Presentation + Paper
1 August 2021 Investigation of aero-mechanical jitter on a hemispherical turret
Matthew Kalensky, Brian Catron, Stanislav Gordeyev, Eric J. Jumper, Matthew Kemnetz
Author Affiliations +
Abstract
Optical measurements of a hemispherical turret were conducted in both a wind tunnel and airborne testing environment to measure aero-mechanical jitter imposed onto a laser beam. A hemispherical turret was positioned in the freestream flow at various protrusion distances, Mach numbers, and azimuthal angles. Lasers and accelerometers were used to quantify the mechanical contamination imposed onto the beam due to the fluid-structure interaction of the incoming freestream flow and the protruding turret body. The results from wind tunnel and in-flight testing were compared. It was shown that the wind tunnel and in-flight tests yielded different results both quantitatively and qualitatively. The possible reasons for the discrepancies between these testing campaigns were also discussed.
Conference Presentation
© (2021) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Matthew Kalensky, Brian Catron, Stanislav Gordeyev, Eric J. Jumper, and Matthew Kemnetz "Investigation of aero-mechanical jitter on a hemispherical turret", Proc. SPIE 11836, Unconventional Imaging and Adaptive Optics 2021, 1183606 (1 August 2021); https://doi.org/10.1117/12.2588232
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KEYWORDS
Reflectors

Contamination

Optical benches

Mirrors

Cameras

Optical testing

Fourier transforms

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