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Single-shot pressure-sensitive paint lifetime measurements on fast rotating blades using an optimized double-shutter technique
- Publication Year :
- 2017
-
Abstract
- A pressure-sensitive paint (PSP) system is presented to measure global surface pressures on fast rotating blades. It is dedicated to solve the problem of blurred image data employing the single-shot lifetime method. The efficient blur reduction capability of an optimized double-shutter imaging technique is demonstrated omitting error-prone post-processing or laborious de-rotation setups. The system is applied on Mach-scaled DSA-9A helicopter blades in climb at various collective pitch settings and blade tip Mach and chord Reynolds numbers ( $$M_{\text {tip}}$$ = 0.29–0.57; $$Re_{\text {tip}}$$ = 4.63–9.26 $$\times 10^5$$ ). Temperature effects in the PSP are corrected by a theoretical approximation validated against measured temperatures using temperature-sensitive paint (TSP) on a separate blade. Ensemble-averaged PSP results are comparable to pressure-tap data on the same blade to within 250 Pa. Resulting pressure maps on the blade suction side reveal spatially high resolved flow features such as the leading edge suction peak, footprints of blade-tip vortices and evidence of laminar–turbulent boundary-layer (BL) transition. The findings are validated by a separately conducted BL transition measurement by means of TSP and numerical simulations using a 2D coupled Euler/boundary-layer code. Moreover, the principal ability of the single-shot technique to capture unsteady flow phenomena is stressed revealing three-dimensional pressure fluctuations at stall.
- Subjects :
- Leading edge
Materials science
pressure-sensitive paint
roter aerodynamics
Computational Mechanics
General Physics and Astronomy
Pressure-sensitive paint
01 natural sciences
010305 fluids & plasmas
law.invention
010309 optics
symbols.namesake
Optics
Hubschrauber, GO
law
Shutter
0103 physical sciences
Experimentelle Verfahren, GO
Fluid Flow and Transfer Processes
single-shot lifetime technique
business.industry
Reynolds number
Stall (fluid mechanics)
image blur
Mechanics
Vortex
Mach number
Mechanics of Materials
symbols
Helicopter rotor
business
Subjects
Details
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....7e1a51be26137032ed67f7f05542883f