师资队伍

长聘副教授、博士生导师

电子邮箱:zhangyiyang@mail.tsinghua.edu.cn

教育背景

博士 201307 清华大学 能源与动力工程系

学士 200807 清华大学 能源与动力工程系

工作履历

201307-201712 清华大学核研院104 助理教授

201712-202307 清华大学核研院104 准聘副教授

202307-至今 清华大学核研院104 长聘副教授

研究领域

先进核能多相流动,反应堆气溶胶,颗粒动力学,颗粒材料气相合成

学术成果

1.You, Z., Fang, Z., Li, S., & Zhang, Y. (2025). Turbulence-induced particle resonance before detachment from a flat surface. Applied Physics Letters, 126(22). (Editor’s Pick)

2.Wang, Y., You, Z., Fang, Z., Zhao, S., Wu, X., Sun, L., & Zhang, Y. (2025). Aerosol retention in HTGRs: A study on pool scrubbing of graphite and silica particles. Nuclear Engineering and Design, 435, 113972.

3.Fang, Z., Qian, X., Zhang, Y., Liu, W., & Li, S. (2024). A new discrete element method for small adhesive non-spherical particles. Journal of Computational Physics, 513, 113193.

4.Lei, S., Zhang, Y., Fang, Z., Wu, T., Jin, X., & Li, S. (2024). A two-step strategy for production of spherical non-aggregated multi-component particles by suspension-fed spray flame. Proceedings of the Combustion Institute, 40(1-4), 105350. (Distinguished Paper Award)

5.Wu, T., Zhang, Y., Fang, Z., Lei, S., Jin, X., & Li, S. (2024). Spray flame synthesis of the NASICON-structure Na3Zr2Si2PO12 solid electrolyte nanoparticles for solid-state Na+ batteries. Proceedings of the Combustion Institute, 40(1-4), 105347.

6.Fang, Z., Zhang, Y., Wu, X., Sun, L., & Li, S. (2022). New explicit correlations for the critical sticking velocity and restitution coefficient of small adhesive particles: A finite element study and validation. Journal of Aerosol Science, 160, 105918.

7.Ren, Y., Zhang, Y., Mao, Q., & Pitsch, H. (2020). Amorphous-to-crystalline transition during sintering of nascent TiO2 nanoparticles in gas-phase synthesis: a molecular dynamics study. The Journal of Physical Chemistry C, 124(50), 27763-27771.

8.Zhang, Y., Fang, Z., Zhao, S., Wei, M., Wu, X., & Sun, L. (2020). An experimental study on the wall collision of micro-sized graphite particles by high-speed photomicrography. Progress in Nuclear Energy, 125, 103391.

9.Fang, Z., Zhang, Y., Wei, M., Zhao, S., Wu, X., & Sun, L. (2020). A numerical study on adhesive collision between a micro-sized particle and a wall. Powder Technology, 360, 769-779.

10.Zhang, Y. (2017). Dynamics of Nanoparticles in Stagnation Flames. Springer.

11.Ren, Y., Li, S., Zhang, Y., Tse, S. D., & Long, M. B. (2015). Absorption-ablation-excitation mechanism of laser-cluster interactions in a nanoaerosol system. Physical review letters, 114(9), 093401.

12.Zhang, Y., Li, S., Ren, Y., Yao, Q., & Law, C. K. (2014). Two-dimensional imaging of gas-to-particle transition in flames by laser-induced nanoplasmas. Applied Physics Letters, 104(2).

13.Zhang, Y., Xiong, G., Li, S., Dong, Z., Buckley, S. G., & Tse, S. D. (2013). Novel low-intensity phase-selective laser-induced breakdown spectroscopy of TiO2 nanoparticle aerosols during flame synthesis. Combustion and flame, 160(3), 725-733.

14.Zhang, Y., Li, S., Yan, W., & Tse, S. D. (2012). Effect of size-dependent grain structures on the dynamics of nanoparticle coalescence. Journal of Applied Physics, 111(12).

15.Zhang, Y., Li, S., Yan, W., Yao, Q., & Tse, S. D. (2011). Role of dipole–dipole interaction on enhancing Brownian coagulation of charge-neutral nanoparticles in the free molecular regime. The Journal of chemical physics, 134(8).