Assistant Professor, Department of Aeronautical and Aviation Engineering, The Hong Kong Polytechnic University
High-order simulations, analytical acoustics, and turbulence-aerofoil leading edge noise.
Mr Siyang Zhong was born in Oct. 1989 in the Guizhou province of China. He obtained his bachelor's degree of theoretical and applied mechanics at Peking University (China) in 2011. He continued his study at the same university and obtained his master's degree of control theory. He was admitted to the Hong Kong University of Science and Technology to pursue his PhD degree on Jan. 2015. He graduate as a PhD in 2018. Currently his research focuses on developing and applying high-order numerical methods to study aeroacoustic problems.
Research projects
Publications
- A rotor blade aeroacoustics test platform at HKUST (2020)
- CAA simulations of the leading edge noise of a heaving airfoil (2020)
- An experimental study of trailing edge noise from a heaving airfoil (2020)
- An efficient rectilinear Gaussian beam tracing method for sound propagation modelling in a non-turbulent medium (2020)
- An analytical correction to Amiet's solution of airfoil leading-edge noise in non-uniform mean flows (2020)
- A study of the effect of serration shape and flexibility on trailing edge noise (2020)
- A revisit of the tonal noise of small rotors (2020)
- Numerical and analytical investigations of the effect of the streamwise disturbance on the airfoil-anisotropic turbulence interaction noise (2019)
- Modification of broadband trailing edge noise through hairy coating (2019)
- An analytical model for the prediction of airfoil cascade-turbulence interaction noise (2019)
- Geometry effect on the airfoil-gust interaction noise in transonic flows (2019)
- A comparison of acoustic far-field prediction methods for turbulent flows (2019)
- An efficient computation of cascade-gust interaction noise based on a hybrid analytical and boundary element method (2019)
- On the effect of streamwise disturbance on the airfoil-turbulence interaction noise (2019)
- Sound extrapolation methods for turbulent flows based on indirect acoustic variables (2018)
- On the frequency domain formulation of the generalized sound extrapolation method (2018)
- A numerical investigation of the airfoil-gust interaction noise in transonic flows: Acoustic processes (2018)
- A generalized sound extrapolation method for turbulent flows (2018)
- Stable time-domain CAA simulations with linearised governing equations (2018)
- A numerical study of the airfoil leading edge noise in transonic flows (2017)
- A numerical investigation of the airfoil-gust interaction noise in transonic flows (2017)
- A numerical investigation of the airfoil leading edge noise in transonic flows (2017)
- A sound extrapolation method for aeroacoustics far-field prediction in presence of vortical waves (2017)
- An evaluation of gradient term modification methods for linearized euler equations (2016)
- A controllable canonical form implementation of time domain impedance boundary conditions for broadband aeroacoustic computation (2016)
- An evaluation of gradient term modification method for linearized Euler equations (2016)
- Artificial damping methods for stable computations with linearized euler equations (2016)
- Airfoil-Gust Interactions in Transonic Flow (2016)