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Twist Model Development and Results from the Active Aeroelastic Wing F/A-18 AircraftUnderstanding the wing twist of the active aeroelastic wing (AAW) F/A-18 aircraft is a fundamental research objective for the program and offers numerous benefits. In order to clearly understand the wing flexibility characteristics, a model was created to predict real-time wing twist. A reliable twist model allows the prediction of twist for flight simulation, provides insight into aircraft performance uncertainties, and assists with computational fluid dynamic and aeroelastic issues. The left wing of the aircraft was heavily instrumented during the first phase of the active aeroelastic wing program allowing deflection data collection. Traditional data processing steps were taken to reduce flight data, and twist predictions were made using linear regression techniques. The model predictions determined a consistent linear relationship between the measured twist and aircraft parameters, such as surface positions and aircraft state variables. Error in the original model was reduced in some cases by using a dynamic pressure-based assumption. This technique produced excellent predictions for flight between the standard test points and accounted for nonlinearities in the data. This report discusses data processing techniques and twist prediction validation, and provides illustrative and quantitative results.
Document ID
20070022496
Acquisition Source
Armstrong Flight Research Center
Document Type
Conference Paper
Authors
Lizotte, Andrew M.
(NASA Dryden Flight Research Center Edwards, CA, United States)
Allen, Michael J.
(NASA Dryden Flight Research Center Edwards, CA, United States)
Date Acquired
August 23, 2013
Publication Date
June 18, 2007
Subject Category
Aircraft Design, Testing And Performance
Meeting Information
Meeting: International Forum on Aeroelasticity and Structural Dynamics (IFASD)
Location: Stockholm
Country: Sweden
Start Date: June 18, 2007
End Date: June 20, 2007
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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