论文、专著、专利等成果 (1)发表论文 [1] Liu, M., Jin, F., Huang, X., ...Wang, Z.*et al. "Structural Parametric Study of an Ultra-High-Head Pump–Turbine Runner for Enhanced Frequency Safety Margin." Processes 14.2 (2026): 284. (SCI) [2] Liu, M., Zhou, L.*, Wang, Z. (2019). Numerical Investigation of the Cavitation Instability in a Central Jet Pump with a Large Area Ratio at Normal Cavitating Conditions. International Journal of Multiphase Flow, 116,153-163.(SCI) [3] Liu M., Zhou L. *, Wang Z., Liu D., & Zhao Y. (2016), Investigation of Channel Vortices in Francis Turbines, IOP Conference Series: Earth and Environmental Science. IOP Publishing, 49(8). (EI) [4] Zhou L. *, Liu M., Wang Z., Liu D., & Zhao Y. (2017). Numerical simulation of the blade channel vortices in a Francis turbine runner. Engineering Computations, 34(2), 364-376. (SCI) [5] Meng L., Liu M., Zhou L.*, etc. (2018), Coupling simulation of the fast startup of a centrifugal pump with cavitation in a closed-loop pipeline system, Engineering Computations, 35(5), 2010-2024. (SCI) [6] Guo Q., Zhou L. *, Wang Z., Liu M., & Cheng H. (2018). Numerical simulation for the tip leakage vortex cavitation. Ocean Engineering, 151, 71-81. (SCI) [7] 孟龙, 刘孟, 支发林, 周凌九*, 王正伟. (2016), 机械不平衡及轴瓦间隙对水轮机运行稳定性的影响分析, 机械工程学报, Vol.52 Iss.3, pp.49-55. [8] Jin, F., Gao, L., Zheng, D., Huang, X., Lai, Z., Liu, M., ... & Liu, J. (2026). Rotor–Stator Interaction-Induced Pressure Pulsation Propagation and Dynamic Stress Response in an Ultra-High-Head Pump-Turbine. Processes, 14(2), 311. (SCI) [9] Jin, F., Cao, G., Zheng, D., Huang, X., Lai, Z., Liu, M., ... & Liu, J. (2025). Comparative Study of Structural Designs of Stationary Components in Ultra-High-Head Pumped Storage Units. Processes, 13(12), 3826. (SCI) [10] Li, X., Liu, M., Peng, C., Huang, X., & Wang, Z. (2025, December). Influence of root fillet radius on modal characteristics of an ultra-high-head pump-turbine runner. In Journal of Physics: Conference Series (Vol. 3150, No. 1, p. 012107). IOP Publishing. (EI) [11] Huang, H., Cao, G., Liu, D., Huang, X., Liu, M., Wang, Z.*, & Liu, J., "Structural optimization of ultra-high-head pumped-storage units for ensuring the safety of the new-type power system." Second International Conference on New Power System and Power Electronics (NPSPE 2025). Vol. 14129. SPIE, 2026. (EI) [12] Jin, F., Huang, X., Zheng, D., Liu, M., Lai, Z., & Wang, Z. (2025, July). Hydro-vibration resonance analysis of ultra high head pump turbine submerged in water. In Third International Conference on Advanced Materials and Equipment Manufacturing (AMEM 2024) (Vol. 13691, pp. 921-927). SPIE. [13] Huang, X., Jin, F., Liu, M., Zheng, D., Wang, Z., & Lai, Z. (2025, July). Fluid structure interaction resonance assessment of ultra-high head pump turbine head cover. In Third International Conference on Advanced Materials and Equipment Manufacturing (AMEM 2024) (Vol. 13691, pp. 784-790). SPIE. [14] Cheng, C., Li, Z. *, Shen C., Gu S., Zeng C., Bai C., Liu M., Hu J. (2024). Exploration of the mechanism of cavitation vortex rope and vortex development in the draft tube of tubular turbine units. International Journal of Agricultural and Biological Engineering, 17(1), 163–171.(SCI) [15] Song, X., Li, Z. *, Gu, S., Cheng, C., Liu, M., Liu, S., ... & Hua, W. (2026). Mechanisms of cavitation-induced instability and performance loss in bulb tubular turbines. Ocean Engineering, 354, 125015. (SCI) (2)专利 [1] 中核国电漳州能源有限公司,清华大学. 一种用于水轮水泵机组的转轮机构及水轮水泵机组[P].中国: 202521812944.9,2026.07.17. (3)软著 [1] 青海大学. (2024). 无压引水系统大波动过渡过程数值计算软件 (1.0) [计算机程序]. 国家版权局. 登记号: 2024SR1088506. [2] 青海大学. (2024). 有压引水系统大波动过渡过程数值计算软件 (1.0) [计算机程序]. 国家版权局. 登记号: 2024SR1088442. |