Weigang Yao
National University of Singapore
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Publication
Featured researches published by Weigang Yao.
AIAA Journal | 2015
Weigang Yao; Simao Marques
This work proposes a novel approach to compute transonic limit-cycle oscillations using high-fidelity analysis. Computational-Fluid-Dynamics based harmonic balance methods have proven to be efficient tools to predict periodic phenomena. This paper’s contribution is to present a new methodology to determine the unknown frequency of oscillations, enabling harmonic balance methods to accurately capture limit-cycle oscillations; this is achieved by defining a frequency-updating procedure based on a coupled computational-fluid-dynamics/computational-structural-dynamics harmonic balance formulation to find the limit-cycle oscillation condition. A pitch/plunge airfoil and delta wing aerodynamic and respective linear structural models are used to validate the new method against conventional time-domain simulations. Results show consistent agreement between the proposed and time-marching methods for both limit-cycle oscillation amplitude and frequency while producing at least a one-order-of-magnitude reduction in ...
AIAA Journal | 2017
Weigang Yao; Simao Marques
A novel surrogate model is proposed in lieu of computational-fluid-dynamics solvers, for fast nonlinear aerodynamic and aeroelastic modeling. A nonlinear function is identified on selected interpol...
15th AIAA/ISSMO Multidisciplinary Analysis and Optimization Conference | 2014
Richard Hayes; Simao Marques; Weigang Yao
Modal analysis is a popular approach used in structural dynamic and aeroelastic problems due to its efficiency. The response of a structure is composed of the sum of orthogonal eigenvectors or modeshapes and corresponding modal frequencies. This paper investigates the importance of modeshapes on the aeroelastic response of the Goland wing subject to structural uncertainties. The wing undergoes limit cycle oscillations (LCO) as a result of the inclusion of polynomial stiffness nonlinearities. The LCO computations are performed using a Harmonic Balance approach for speed, the modal properties of the system are extracted from MSC NASTRAN. Variability in both the wing’s structure and the store centre of gravity location is investigated in two cases:supercritical and subcritical type LCOs. Results show that the LCO behaviour is only sensitive to change in modeshapes when the nature of the modes are changing significantly.
Journal of Fluids and Structures | 2016
Zhong Li; Weigang Yao; Kun Yang; Rajeev K. Jaiman; Boo Cheong Khoo
Journal of Fluids and Structures | 2016
Weigang Yao; Rajeev K. Jaiman
Journal of Fluids and Structures | 2017
Weigang Yao; Simao Marques
44th AIAA Fluid Dynamics Conference | 2014
Weigang Yao; Simao Marques
Computers & Structures | 2018
Weigang Yao; Simao Marques
Royal Aeronautical Society 5th Aircraft Structural Design Conference | 2016
Weigang Yao; Simao Marques
ASME 2016 35th International Conference on Ocean, Offshore and Arctic Engineering | 2016
Zhong Li; Weigang Yao; Rajeev K. Jaiman; Boo Cheong Khoo