Wind Tunnel Measurement of Pitch-Damping Derivative Using Forced Oscillation Technique

Author:

Samardžić Marija

Publisher

Springer Nature Switzerland

Reference10 articles.

1. Bhagwandin, V., & Sahu, J. (2012). Numerical prediction of pitch damping derivatives for a finned projectile at angles of attack. In Proceedings of the 50th AIAA aerospace sciences meeting including the new horizons forum and aerospace exposition. American Institute of Aeronautics and Astronautics.

2. Hanff, E. S. (1981). Direct forced-oscillation techniques for the determination of stability derivatives in wind tunnels. AGARD-LS-114. The Advisory Group for Aerospace Research and Development, NATO Research and Technology Organization.

3. Medved, B., & Elfstrom, G. M. (1986). The Yugoslav 1.5 m Trisonic blowdown wind tunnel, IAA Paper No. 86–0746-CP American Institute of Aeronautics and Astronautics. Reston.

4. Murman, S. M. (2005). A reduced-frequency approach for calculating dynamic derivatives. In 43rd AIAA Aerospace Science Meeting. Reno, NV. AIAA 2005–0840.

5. Orlik-Rückemann, K. J. (1963). Wind tunnel measurements of dynamic derivatives. Part of the Course on “Free Flight Motion of Symmetric Missiles”, University of California, Los Angeles.

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