Flutter simulations of a T-tail configuration using non-linear aerodynamics
Author:
Publisher
Wiley
Subject
Applied Mathematics,General Engineering,Numerical Analysis
Reference16 articles.
1. Lifting-Surface Theory for an Oscillating T-Tail
2. Effect of Stabilizer Dihedral and Static Lift on T-Tail Flutter
3. Lifting-surface theory for a wing oscillating in yaw and sideslip with an angle of attack.
4. Application of the Doublet-Lattice Method to Nonplanar Configurations in Subsonic Flow
5. Refinement of the nonplanar aspects of the subsonic doublet-lattice lifting surface method.
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1. Numerical Simulation of T-Tail Flutter in Subsonic and Transonic Flows;TRANSACTIONS OF THE JAPAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES;2024
2. Influence of Fluid Viscosity and Compressibility on Nonlinearities in Generalized Aerodynamic Forces for T-Tail Flutter;Aerospace;2022-05-09
3. T-tail flutter simulations with regard to quadratic mode shape components;CEAS Aeronautical Journal;2021-06-18
4. Hypersonic flutter and flutter suppression system of a wind tunnel model;Chinese Journal of Aeronautics;2019-09
5. T-tail flutter: Potential-flow modelling, experimental validation and flight tests;Progress in Aerospace Sciences;2014-11
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