, p. 3. London: Technical Editing and Reproduction.
Willmarth, W. W. & Bogar, T. J. 1977 Phys. Fluids. Suppl. 20, S 9.
Willmarth, W. W. & Sharma, L. K. 1983 Study of turbulent structures with hot-wires smaller than the viscous lengthscale. Submitted to J. Fluid Mech.Google Scholar
Zakkay, V., Barra, V. & Hozumi, K. 1980 In Turbulent Boundary Layers – Experiments, Thevry & Modelling, AGARD CP 271, p. 4. Technical Editing and Reproduction.
Zakkay, V., Barra, V. & Wang, C. R. 1978 AIAA J. 17, 356.