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Vukoslavĉević, Petar Wallace, James M. and Balint, Jean-Louis 1991. The velocity and vorticity vector fields of a turbulent boundary layer. Part 1. Simultaneous measurement by hot-wire anemometry. Journal of Fluid Mechanics, Vol. 228, Issue. , p. 25.
  • CrossRef
  • Google Scholar

1991. A coherent structure model of the turbulent boundary layer and its ability to predict Reynolds number dependence. Philosophical Transactions of the Royal Society of London. Series A: Physical and Engineering Sciences, Vol. 336, Issue. 1641, p. 103.
  • CrossRef
  • Google Scholar

Fife, Paul C. 1992. Geometrical aspects of secondary motion in turbulent duct flow. Theoretical and Computational Fluid Dynamics, Vol. 4, Issue. 2, p. 51.
  • CrossRef
  • Google Scholar

Nagano, Y. and Tsuji, T. 1993. Engineering Turbulence Modelling and Experiments. p. 347.
  • CrossRef
  • Google Scholar

HONKAN, A. and ANDREOPOULOS, J. 1993. Experimental investigation of time-resolved vorticity in two dimensional turbulent boundary layer flows.
  • CrossRef
  • Google Scholar

Chen, Yen-Ming Ou, Yuh-Roung and Pearlstein, Arne J. 1993. Development of the wake behind a circular cylinder impulsively started into rotatory and rectilinear motion. Journal of Fluid Mechanics, Vol. 253, Issue. , p. 449.
  • CrossRef
  • Google Scholar

Tardu, S. Truong, T. V. and Tanguay, B. 1993. Bursting and structure of the turbulence in an internal flow manipulated by riblets. Applied Scientific Research, Vol. 50, Issue. 3-4, p. 189.
  • CrossRef
  • Google Scholar

Tardu, S. Truong, T. V. and Tanguay, B. 1993. Further Developments in Turbulence Management. Vol. 19, Issue. , p. 189.
  • CrossRef
  • Google Scholar

Rajagopalan, S. and Antonia, R. A. 1993. RMS spanwise vorticity measurements in a turbulent boundary layer. Experiments in Fluids, Vol. 14, Issue. 1-2, p. 142.
  • CrossRef
  • Google Scholar

Nagano, Y. and Tsuji, T. 1994. Recent developments in hot- and cold-wire techniques for measurements in turbulent shear flows near walls. Experimental Thermal and Fluid Science, Vol. 9, Issue. 2, p. 94.
  • CrossRef
  • Google Scholar

Klewicki, J. C. Murray, J. A. and Falco, R. E. 1994. Vortical motion contributions to stress transport in turbulent boundary layers. Physics of Fluids, Vol. 6, Issue. 1, p. 277.
  • CrossRef
  • Google Scholar

Ewing, D. Hussein, H.J. and George, W.K. 1995. Spatial resolution of parallel hot-wire probes for derivative measurements. Experimental Thermal and Fluid Science, Vol. 11, Issue. 2, p. 155.
  • CrossRef
  • Google Scholar

Fontaine, A. A. and Deutsch, S. 1995. Three-component, time-resolved velocity statistics in the wall region of a turbulent pipe flow. Experiments in Fluids, Vol. 18, Issue. 3, p. 168.
  • CrossRef
  • Google Scholar

Klewicki, J. C. Metzger, M. M. Kelner, E. and Thurlow, E. M. 1995. Viscous sublayer flow visualizations at Rθ≂1 500 000. Physics of Fluids, Vol. 7, Issue. 4, p. 857.
  • CrossRef
  • Google Scholar

Vukoslavcevic, Petar and Wallace, James M 1996. A 12-sensor hot-wire probe to measure the velocity and vorticity vectors in turbulent flow. Measurement Science and Technology, Vol. 7, Issue. 10, p. 1451.
  • CrossRef
  • Google Scholar

Mochizuki, S. and Nieuwstadt, F. T. M. 1996. Reynolds-number-dependence of the maximum in the streamwise velocity fluctuations in wall turbulence. Experiments in Fluids, Vol. 21, Issue. 3, p. 218.
  • CrossRef
  • Google Scholar

Klewicki, J. and Metzger, M. 1996. Viscous wall region structure in high and low Reynolds number turbulent boundary layers.
  • CrossRef
  • Google Scholar

Antonia, R. A. Rajagopalan, S. and Zhu, Y. 1996. Scaling of mean square vorticity in turbulent flows. Experiments in Fluids, Vol. 20, Issue. 5, p. 393.
  • CrossRef
  • Google Scholar

Klewicki, J.C. and Falco, R.E. 1996. Spanwise vorticity structure in turbulent boundary layers. International Journal of Heat and Fluid Flow, Vol. 17, Issue. 4, p. 363.
  • CrossRef
  • Google Scholar

Andreopoulos, Yiannis and Honkan, Anant 1996. Experimental techniques for highly resolved measurements of rotation, strain and dissipation-rate tensors in turbulent flows. Measurement Science and Technology, Vol. 7, Issue. 10, p. 1462.
  • CrossRef
  • Google Scholar

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On accurately measuring statistics associated with small-scale structure in turbulent boundary layers using hot-wire probes
  • Volume 219
  • J. C. Klewicki (a1) and R. E. Falco (a1)
  • DOI: https://doi.org/10.1017/S0022112090002889
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On accurately measuring statistics associated with small-scale structure in turbulent boundary layers using hot-wire probes
  • Volume 219
  • J. C. Klewicki (a1) and R. E. Falco (a1)
  • DOI: https://doi.org/10.1017/S0022112090002889
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On accurately measuring statistics associated with small-scale structure in turbulent boundary layers using hot-wire probes
  • Volume 219
  • J. C. Klewicki (a1) and R. E. Falco (a1)
  • DOI: https://doi.org/10.1017/S0022112090002889
Available formats Please select a format to save.
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