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Transport Aircraft System Identification Using Roll and Yaw Oscillatory Wind Tunnel Data
Author(s) -
Patrick C. Murphy,
Vladislav Klein
Publication year - 2010
Publication title -
aiaa atmospheric flight mechanics conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2010-8122
Subject(s) - aerodynamics , aerospace engineering , wind tunnel , aeronautics , engineering , general aviation , aviation , flight test , acceleration , flight dynamics , computer science , systems engineering , physics , classical mechanics
Continued studies have been undertaken to investigate and develop aerodynamic models that predict aircraft response in nonlinear unsteady flight regimes for transport configurations. The models retain conventional static and dynamic terms but replace conventional acceleration terms with indicial functions. In the Subsonic Fixed Wing Project of the NASA Fundamental Aeronautics Program and the Integrated Resilient Aircraft Controls project of the NASA Aviation Safety Program one aspect of the research is to apply these current developments to transport configurations to facilitate development of advanced simulation and control design technology. This paper continues development and application of a more general modeling methodology to the NASA Langley Generic Transport Model, a sub-scale flight test vehicle. In the present study models for the lateraldirectional aerodynamics are developed.

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