songjiaxing
- Special Professor
- Supervisor of Doctorate Candidates
- Supervisor of Master's Candidates
- Name (English):Jiaxing Song
- Name (Pinyin):songjiaxing
- E-Mail:
- Business Address:First Mechanical Building 518
- Professional Title:Special Professor
- Teacher College:Engineering Science
- Discipline:Mechanics
Physics
Contact Information
No content
- Scientific Research
The group focuses on fundamental and computational aspects of turbulence, complex fluids, and geophysical flows, combining theory, numerical simulation, and physical modelling to investigate turbulent and complex fluid phenomena, with particular interests in Rayleigh–Bénard and Taylor–Couette systems.
Selected Publications:
1. Kriening. M.*, Yao, Z., Emran, M., Song, J., Teimurazov A., Shishkina, O.*, 2026 On multiple stable states in Taylor–Couette flow with realistic end-wall boundary conditions. J. Fluid Mech.. 1035, A24.
2. Yao, Z.*, Emran, M., Teimurazov A., Kriening. M., Song, J., Shishkina, O.*, 2026 Multiple states in centrifugal convection. J. Fluid Mech.. 1030, R4. (Featured in Focus on Fluids, Editor’s suggestion)
3. Xu, C.*, Zhang, C., Brandt L., Song, J.*, Shishkina, O.*, 2025 Direct numerical simulations of turbulent Rayleigh–Bénard convection with polymer additives. J. Fluid Mech.. 1014, A22. (JFM Cover Paper)
4. Song, J.*, Xu, C., Shishkina, O.*, 2025 A finite difference method for turbulent thermal convection of complex fluids. J. Comput. Phys 525, 113732.
5. Lin, F., Song, J., Liu, N.*, Liu L., Lu X.-Y., Khomami, B., 2024 Keplerian turbulence in Taylor–Couette flow of dilute polymeric solutions. J. Fluid Mech. 1000, R3. (Featured in Focus on Fluids)
6. Song, J.*, Kannan, V., Shishkina, O., Zhu, X.*, 2024 Direct numerical simulations of the transition between rotation- to buoyancy-dominated regimes in rotating Rayleigh–Bénard convection. Int. J. Heat Mass Transfer 232, 125971.
7. Song, J., Shishkina, O., Zhu, X.*, 2024 Direct numerical simulations of rapidly rotating Rayleigh–Bénard convection with Rayleigh number up to 5 _ 1013. J. Fluid Mech. 989, A3.(JFM Cover Paper)
8. Song, J.*, Shishkina, O.*, Zhu, X.*, 2024 Scaling regimes in rapidly rotating thermal convection at extreme Rayleigh numbers. J. Fluid Mech. 984, A45.
9. Song, J., Zhu, Y., Lin, F., Liu, N.*, Khomami, B.* 2023 Turbulent Taylor–Couette flow of dilute polymeric solutions: a 10-year retrospective. Phil. Trans. R. Soc. Lond. A 381, 20220132. (Invited Review Paper)
10. Song, J., Lin, F., Zhu, Y., Wan Z.-H., Liu, N.*, Lu X.-Y., Khomami, B.* 2023 Self-sustaining cycle of purely elastic turbulence. Phys. Rev. Fluids 8, 014602.
11. Lin, F., Song, J., Zhao, Z., Liu, N.*, Lu X.-Y., Khomami, B.* 2023 A novel transition route to elastically dominated turbulence in viscoelastic Taylor–Couette flow. J. Non-Newtonian Fluid Mech. 312, 104968.(Walters Prize Paper)
12. Song, J., Liu, N.*, Lu X.-Y., Khomami, B.* 2022 Direct numerical simulation of elastic turbulence in the Taylor–Couette flow: transition pathway and mechanistic insight. J. Fluid Mech. 949, A49.
13. Song, J., Lin, F., Liu, N.*, Lu X.-Y., Khomami, B.* 2021 Direct numerical simulation of inertio-elastic turbulent Taylor–Couette flow. J. Fluid Mech. 926, A37.
14. Song, J., Wan Z.-H., Liu, N.*, Lu X.-Y., Khomami, B.* 2021 A reverse transition route from inertial to elasticity-dominated turbulence in viscoelastic Taylor–Couette flow. J. Fluid Mech. 927, A10.
15. Song, J., Teng, H., Liu, N.*, Ding, H., Lu X.-Y., Khomami, B.* 2019 The correspondence between drag enhancement and vortical structures in turbulent Taylor–Couette flows with polymer additives: a study of curvature dependence J. FluidMech. 881: 602-616.
Further information about research publications can be found on the google scholar website: https://scholar.google.com/citations?user=ZjDA9nwAAAAJ&hl=zh-CN.
