NASA NTRS · 20010067040
Simulation of Transonic Limit Cycle Oscillations Using a CFD Time-marching Method
Abstract
CFD-based aeroelastic computations are performed to investigate the effect of nonlinear aerodynamics on transonic LCO (Limit Cycle Oscillations) characteristics of a two-dimensional supercritical wing with the NLR 7301section. It is found that the presentation of the viscous effects, including turbulence modeling, plays an important role on the accurate prediction of shock and LCO; and a small initial perturbation appears to produce large amplitude LCO at small mean pitch angle and plunge while a large amplitude initial perturbation produces small (or negligible) amplitude LCO at larger mean values. Also addressed in the paper is the issues related to multiblock MPI (Message Passing Interface) parallel computation.
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Tang, L., Bartels, R. E., Chen, P. C., Liu, D. D.. 2001-01-01. Simulation of Transonic Limit Cycle Oscillations Using a CFD Time-marching Method. https://ntrs.nasa.gov/citations/20010067040
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