师资队伍

教师名录

刘筠乔

工程力学系

电子邮件:yunqiaoliu(AT)sjtu.edu.cn
通讯地址:上海市闵行区东川路800号木兰楼A807

2019-,上海交通大学工程力学系,副教授
2011-2018,上海交通大学工程力学系,讲师
2010-2011,东京大学流体工学研究室,博士后
2007-2010,东京大学机械工程系,博士
2004-2007,上海交通大学工程力学系,硕士
2000-2004,中山大学应用力学与工程系,本科

空化流动,气泡动力学

  1.       国家自然科学基金,面上项目,多分散群泡槽道湍流的压力脉动谱与时空多尺度特性研究,2026.1-2029.12,主持

  2. 重大基础研究项目课题,泡动力学和多相流声学研究,2022.1-2025.12,主持

  3. 基础加强项目课题,空化流场研究,2020.12-2024.11,主持

  4. 国家自然科学基金,面上项目,旋涡流场中柱状泡的动力学特性研究,2022.01-2025.12,主持

  5. 装备预研基金,梢涡空化噪声的产生机理和预测方法,2019.01-2020.12,主持

  6. 国家自然科学基金,面上项目,血管壁复杂边界约束下的包膜微气泡动力学特性分析,2018.01-2021.12,主持

  7. 国家自然科学基金,青年基金,超声波场中造影剂包膜气泡的界面稳定性研究,2014.01-2016.12,主持

[1]   Y. Cai, Y. Liu*, B. Wang and S. Takagi, Sound propagation through inhomogeneous and polydisperse bubble clouds: A decoupling approach, Inter. J. Multiphase Flow, 2026, 195, 105545.

[2]   Y. Xu, Y. Liu* and B. Wang, Prediction of bubble size distribution in cloud cavitation flow based on physics-informed neural network, Phys. Fluids, 2025, 37, 103343.

[3]   K. Hu, M. Song, C. Ma, Y. Liu* and B. Wang, Characteristics of radiated noise from the cavitation flows around a NACA16012 twisted hydrofoil, J. Hydrodynamics, 2025, 37, 449-467.

[4]   X. Feng, Y. Liu and B. Wang, An improved laminar–turbulent transition cavitation model using the IDDES method, Ocean Eng., 2024, 297, 117182.

[5]   Q. Wang, B. Wang, C. Wan, H. Zhang and Y. Liu*, Modeling the distribution characteristics of vapor bubbles in cavitating flows, Phys. Fluids, 2023, 35, 123316.

[6]   Y. Liu, H. Zhang, W. Zhang and B. Wang, Bubble size distribution at early stage of hydrodynamic cloud cavitation, Phys. Fluids, 2023, 35, 063305.

[7]   X. Feng*, Y. Liu and B. Wang, Tip leakage flow structures and its influence on cavitation inception for a NACA0009 hydrofoil, J. Fluid Eng., 2023, 145, 051203.

[8]   H. Zhang, Y. Liu, B. Wang and X. Cheng, Phase-resolved characteristics of bubbles in cloud cavitation shedding cycles, Ocean Eng., 2022, 256, 111529.

[9]   H. Zhang, Y. Liu and B. Wang, Spatial-temporal features of the coherent structure of sheet/cloud cavitation flows using a frequency-weighted dynamic mode decomposition approach, Phys. Fluids, 2021, 33, 053317.

[10]     Y. Liu, B. Wang* and K. Sugiyama, Interaction of two cylindrical bubbles embedded in a corotating vortex pair, Phys. Fluids, 2020(32), 102112.

[11]     Y. Liu and B. Wang*, Dynamics and surface stability of a cylindrical cavitation bubble in a rectilinear vortex, J. Fluid Mech., 2019(865), 963-992.

[12]     Y. Liu, Q. Wang* and A. Zhang, Surface stability of a bubble in a liquid fully confined by an elastic solid, Phys. Fluids, 2018(30), 127106.

[13]     Y. Liu, M. L. Calvisi and Q. Wang*, Shape oscillation and stability of an encapsulated microbubble translating in an acoustic wave, J. Acoust. Soc. Am., 2018(144), 2189-2200.

[14]     Y. Liu, D. He, X. Gong* and H. Huang, Deformation of an encapsulated bubble in steady and oscillatory electric fields, J. Fluid Mech., 2018(844), 567-596.

[15]     Y. Liu*, M. L. Calvisi and Q. Wang, Nonlinear oscillation and interfacial stability of an encapsulated microbubble under dual-frequency ultrasound, Fluid Dynamics Research, 2017(49), 025518.

[16]     Y. Liu*, K. Sugiyama and S. Takagi, On the interaction of two encapsulated bubbles in an ultrasound field, J. Fluid Mech., 2016(804), 58-89.

[17]     Y. Liu and Q. Wang*, Stability and natural frequency of nonspherical mode of an encapsulated microbubble in a viscous liquid, Phys. Fluids, 2016(28), 062102. 

[18]     Y. Liu*, K. Sugiyama, S. Takagi, and Y. Matsumoto, Surface instability of an encapsulated bubble induced by an ultrasonic pressure wave, J. Fluid Mech., 2012(691), 315-340. 

[19]     Y. Liu, K. Sugiyama, S. Takagi*, and Y. Matsumoto, Numerical study on the shape oscillation of an encapsulated microbubble in ultrasound field, Phys. Fluids, 2011(23), 041904.


《工程流体力学》

《高等流体力学》 
《多相流动力学及其应用》

2016年,上海交通大学“教学新秀奖”
2017年,上海交通大学“优秀班主任”

2019年,上海交通大学“教书育人奖”(集体奖)二等奖

2022年,上海交通大学“教书育人奖”三等奖

2023年,中国力学学会科技进步奖一等奖(排名2/3)

2021年,Moan-Faltinsen最佳论文奖

2019年,上海市力学学会优秀青年学者

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