Wall-Normal Focused Laser Differential Interferometry

Author:

Lunte Jens1ORCID,Schülein Erich1ORCID

Affiliation:

1. DLR, German Aerospace Center, 37073 Göttingen, Germany

Abstract

A new approach for measuring boundary-layer disturbances with focused laser differential interferometry (FLDI) for planar models is presented. By integrating a glass window into a flat plate, the optical axis was aligned normal to the model surface, and the focal plane was set inside the boundary layer. By determining the extent of the sensitive volume along the optical axis and calculating the analytical transfer function of the setup, the implications of the FLDI properties on the measured data are analyzed. Measurements performed on a flat plate at Mach 6 are used to demonstrate the effects of the laminar–turbulent transition on the spectral distribution of the power density and to explicitly verify the detectability of the expected second-mode instabilities. Advantages and disadvantages of the proposed setup compared to the conventional one are discussed.

Publisher

American Institute of Aeronautics and Astronautics (AIAA)

Subject

Aerospace Engineering

Reference27 articles.

1. SmeetsG.GeorgeA. “Laser-Differential Interferometer Applications in Gas Dynamics,” Tech. Rept. Inst. Saint-Louis Rept. 28/73, Translated 1996 by A. Goetz, Nov. 1973.

2. ParzialeN. “Slender-Body Hypervelocity Boundary-Layer Instability,” Ph.D. Dissertation, California Inst. of Technology, Pasadena, CA, 2013.

3. Analysis of focused laser differential interferometry

4. FulghumM. R. “Turbulence Measurements in High-Speed Wind Tunnels Using Focusing Laser Differential Interferometry,” Ph.D. Dissertation, Pennsylvania State Univ., Pennsylvania, 2014.

5. The Focusing Laser Differential Interferometer, an Instrument for Localized Turbulence Measurements in Refractive Flows

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