Surface imaging skin friction instrument and method

Optics: measuring and testing – Material strain analysis – By light interference detector

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356347, G01B 902

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active

059633107

ABSTRACT:
A surface imaging skin friction instrument allowing 2D resolution of spatial image by a 2D Hilbert transform and 2D inverse thin-oil film solver, providing an innovation over prior art single point approaches. Incoherent, monochromatic light source can be used. The invention provides accurate, easy to use, economical measurement of larger regions of surface shear stress in a single test.

REFERENCES:
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patent: 5178004 (1993-01-01), Bandyopadhyay et al.
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Winter, K.G., "An Outline of the Techniques Available for the Measurement of Skin Friction in Turbulent Boundary Layers," Progress in Aeronautical Sciences, vol. 18, 1977, pp. 1-57.
Settles, G.S., "Recent Skin Friction Techniques for Compressible Flows," AIAA paper 86-1099, May, 1986.
Tanner, L. H. and Blows, L. G., "A Study of the Motion of Oil Films on Surfaces in Air Flow, with Application to the Measurement of Skin Friction", Journal of Physics E: Scientific Instrumentation, vol. 9, pp. 194-202, 1976.
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Tanner, L.H. and Kulkarni, V.G., "The Viscosity Balance Method of Skin Friction Measurement: Further Developments including Applications to Three-Dimensional Flow," Journal of Physics E: Scientific Instruments, vol. 9, 1976, pp. 1114-1121.
Monson D.J., Mateer, G.G., and Menter, F.R., "Boundary-Layer Transition and Global Skin Friction Measurement with an Oil-Fringe Imaging Technique" SAE Paper No. 932550, Sep., 1993.
Squire, L.C. in "The Motion of a Thin Oil Sheet Under the Boundary Layer on a Body", Flow Visualization in Wind Tunnels Using Indicators, compiled by R.L. Maltby, AGARDograph 70, Apr. 1962, pp. 7-23.
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Naughton, J.W. and Brown, J.L., "Surface Interferometric Skin-Friction Measurement Technique", AIAA paper 96-2183, Jun. 17-20, 1996.

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