DocumentCode :
2068542
Title :
Conceptual Design of a Laser Light Sheet Flow Visualization System for a Pressurized, Low Speed Wind Tunnel
Author :
Mejia, K.M. ; Jorgens, C.J.
Author_Institution :
Boeing Commercial Airplanes, Seattle
fYear :
2007
fDate :
10-14 June 2007
Firstpage :
1
Lastpage :
13
Abstract :
The conceptual design and component validation of a laser light sheet flow visualization system for the QinetiQ 5m wind tunnel was conducted over the last two years by the Testing Methods Group of Boeing Commercial Airplanes. The purpose of this system is to complement wind tunnel force and pressure data by helping visualize off-body aerodynamic phenomena affecting model performance to help diagnose discrepancies between experimental and computational results. Smoke seeding and laser diagnostics are commonplace in many wind tunnels around the world. However, the requirement that this system be robust and user friendly enough to operate quickly and reliably in a high Reynolds number, large scale, low speed wind tunnel environment make this a unique and complex system. Each of the 4 major system components (laser, optics, seeding, and dispensing) were researched in detail and candidate system components were identified. In addition, two wind tunnel tests were conducted in a smaller, open circuit low speed wind tunnel to validate some of the findings and to prototype candidate hardware.
Keywords :
aerodynamics; aerospace industry; flow visualisation; wind tunnels; Boeing Commercial Airplanes; QinetiQ 5m wind tunnel; Reynolds number; conceptual design; laser diagnostics; laser light sheet flow visualization system; low speed wind tunnel; off-body aerodynamic phenomena; smoke seeding; Aerodynamics; Airplanes; Circuit testing; Data visualization; Large-scale systems; Laser modes; Optical design; Robustness; System testing; Wind speed;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Instrumentation in Aerospace Simulation Facilities, 2007. ICIASF 2007. 22nd International Congress on
Conference_Location :
Pacific Grove, CA
Print_ISBN :
978-1-4244-1599-1
Electronic_ISBN :
978-1-4244-1600-4
Type :
conf
DOI :
10.1109/ICIASF.2007.4380896
Filename :
4380896
Link To Document :
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