Pressure-time history of pylon wake on a pusher propeller in flight
Saeed Farokhi
Abstract
Saeed Farokhi
Abstract
Miniature, high-frequency, pressure transducers were mounted on a pusher propeller at 75 and 90% radii. Time history of fluctuating surface pressure over 700 propeller revolutions and 26 flight conditions reveals intriguing phenomena. The anticipated pylon wake signature manifests itself as a negative pressure pulse over extended portions of the propeller suction surface. The phenomenon further develops into a primarily random turbulence signature at 80% propeller chord and interestingly may re-evolve as a coherent wake signature further downstream, say at 90% chord. A new type of periodic disturbance of long-time scale, compared to propeller period of revolution, is discovered at positions beyond 0.6 chord on the propeller suction surface in the transonic regime. These and other peculiar propeller-surface events recorded by the transducers are highlighted, and some plausible explanations are offered.
OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Miniature, high-frequency, pressure transducers were mounted on a pusher propeller at 75 and 90% radii. Time history of fluctuating surface pressure over 700 propeller revolutions and 26 flight conditions reveals intriguing phenomena. The anticipated pylon wake signature manifests itself as a negative pressure pulse over extended portions of the propeller suction surface. The phenomenon further develops into a primarily random turbulence signature at 80% propeller chord and interestingly may re-evolve as a coherent wake signature further downstream, say at 90% chord. A new type of periodic disturbance of long-time scale, compared to propeller period of revolution, is discovered at positions beyond 0.6 chord on the propeller suction surface in the transonic regime. These and other peculiar propeller-surface events recorded by the transducers are highlighted, and some plausible explanations are offered.
Key concepts: Wake, Chord (peer-to-peer), Propeller, Transonic, Physics, Mechanics, Turbulence, Aerodynamics