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NASA NTRS · 19910036766

Cross-flow vortex structure and transition measurements using multi-element hot films

Abstract

An experiment on a 45-degree swept wing was conducted to study three-dimensional boundary-layer characteristics using surface-mounted, micro-thin, multi-element hot-film sensors. Cross-flow vortex structure and boundary-layer transition were measured from the simultaneously acquired signals of the hot films. Spanwise variation of the root-mean-square (RMS) hot-film signal show a local minima and maxima. The distance between two minima corresponds to the stationary cross-flow vortex wavelength and agrees with naphthalene flow-visualization results. The chordwise and spanwise variation of amplified traveling (nonstationary) cross-flow disturbance characteristics were measured as Reynolds number was varied. The frequency of the most amplified cross-flow disturbances agrees with linear stability theory.

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BibTeXRIS

Agarwal, Naval K., Mangalam, Siva M., Maddalon, Dal V., Collier, Fayette S., Jr.. 1991-01-01. Cross-flow vortex structure and transition measurements using multi-element hot films. https://ntrs.nasa.gov/citations/19910036766

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