Deployment of a Pressure Sensitive Paint System for Measuring Global Surface Pressures on Rotorcraft Blades in Simulated Forward Flight
Author(s) -
Neal Watkins,
Bradley D. Leighty,
William Lipford,
Oliver D. Wong,
Kyle Z. Goodman,
Jim Crafton,
Alan Forlines,
Larry Goss,
James Gregory,
Thomas J. Juliano
Publication year - 2012
Publication title -
nasa sti repository (national aeronautics and space administration)
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2012-2756
Subject(s) - aerospace engineering , software deployment , surface pressure , pressure measurement , marine engineering , surface (topology) , environmental science , materials science , aeronautics , mechanical engineering , engineering , mechanics , physics , geometry , mathematics , software engineering
This report will present details of a Pressure Sensitive Paint (PSP) system for measuring global surface pressures on the tips of rotorcraft blades in simulated forward flight at the 14- x 22-Foot Subsonic Tunnel. The system was designed to use a pulsed laser as an excitation source and PSP data was collected using the lifetime-based approach. With the higher intensity of the laser, this allowed PSP images to be acquired during a single laser pulse, resulting in the collection of crisp images that can be used to determine blade pressure at a specific instant in time. This is extremely important in rotorcraft applications as the blades experience dramatically different flow fields depending on their position in the rotor disk. Testing of the system was performed using the U.S. Army General Rotor Model System equipped with four identical blades. Two of the blades were instrumented with pressure transducers to allow for comparison of the results obtained from the PSP. This report will also detail possible improvements to the system.
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