Virtual flight simulation of a dual rotor micro air vehicle |
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Authors: | Hongming Cai |
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Affiliation: | 1. Mechanical Design and Automation Major, School of Mechanical Engineering, Nanjing University of Science and Technology, Jiangsu?Chinachm@njust.edu.cn |
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Abstract: | In this paper, a new computational method is developed based on computational fluid dynamics (CFD) coupled with rigid body dynamics (RBD) and flight control law in an in-house programmed source code. The CFD solver is established based on momentum source method, preconditioning method, lower–upper symmetric Gauss–Seidel iteration method, and moving overset grid method. Two-equation shear–stress transport k ? ω turbulence model is employed to close the governing equations. Third-order Adams prediction-correction method is used to couple CFD and RBD in the inner iteration. The wing-rock motion of the delta wing is simulated to validate the capability of the computational method for virtual flight simulation. Finally, the developed computational method is employed to simulate the longitudinal virtual flight of a dual rotor micro air vehicle (MAV). Results show that the computational method can simulate the virtual flight of the dual rotor MAV. |
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Keywords: | virtualflight dual rotor micro air vehicle momentum source prediction-correction wing-rock |
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